Faculty of Biology
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Biologie, ZMB
Address
Universitätsstraße
45117 Essen
45117 Essen
Room
S03 S02 A40
Phone
Fax
E-Mail
Office hours
Nach Vereinbarung (per e mail zu erfragen)
Functions
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Universitätsprofessor/in, Mikrobiologie II
Current lectures
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WiSe 2025
- Aktuelle Forschung in der Mikrobiologie
- Modern Biomedicine/Beispiele biologischer Forschung (Teil 1)
- Allgemeine Methoden Praktikum (Bachelor Bio); Priorität für G1 oder G2
- Praktikum molekulare Mikrobiologie und chemische Biologie (MedBio/Bio)
- Molekulare Mikrobiologie und chemische Biologie (5.Sem. MedBio/Bio)
- Allgemeine Methoden (Bachelor Bio)
- Übungen zur Mikrobiologie und Genetik für medizinische Biologen
- Einführung in die Zellbiologie (LA Ba und Bio B.Sc.)
- Einführung in die Medizinische Biologie
- Einführung in die Mikrobiologie (3.Sem.)
- Mikro-, Zell- und Chemische Biologie ZJA92071 und ZJA92100
- Anleitung zum wissenschafltichen Arbeiten
- ZJA92071 - Mikro-, Zell- und Chemische Biologie - Bio Master
- Mikro-, Zell- und Chemische Biologie
Past lectures (max. 10)
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SoSe 2025
- Anleitung zum wissenschafltichen Arbeiten
- Aktuelle Forschung in der Mikrobiologie
- Mikro- und Zell- und chemische Biologie
- 2 Nachklausur Einführung in die Mikrobiologie ZJA40510
- 2. Nachklausur Molekulare Mikrobiologie und Chemische Biologie ZJA40420
- Mikro-, Zell- und Chemische Biologie
- Mikro- und Zell- und chemische Biologie
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WiSe 2024
The following publications are listed in the online university bibliography of the University of Duisburg-Essen. Further information may also be found on the person's personal web pages.
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A mouse model of cardiac immunoglobulin light chain amyloidosis reveals insights into tissue accumulation and toxicity of amyloid fibrilsIn: Nature Communications, Vol. 16, 2025, Nr. 1, 2992DOI (Open Access)
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The serine protease HTRA1 targets tau fibrils and provides a proteolytic barrier against pathogenic protein conformationsIn: The Journal of Biological Chemistry (JBC), Vol. 301, 2025, Nr. 10, 110729DOI, Online Full Text (Open Access)
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High resolution analysis of proteolytic substrate processingIn: The Journal of Biological Chemistry (JBC), Vol. 300, 2024, Nr. 11, 107812DOI, Online Full Text (Open Access)
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Rational correction of pathogenic conformational defects in HTRA1In: Nature Communications, Vol. 15, 2024, Nr. 1, 5944DOI (Open Access)
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10q26 – The enigma in age-related macular degenerationIn: Progress in Retinal and Eye Research, Vol. 96, 2023, 101154DOI (Open Access)
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A Single Residue within the MCR-1 Protein Confers Anticipatory ResilienceIn: Microbiology Spectrum, Vol. 11, 2023, Nr. 3, e03592-22DOI (Open Access)
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An allosteric HTRA1-calpain 2 complex with restricted activation profileIn: Proceedings of the National Academy of Sciences of the United States of America (PNAS), Vol. 119, 2022, Nr. 14, e2113520119DOI, Online Full Text (Open Access)
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PPI-Affinity : A Web Tool for the Prediction and Optimization of Protein-Peptide and Protein-Protein Binding AffinityIn: Journal of Proteome Research, Vol. 21, 2022, Nr. 8, pp. 1829 – 1841DOI (Open Access)
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Persister state-directed transitioning and vulnerability in melanoma
32. Deutscher Hautkrebskongress (ADO-Jahrestagung), 14.–17. September 2022, Hannover, Germany,In: Nature Communications, Vol. 13, 2022, Nr. 1, pp. 35 – 36DOI, Online Full Text (Open Access) -
Whole-exome sequencing reveals a role of HTRA1 and EGFL8 in brain white matter hyperintensitiesIn: Brain: A Journal of Neurology, Vol. 144, 2021, Nr. 9, pp. 2670 – 2682DOI (Open Access)
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Activation by substoichiometric inhibitionIn: Proceedings of the National Academy of Sciences of the United States of America (PNAS), Vol. 117, 2020, Nr. 3, pp. 1414 – 1418DOI, Online Full Text (Open Access)
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Adoption of a Turn Conformation Drives the Binding Affinity of p53 C-Terminal Domain Peptides to 14-3-3σIn: ACS Chemical Biology, Vol. 15, 2020, Nr. 1, pp. 262 – 271DOI (Open Access)
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From dolastatin 13 to cyanopeptolins, micropeptins, and lyngbyastatins : the chemical biology of Ahp-cyclodepsipeptidesIn: Natural Product Reports, Vol. 37, 2020, Nr. 2, pp. 163 – 174
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Supramolecular Mechanism of Viral Envelope Disruption by Molecular TweezersIn: Journal of the American Chemical Society: JACS, Vol. 142, 2020, Nr. 40, pp. 17024 – 17038DOI (Open Access)
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Chemical Validation of DegS As a Target for the Development of Antibiotics with a Novel Mode of ActionIn: ChemMedChem, Vol. 14, 2019, Nr. 11, pp. 1074 – 1078
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Native Top-Down Mass Spectrometry and Ion Mobility Spectrometry of the Interaction of Tau Protein with a Molecular Tweezer Assembly ModulatorIn: Journal of the American Society for Mass Spectrometry (JASMS), Vol. 30, 2019, Nr. 1, pp. 16 – 23DOI, Online Full Text (Open Access)
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The ubiquitin-conjugating enzyme UBE2QL1 coordinates lysophagy in response to endolysosomal damageIn: EMBO Reports, 2019, pp. e48014DOI (Open Access)
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HTRA1-Dependent Cell Cycle ProteomicsIn: Journal of Proteome Research, Vol. 17, 2018, Nr. 8, pp. 2679 – 2694
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Identification of Noncatalytic Lysine Residues from Allosteric Circuits via Covalent ProbesIn: ACS Chemical Biology, Vol. 13, 2018, Nr. 5, pp. 1307 – 1312
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Identification of the Natural Product RotihibinA as a TOR Kinase Signaling Inhibitor by Unbiased Transcriptional ProfilingIn: Chemistry - A European Journal, Vol. 24, 2018, Nr. 48, pp. 12500 – 12504
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Inactivation of the serine protease HTRA1 inhibits tumor growth by deregulating angiogenesisIn: Oncogene, Vol. 37, 2018, pp. 4260 – 4272
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Utilities for Mass Spectrometry Analysis of Proteins (UMSAP) : Fast post-processing of mass spectrometry dataIn: Rapid Communications in Mass Spectrometry, Vol. 32, 2018, Nr. 19, pp. 1659 – 1667
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Tailored Ahp-cyclodepsipeptides as Potent Non-covalent Serine Protease InhibitorsIn: Angewandte Chemie International Edition, Vol. 56, 2017, Nr. 29, Special Issue: 100th Anniversary of the Royal Australian Chemical Institute, pp. 8555 – 8558
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Tailored protein encapsulation into a DNA host using geometrically organized supramolecular interactionsIn: Nature Communications, Vol. 8, 2017, pp. 14472DOI, Online Full Text (Open Access)
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Uptake of the proteins HTRA1 and HTRA2 by cells mediated by calcium phosphate nanoparticlesIn: Beilstein Journal of Nanotechnology, Vol. 8, 2017, Nr. 1, pp. 381 – 393DOI, Online Full Text (Open Access)
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VCP/p97 cooperates with YOD1, UBXD1 and PLAA to drive clearance of ruptured lysosomes by autophagyIn: The EMBO Journal, Vol. 36, 2017, Nr. 2, pp. 135 – 150DOI (Open Access)
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Epigenetic silencing of serine protease HTRA1 drives polyploidyIn: BMC Cancer, Vol. 16, 2016, Nr. 1DOI (Open Access)
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Chemical proteomics versus LeishmaniasisIn: Chemistry and Biology, Vol. 22, 2015, Nr. 3, pp. 309 – 310DOI (Open Access)
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Determinants of amyloid fibril degradation by the PDZ protease HTRA1In: Nature Chemical Biology, Vol. 11, 2015, Nr. 11, pp. 862 – 869DOI, Online Full Text (Open Access)
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Reply to Liu et al. : Loss of TGF-β signaling in CARASIL pathogenesisIn: Proceedings of the National Academy of Sciences of the United States of America (PNAS), Vol. 112, 2015, Nr. 14, pp. E1694
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Cerebral small vessel disease-related protease HtrA1 processes latent TGF-β binding protein 1 and facilitates TGF-β signalingIn: Proceedings of the National Academy of Sciences of the United States of America (PNAS), Vol. 111, 2014, Nr. 46, pp. 16496 – 16501
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Substrate occupancy at the onset of oligomeric transitions of DegPIn: Structure, Vol. 22, 2014, Nr. 2, pp. 281 – 290DOI (Open Access)
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Ahp cyclodepsipeptides: The impact of the ahp residue on the "Canonical Inhibition" of S1 serine proteasesIn: ChemBioChem, Vol. 14, 2013, Nr. 11, pp. 1301 – 1308
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Diversity of allosteric regulation in proteasesIn: ACS Chemical Biology, Vol. 8, 2013, Nr. 1, pp. 19 – 26
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Identification of a serine protease inhibitor which causes inclusion vacuole reduction and is lethal to Chlamydia trachomatisIn: Molecular Microbiology, Vol. 89, 2013, Nr. 4, pp. 676 – 689
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XCtpB assembles a gated protease tunnel regulating cell-cell signaling during spore formation in bacillus subtilisIn: Cell, Vol. 155, 2013, Nr. 3, pp. 647 – 658
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Chemical Biology Approaches Reveal Conserved Features of a C-Terminal Processing PDZ ProteaseIn: ChemBioChem, Vol. 13, 2012, Nr. 3, pp. 402 – 408
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Detrimental role for human high temperature requirement serine protease A1 (HTRA1) in the pathogenesis of intervertebral disc (IVD) degenerationIn: The Journal of Biological Chemistry (JBC), Vol. 287, 2012, Nr. 25, pp. 21335 – 21345
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Development of a Solid-Phase Approach to the Natural Product Class of Ahp-Containing CyclodepsipeptidesIn: European Journal of Organic Chemistry, 2012, Nr. 8, pp. 1616 – 1625
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E. coli LoiP (YggG), a metalloprotease hydrolyzing Phe–Phe bondsIn: Molecular BioSystems, Vol. 8, 2012, Nr. 6, pp. 1775 – 1782
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Genetic analysis of 15 protein folding factors and proteases of the Escherichia coli cell envelopeIn: Journal of Bacteriology, Vol. 194, 2012, Nr. 12, pp. 3225 – 3233
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Human high temperature requirement serine protease A1 (HTRA1) degrades tau protein aggregatesIn: The Journal of Biological Chemistry (JBC), Vol. 287, 2012, Nr. 25, pp. 20931 – 20941
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Human serine protease HTRA1 positively regulates osteogenesis of human bone marrow-derived mesenchymal stem cells and mineralization of differentiating bone-forming cells through the modulation of extracellular matrix proteinIn: Stem Cells, Vol. 30, 2012, Nr. 10, pp. 2271 – 2282DOI (Open Access)
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MiR-30e and miR-181d control Radial Glia cell proliferation via HtrA1 modulationIn: Cell Death and Disease, Vol. 3, 2012, Nr. 8, e360DOI (Open Access)
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Newly folded substrates inside the molecular cage of the HtrA chaperone DegQIn: Nature Structural & Molecular Biology, Vol. 19, 2012, Nr. 2, pp. 152 – 157
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HTRA proteases : regulated proteolysis in protein quality controlIn: Nature Reviews Molecular Cell Biology, Vol. 12, 2011, Nr. 3, pp. 152 – 162
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Lysine-specific molecular tweezers are broad-spectrum inhibitors of assembly and toxicity of amyloid proteinsIn: Journal of the American Chemical Society: JACS, Vol. 133, 2011, Nr. 42, pp. 16958 – 16969
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Molecular adaptation of the DegQ protease to exert protein quality control in the bacterial cell envelopeIn: The Journal of Biological Chemistry (JBC), Vol. 286, 2011, Nr. 35, pp. 30680 – 30690
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Peptide Functionalized Polydiacetylene Liposomes Act as a Fluorescent Turn-On Sensor for Bacterial LipopolysaccharideIn: Journal of the American Chemical Society: JACS, Vol. 133, 2011, Nr. 25, pp. 9720 – 9723
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Protein quality control in the bacterial periplasmIn: Annual Review of Microbiology, Vol. 65, 2011, pp. 149 – 168
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Structural adaptation of the plant protease Deg1 to repair photosystem II during light exposureIn: Nature Structural & Molecular Biology, Vol. 18, 2011, Nr. 6, pp. 728 – 731
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Substrate induced remodeling of the active site regulates human HtrA1 activityIn: Nature Structural & Molecular Biology, Vol. 18, 2011, pp. 386 – 388
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Conversion of a regulatory into a degradative proteaseIn: Journal of Molecular Biology (JMB), Vol. 397, 2010, Nr. 4, pp. 957 – 966
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Determinants of structural and functional plasticity of a widely conserved protease chaperone complexIn: Nature Structural & Molecular Biology, Vol. 17, 2010, Nr. 7, pp. 837 – 843
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Molecular transformers in the cell: lessons learned from the DegP protease-chaperoneIn: Current Opinion in Structural Biology, Vol. 20, 2010, Nr. 2, pp. 253 – 258
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Solid phase total synthesis of the 3-amino-6-hydroxy-2-piperidone (Ahp) cyclodepsipeptide and protease inhibitor Symplocamide AIn: Chemical Communications: ChemComm, 2010, Nr. 46, pp. 8857 – 8859
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The serine protease HtrA1 specifically interacts and degrades the tuberous sclerosis complex 2 proteinIn: Molecular Cancer Research, Vol. 8, 2010, Nr. 9, pp. 1248 – 1260
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Peptidic small molecule activators of the stress sensor DegSIn: Molecular BioSystems, Vol. 5, 2009, Nr. 9, pp. 980 – 985
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Selectivity profiling of DegP substrates and inhibitorsIn: Bioorganic and Medicinal Chemistry, Vol. 17, 2009, Nr. 7, pp. 2920 – 2924
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Structure, function and regulation of the conserved serine proteases DegP and DegS of Escherichia coliIn: Research in Microbiology, Vol. 160, 2009, Nr. 9, pp. 660 – 666
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Allosteric activation of HtrA protease DegP by stress signals during bacterial protein quality controlIn: Angewandte Chemie International Edition, Vol. 47, 2008, Nr. 7, pp. 1332 – 1334
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Allosteric regulation of proteasesIn: ChemBioChem, Vol. 9, 2008, Nr. 18, pp. 2920 – 2928
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HtrA1-dependent proteolysis of TGF-β controls both neuronal maturation and developmental survivalIn: Cell Death and Differentiation, Vol. 15, 2008, Nr. 9, pp. 1408 – 1416
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Interplay of PDZ and protease domain of DegP ensures efficient elimination of misfolded proteinsIn: Proceedings of the National Academy of Sciences of the United States of America (PNAS), Vol. 22, 2008, pp. 7702 – 7707
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Structural basis for the regulated protease and chaperone function of DegP.In: Nature, 2008, Nr. 453, pp. 885 – 890
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The serine protease HtrA1 is a novel prognostic factor for human mesotheliomaIn: Pharmacogenomics, Vol. 9, 2008, Nr. 8, pp. 1069 – 1077
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Determinants of regulated proteolysis in signal transductionIn: Genes and Development, Vol. 21, 2007, Nr. 1, pp. 6 – 10
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Identification of Protein Disulfide Isomerase as a Cardiomyocyte Survival Factor in Ischemic CardiomyopathyIn: Journal of the American College of Cardiology (JACC), Vol. 50, 2007, Nr. 11, pp. 1029 – 1037DOI (Open Access)
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Regulation of the σE stress response by DegS: How the PDZ domain keeps the protease inactive in the resting state and allows integration of different OMP-derived stress signals upon folding stressIn: Genes and Development, Vol. 21, 2007, Nr. 20, pp. 2659 – 2670
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Target directed proteolysis in vivo.In: Methods in Enzymology, Vol. 421, 2007, pp. 68 – 83
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Functional characterization of a soluble gp130 isoform and its therapeutic capacity in an experimental model of inflammatory arthritisIn: Arthritis & Rheumatism, Vol. 54, 2006, Nr. 5, pp. 1662 – 1672
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Serine protease HtrA1 modulates chemotherapy-induced cytotoxicityIn: The Journal of Clinical Investigation (JCI), Vol. 116, 2006, Nr. 7, pp. 1994 – 2004
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The role of human HtrA1 in arthritic disease.In: The Journal of Biological Chemistry (JBC), Vol. 281, 2006, Nr. 10, pp. 6124 – 6129
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Identification and structural characterisation of carboxy-terminal polypeptides and antibody epitopes of Alzheimer's amyloid precursor protein using high-resolution mass spectrometryIn: European Journal of Mass Spectrometry, Vol. 11, 2005, Nr. 5, pp. 547 – 555
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Implications of human HtrA1 in amyloid precursor protein processing.In: Proceedings of the National Academy of Sciences of the United States of America (PNAS), Vol. 102, 2005, Nr. 17, pp. 6021 – 6026
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Implications of the serine protease HtrA1 in amyloid precursor protein processingIn: Proceedings of the National Academy of Sciences of the United States of America (PNAS), Vol. 102, 2005, Nr. 17, pp. 6021 – 6026
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Target-directed proteolysis at the ribosome.In: Proceedings of the National Academy of Sciences of the United States of America (PNAS), Vol. 102, 2005, pp. 4246 – 4251
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Characterization of presenilin-amyloid precursor interaction using bacterial expression and two-hybrid systems for human membrane proteinsIn: Molecular Membrane Biology, Vol. 21, 2004, Nr. 6, pp. 373 – 383
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Crystal structure of the DegS stress sensor: How a PDZ domain recognizes misfolded protein and activates a proteaseIn: Cell, Vol. 117, 2004, Nr. 4, pp. 483 – 494
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Proteolysis as a regulatory mechanismIn: Annual Review of Genetics, Vol. 38, 2004, pp. 709 – 724
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Context-dependent effects of charged residues in transmembrane segments of MalF-PhoA fusionsIn: Research in Microbiology, Vol. 154, 2003, Nr. 9, pp. 654 – 657
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SecA-dependent quality control of intracellular protein localizationIn: Proceedings of the National Academy of Sciences of the United States of America (PNAS), Vol. 100, 2003, Nr. 23, pp. 13231 – 13234
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Crystal structure of DegP (HtrA) reveals a new protease-chaperone machineIn: Nature, Vol. 416, 2002, Nr. 6879, pp. 455 – 459
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The HtrA family of proteases : Implications for protein composition and cell fateIn: Molecular Cell, Vol. 10, 2002, Nr. 3, pp. 443 – 455
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A Novel Method to Determine the Topology of Peroxisomal Membrane Proteins in Vivo Using the Tobacco Etch Virus ProteaseIn: The Journal of Biological Chemistry (JBC), Vol. 276, 2001, Nr. 39, pp. 36501 – 36507
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Characterization of transmembrane segments 3, 4, and 5 of Ma1F by mutational analysisIn: Journal of Bacteriology, Vol. 183, 2001, Nr. 1, pp. 375 – 381
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Evidence for coupling of membrane targeting and function of the signal recognition particle (SRP) receptor Fts YIn: EMBO Reports, Vol. 2, 2001, Nr. 11, pp. 1040 – 1046
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Determinants of translocation and folding of TreF, a trehalase of Escherichia coliIn: The Journal of Biological Chemistry (JBC), Vol. 275, 2000, Nr. 31, pp. 23439 – 23445
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Synthesis of acyclic 6,7-dihaloquinolone nucleoside analogues as potential antibacterial and antiviral agents.In: Bioorganic & medicinal chemistry : a Tetrahedron publication for the rapid dissemination of full original research papers and critical reviews on biomolecular chemistry, medicinal chemistry and related disciplines, Vol. 8, 2000, Nr. 6, pp. 1407 – 1413
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A temperature-dependent switch from chaperone to protease in a widely conserved heat shock proteinIn: Cell, Vol. 97, 1999, Nr. 3, pp. 339 – 347
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Membrane topology of CadA homologous P-type ATPase of Helicobacter pylori as determined by expression of phoA fusions in Escherichia coli and the positive inside ruleIn: Research in Microbiology, Vol. 150, 1999, Nr. 8, pp. 507 – 520
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Membrane topology of the xenobiotic-exporting subunit, MexB, of the MexA,B-OprM extrusion pump in Pseudomonas aeruginosaIn: The Journal of Biological Chemistry (JBC), Vol. 274, 1999, Nr. 15, pp. 10517 – 10522
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Eine hochspezifische Protease zur Struktur-und Funktionsanalyse von Proteinen in vivo und in vitro.In: Biospektrum: das Magazin für Biowissenschaften, Vol. 3, 1998, pp. 53 – 56
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Polypeptide binding of Escherichia coil FtsH (HflB)In: Molecular Microbiology, Vol. 28, 1998, Nr. 4, pp. 803 – 812
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Quinolone nucleosides: 6,7-dihalo-N-β- and α-glycosyl-1,4-dihydro-4- oxo-quinoline-3-carboxylic acids and derivatives. Synthesis, antimicrobial and antiviral activityIn: Nucleosides and Nucleotides, Vol. 17, 1998, Nr. 12, pp. 2255 – 2266
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The ABC maltose transporterIn: Molecular Microbiology, Vol. 29, 1998, Nr. 3, pp. 685 – 694
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The protein translocation apparatus contributes to determining the topology of an integral membrane protein in Escherichia coliIn: The Journal of Biological Chemistry (JBC), Vol. 273, 1998, Nr. 14, pp. 8419 – 8424
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Biochemical characterization and mass spectrometric disulfide bond mapping of periplasmic α-amylase mals of Escherichia coliIn: The Journal of Biological Chemistry (JBC), Vol. 272, 1997, Nr. 35, pp. 22125 – 22133
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Biogenese, Struktur und Funktion integraler Membranproteine: die Membrankomponenten des ABC-Maltosetransporters von Escherichia coli.In: Biospektrum: das Magazin für Biowissenschaften, Vol. 2, 1997, pp. 46 – 47
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TnTIN and TnTAP: Mini-transposons for site-specific proteolysis in vivoIn: Proceedings of the National Academy of Sciences of the United States of America (PNAS), Vol. 94, 1997, Nr. 24, pp. 13111 – 13115
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Characterization of a cytoplasmic trehalase of Escherichia coliIn: Journal of bacteriology : JB, Vol. 178, 1996, Nr. 21, pp. 6250 – 6257
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Characterization of transmembrane domains 6, 7, and 8 of MalF by mutational analysisIn: Journal of bacteriology : JB, Vol. 178, 1996, Nr. 8, pp. 2255 – 2262
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Site-specific proteolysis of the Escherichia coli SecA protein in vivoIn: Journal of bacteriology : JB, Vol. 178, 1996, Nr. 10, pp. 2986 – 2988
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Targeting of signal sequenceless proteins for export in Escherichia coli with altered protein translocaseIn: The EMBO Journal, Vol. 15, 1996, Nr. 19, pp. 5209 – 5217
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Synthetic competition between cytoplasmic folding and translocation of a soluble membrane protein domainIn: Research in Microbiology, Vol. 146, 1995, Nr. 2, pp. 121 – 128
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Requirements for translocation of periplasmic domains in polytopic membrane proteinsIn: Journal of bacteriology : JB, Vol. 176, 1994, Nr. 15, pp. 4565 – 4571
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Sec-independent translocation of a 100-residue periplasmic N-terminal tail in the E.coli inner membrane protein proWIn: The EMBO Journal, Vol. 13, 1994, Nr. 19, pp. 4653 – 4661
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The Saccharomyces cerevisiae gene PPH3 encodes a protein phosphatase with properties different from PPX, PP1 and PP2AIn: Yeast, Vol. 10, 1994, Nr. 5, pp. 567 – 578
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Decoding signals for membrane protein assembly using alkaline phosphatase fusionsIn: The EMBO Journal, Vol. 10, 1991, Nr. 10, pp. 2773 – 2782
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Proper insertion of a complex membrane protein in the absence of its amino-terminal export signalIn: The Journal of Biological Chemistry (JBC), Vol. 266, 1991, Nr. 25, pp. 16530 – 16533
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Genetic analysis of membrane protein topology by a sandwich gene fusion approach.In: Proceedings of the National Academy of Sciences of the United States of America (PNAS), Vol. 87, 1990, Nr. 19, pp. 7574 – 7578
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MalI, a novel protein involved in regulation of the maltose system of Escherichia coli, is highly homologous to the repressor proteins GalR, CytR, and LacI.In: Journal of bacteriology : JB, Vol. 171, 1989, Nr. 9, pp. 4888 – 4899
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Convenient transfer of lacZ-gene fusions to phage M13 by in vivo recombination and their use for nucleotide sequencingIn: Gene : an international journal focusing on gene cloning and gene structure and function, Vol. 71, 1988, Nr. 1, pp. 187 – 191
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Divergent transcription of the sn-glycerol-3-phosphate active transport (glpT) and anaerobic sn-glycerol-3-phosphate dehydrogenase (glpA glpC glpB) genes of Escherichia coli K-12In: Journal of Bacteriology, Vol. 169, 1987, Nr. 2, pp. 526 – 532
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Identification of endogenous inducers of the mal regulon in Escherichia coli.In: Journal of bacteriology : JB, Vol. 169, 1987, Nr. 8, pp. 3539 – 3545
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Osmoregulation of the maltose regulon in Escherichia coli.In: Journal of bacteriology : JB, Vol. 166, 1986, Nr. 3, pp. 884 – 891
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Periplasmic glycerophosphodiester phosphodiesterase of Escherichia coli, a new enzyme of the glp regulonIn: The Journal of Biological Chemistry (JBC), Vol. 258, 1983, Nr. 9, pp. 5428 – 5432
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A non-autonomous protein quality control mechanism targeting tau aggregate propagation2024DOI (Open Access)
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ProteolysisIn: Brenner's Encyclopedia of Genetics: Second Edition / Maloy, Stanley R.; Hughes, Kelly T.. Amsterdam: Elsevier, 2013, pp. 501 – 503
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Periplasmic proteasesIn: The Periplasm / Ehrmann, Michael (Eds.). Washington, DC: ASM Press, 2006, pp. 150 – 170
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Folding in the Bacterial PeriplasmIn: Protein folding handbook / Buchner, Johannes; Kiefhaber, Thomas (Eds.). Weinheim [u.a.]: Wiley-VCH, 2005, pp. 938 – 964
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The PeriplasmWashington, DC: ASM Press, 2007