Faculty of Biology
Register of People
The person's links lead to the central register of persons of the UDE, refering to the data of LSF. Personal data can be edited in LSF (Login with Uni-ID is required).
Functions
-
Honorarprofessor/in, Mikrobiologie I
Current lectures
No current lectures.
Past lectures (max. 10)
No past lectures.
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.
-
A fluorescent CPM-based in vitro acetylation assay : A tool for assessing N-terminal acetyltransferase activity and profiling compound activityIn: Methods in Enzymology, Vol. 718, 2025, pp. 51 – 85
-
Decoding the language of PLK1 docking motifs and activation mechanismsIn: Trends in Cell Biology, 2025, in pressDOI (Open Access)
-
Interactions with multiple inner kinetochore proteins determine mitotic localization of FACTIn: The Journal of Cell Biology (JCB), Vol. 224, 2025, Nr. 5, e202412042DOI (Open Access)
-
Interplay of kinetochores and catalysts drives rapid assembly of the mitotic checkpoint complexIn: Nature Communications, Vol. 16, 2025, Nr. 1, 4823DOI (Open Access)
-
The BUB1 and BUBR1 paralogs scaffold the kinetochore fibrous coronaIn: Science Advances, Vol. 11, 2025, Nr. 37, eady6890DOI (Open Access)
-
A validation strategy to assess the role of phase separation as a determinant of macromolecular localizationIn: Molecular Cell, Vol. 84, 2024, Nr. 9, pp. 1783 – 1801.e7DOI (Open Access)
-
Microtubule end-on attachment maturation regulates Mps1 association with its kinetochore receptorIn: Current Biology, Vol. 34, 2024, Nr. 11, pp. 2279 – 2293.e6DOI (Open Access)
-
Protocol for validating liquid-liquid phase separation as a driver of membraneless organelle assembly in vitro and human cellsIn: STAR Protocols, Vol. 5, 2024, Nr. 4, 103410DOI (Open Access)
-
Regulation of minimal spindle midzone organization by mitotic kinasesIn: Nature Communications, Vol. 15, 2024, Nr. 1, 9213DOI (Open Access)
-
Role of protein kinase PLK1 in the epigenetic maintenance of centromeresIn: Science, Vol. 385, 2024, Nr. 6713, pp. 1091 – 1097
-
Structure of the human KMN complex and implications for regulation of its assemblyIn: Nature Structural & Molecular Biology, Vol. 31, 2024, Nr. 6, pp. 861 – 873DOI (Open Access)
-
Thirty years of structural changesIn: Nature Structural & Molecular Biology, Vol. 31, 2024, Nr. 1, pp. 4 – 5
-
RZZ‐Spindly and CENP‐E form an integrated platform to recruit dynein to the kinetochore coronaIn: The EMBO Journal, Vol. 42, 2023, Nr. 24, e114838DOI (Open Access)
-
Stable kinetochore-microtubule attachment requires loop-dependent Ndc80-Ndc80 bindingIn: The EMBO Journal, Vol. 42, 2023, Nr. 13, e112504DOI (Open Access)
-
The structural flexibility of MAD1 facilitates the assembly of the Mitotic Checkpoint ComplexIn: Nature Communications, Vol. 14, 2023, Nr. 1, 1529DOI (Open Access)
-
Conformational transitions of the Spindly adaptor underlie its interaction with Dynein and DynactinIn: The Journal of Cell Biology (JCB), Vol. 221, 2022, Nr. 11, e202206131DOI (Open Access)
-
JIP3 interacts with dynein and kinesin-1 to regulate bidirectional organelle transportIn: The Journal of Cell Biology (JCB), Vol. 221, 2022, Nr. 8, e202110057DOI (Open Access)
-
On the role of phase separation in the biogenesis of membraneless compartmentsIn: The EMBO Journal, Vol. 41, 2022, Nr. 5, e109952DOI (Open Access)
-
Phosphorylation tunes elongation propensity and cohesiveness of INCENP's intrinsically disordered region : Phosphorylation of INCENP disordered regionIn: Journal of Molecular Biology (JMB), Vol. 434, 2022, Nr. 1, 167387
-
Reconstitution and use of highly active human CDK1 : Cyclin-B:CKS1 complexesIn: Protein Science, Vol. 31, 2022, Nr. 2, pp. 528 – 537DOI (Open Access)
-
Structure of the RZZ complex and molecular basis of Spindly‐driven corona assembly at human kinetochoresIn: The EMBO Journal, Vol. 41, 2022, Nr. 9, e110411DOI, Online Full Text (Open Access)
-
Structure of the human inner kinetochore CCAN complex and its significance for human centromere organizationIn: Molecular Cell, Vol. 82, 2022, Nr. 11, pp. 2113 – 2131.e8DOI (Open Access)
-
Assembly principles and stoichiometry of a complete human kinetochore moduleIn: Science Advances, Vol. 7, 2021, Nr. 27, eabg1037DOI (Open Access)
-
BUB1 and CENP-U, Primed by CDK1, Are the Main PLK1 Kinetochore Receptors in MitosisIn: Molecular Cell, Vol. 81, 2021, Nr. 1, pp. 67 – 87.e9DOI (Open Access)
-
CDC20 assists its catalytic incorporation in the mitotic checkpoint complexIn: Science, Vol. 371, 2021, Nr. 6524, pp. 67 – 71
-
Overlap of NatA and IAP substrates implicates N-terminal acetylation in protein stabilizationIn: Science Advances, Vol. 7, 2021, Nr. 3, pp. eabc8590DOI (Open Access)
-
Targeted substrate loop insertion by VCP/p97 during PP1 complex disassemblyIn: Nature Structural & Molecular Biology, Vol. 28, 2021, Nr. 12, pp. 964 – 971
-
Electroporated recombinant proteins as tools for in vivo functional complementation, imaging and chemical biologyIn: eLife, Vol. 8, 2019, pp. e48287DOI (Open Access)
-
Mechanism of centromere recruitment of the CENP-A chaperone HJURP and its implications for centromere licensingIn: Nature Communications, Vol. 10, 2019, Nr. 1, pp. 4046DOI (Open Access)
-
Molecular determinants of the Ska-Ndc80 interaction and their influence on microtubule tracking and force-couplingIn: eLife, Vol. 8, 2019, pp. e49539DOI (Open Access)
-
Dynamic kinetochore size regulation promotes microtubule capture and chromosome biorientation in mitosisIn: Nature Cell Biology, Vol. 20, 2018, pp. 800 – 810DOI, Online Full Text (Open Access)
-
Reconstitution of a 26-Subunit Human Kinetochore Reveals Cooperative Microtubule Binding by CENP-OPQUR and NDC80.In: Molecular Cell, Vol. 71, 2018, Nr. 6, pp. 923 – 939.e10DOI (Open Access)
-
Simplified Protocol for Cross-linking Mass Spectrometry Using the MS-Cleavable Cross-linker DSBU with Efficient Cross-link IdentificationIn: Analytical Chemistry, Vol. 90, 2018, Nr. 18, pp. 10990 – 10999
-
The kinetochore proteins CENP-E and CENP-F directly and specifically interact with distinct BUB mitotic checkpoint Ser/Thr kinasesIn: The Journal of Biological Chemistry (JBC), Vol. 293, 2018, Nr. 26, pp. 10084 – 10101DOI (Open Access)
-
Ubiquitin-Independent Disassembly by a p97 AAA-ATPase Complex Drives PP1 Holoenzyme FormationIn: Molecular Cell, Vol. 72, 2018, Nr. 4, pp. 766 – 777DOI (Open Access)
-
A molecular view of kinetochore assembly and functionIn: Biology, Vol. 6, 2017, Nr. 1, pp. 5DOI (Open Access)
-
Basis of catalytic assembly of the mitotic checkpoint complexIn: Nature, Vol. 542, 2017, Nr. 7642, pp. 498 – 502DOI, Online Full Text (Open Access)
-
BubR1 Promotes Bub3-Dependent APC/C Inhibition during Spindle Assembly Checkpoint SignalingIn: Current Biology, Vol. 27, 2017, Nr. 19, pp. 2915 – 2927.e7DOI (Open Access)
-
CDK-regulated dimerization of M18BP1 on a Mis18 hexamer is necessary for CENP-A loadingIn: eLife, Vol. 6, 2017, pp. e23352DOI, Online Full Text (Open Access)
-
Decoding the centromeric nucleosome through CENP-NIn: eLife, Vol. 6, 2017, pp. e33442DOI (Open Access)
-
Structure of the RZZ complex and molecular basis of its interaction with SpindlyIn: The Journal of Cell Biology (JCB), Vol. 216, 2017, Nr. 4, pp. 961 – 981DOI (Open Access)
-
The greatest kinetochore show on earthIn: EMBO Reports, Vol. 18, 2017, Nr. 9, pp. 1473 – 1475DOI, Online Full Text (Open Access)
-
Insights from biochemical reconstitution into the architecture of human kinetochoresIn: Nature, Vol. 537, 2016, Nr. 7619, pp. 249 – 253
-
Insights from the reconstitution of the divergent outer kinetochore of Drosophila melanogasterIn: Open Biology, Vol. 6, 2016, Nr. 2, 150236DOI (Open Access)
-
Microtubules : 50 years on from the discovery of tubulinIn: Nature Reviews Molecular Cell Biology, Vol. 17, 2016, Nr. 5, pp. 322 – 328DOI, Online Full Text (Open Access)
-
Molecular basis of outer kinetochore assembly on CENP-TIn: eLife, Vol. 5, 2016, pp. e21007DOI (Open Access)
-
Molecular requirements for the inter-subunit interaction and kinetochore recruitment of SKAP and AstrinIn: Nature Communications, Vol. 7, 2016, pp. 11407DOI (Open Access)
-
Progress in the structural and functional characterization of kinetochoresIn: Current Opinion in Structural Biology, Vol. 37, 2016, pp. 152 – 163DOI (Open Access)
-
Requirement for PLK1 kinase activity in the maintenance of a robust spindle assembly checkpointIn: Biology Open: BiO, Vol. 5, 2016, Nr. 1, pp. 11 – 19DOI (Open Access)
-
Structure of the MIS12 Complex and Molecular Basis of Its Interaction with CENP-C at Human KinetochoresIn: Cell, Vol. 167, 2016, Nr. 4, pp. 1028 – 1040.e15DOI (Open Access)
-
A molecular basis for the differential roles of Bub1 and BubR1 in the spindle assembly checkpointIn: eLife, Vol. 4, 2015, pp. e05269DOI (Open Access)
-
CENP-C is a blueprint for constitutive centromere-associated network assembly within human kinetochoresIn: The Journal of Cell Biology (JCB), Vol. 210, 2015, Nr. 1, pp. 11 – 22DOI (Open Access)
-
Closing the Mad2 cycle : chromosome separation is regulated by a cycle that involves a protein undergoing an unusual topological conversionIn: eLife, Vol. 4, 2015, pp. e08283DOI (Open Access)
-
Complex assembly, crystallization and preliminary x-ray crystallographic analysis of the human Rod-Zwilch-ZW10 (RZZ) complexIn: Acta Crystallographica Section F: Structural Biology and Crystallization Communications, Vol. 71, 2015, Nr. 4, pp. 438 – 442DOI (Open Access)
-
DNA-directed assembly of capture tools for constitutional studies of large protein complexesIn: Small, Vol. 11, 2015, Nr. 22, pp. 2669 – 2674
-
HJURP involvement in De Novo CenH3CENP-A and CENP-C recruitmentIn: Cell Reports, Vol. 11, 2015, Nr. 1, pp. 22 – 32DOI (Open Access)
-
Role of intrinsic and extrinsic factors in the regulation of the mitotic checkpoint kinase Bub1In: PLoS ONE, Vol. 10, 2015, Nr. 12, pp. 0144673DOI (Open Access)
-
The (phospho) needle in the (MELT) haystackIn: Molecular Cell, Vol. 57, 2015, Nr. 5, pp. 765 – 766DOI (Open Access)
-
The Aurora B kinase in chromosome bi-orientation and spindle checkpoint signalingIn: Frontiers in Oncology, Vol. 5, 2015, pp. 225DOI (Open Access)
-
The Molecular Biology of Spindle Assembly Checkpoint Signaling DynamicsIn: Current Biology, Vol. 25, 2015, Nr. 20, pp. R1002 – R1018DOI (Open Access)
-
HORMA domains at the heart of meiotic chromosome dynamicsIn: Developmental Cell, Vol. 31, 2014, Nr. 4, pp. 389 – 391DOI (Open Access)
-
Inhibitor-3 ensures bipolar mitotic spindle attachment by limiting association of SDS22 with kinetochore-bound protein phosphatase-1In: The EMBO Journal, Vol. 33, 2014, Nr. 22, pp. 2704 – 2720DOI, Online Full Text (Open Access)
-
KI motifs of human Knl1 enhance assembly of comprehensive spindle checkpoint complexes around MELT repeatsIn: Current Biology, Vol. 24, 2014, Nr. 1, pp. 29 – 39DOI (Open Access)
-
Modular Assembly of RWD Domains on the Mis12 Complex Underlies Outer Kinetochore OrganizationIn: Molecular Cell, Vol. 53, 2014, Nr. 4, pp. 591 – 605DOI (Open Access)
-
The pseudo GTPase CENP-M drives human kinetochore assemblyIn: eLife, Vol. 3, 2014, pp. e02978DOI (Open Access)
-
When Mad met BubIn: EMBO Reports, Vol. 15, 2014, Nr. 4, pp. 326 – 328DOI, Online Full Text (Open Access)
-
Bub3 reads phosphorylated MELT repeats to promote spindle assembly checkpoint signalingIn: eLife, Vol. 2, 2013, pp. e01030DOI (Open Access)
-
Esperanto for histones : CENP-A, not CenH3, is the centromeric histone H3 variantIn: Chromosome Research, Vol. 21, 2013, Nr. 2, pp. 101 – 106
-
Loss of survivin influences liver regeneration and is associated with impaired aurora B functionIn: Cell Death and Differentiation, Vol. 20, 2013, Nr. 6, pp. 834 – 844
-
Panta rhei : the APC/C at steady stateIn: The Journal of Cell Biology (JCB), Vol. 201, 2013, Nr. 2, pp. 177 – 189
-
The spindle-assembly checkpoint and the beauty of self-destruction : ErratumIn: Nature Structural & Molecular Biology, Vol. 20, 2013, Nr. 2, pp. 244
-
A small-molecule inhibitor of Haspin alters the kinetochore functions of Aurora BIn: The Journal of Cell Biology (JCB), Vol. 199, 2012, Nr. 2, pp. 269 – 284
-
Crystal structure of human Aurora B in complex with INCENP and VX-680In: Journal of Medicinal Chemistry, Vol. 55, 2012, Nr. 17, pp. 7841 – 7848DOI (Open Access)
-
Role of the Mad2 dimerization interface in the spindle assembly checkpoint independent of kinetochoresIn: Current Biology, Vol. 22, 2012, Nr. 20, pp. 1900 – 1908
-
Selective aurora kinase inhibitors identified using a taxol-induced checkpoint sensitivity screenIn: ACS Chemical Biology, Vol. 7, 2012, Nr. 1, pp. 185 – 196
-
Structural analysis reveals features of the spindle checkpoint kinase Bub1-kinetochore subunit Knl1 interactionIn: The Journal of Cell Biology (JCB), Vol. 196, 2012, Nr. 4, pp. 451 – 467
-
Structural organization of the kinetochore-microtubule interfaceIn: Current Opinion in Cell Biology, Vol. 24, 2012, Nr. 1, pp. 48 – 56
-
The spindle-assembly checkpoint and the beauty of self-destructionIn: Nature Structural & Molecular Biology, Vol. 19, 2012, Nr. 11, pp. 1059 – 1061
-
A general framework for inhibitor resistance in protein kinasesIn: Chemistry and Biology, Vol. 18, 2011, Nr. 8, pp. 966 – 975
-
A general framework for inhibitor resistance in protein kinases : ErratumIn: Chemistry and Biology, Vol. 18, 2011, Nr. 10, pp. 1341
-
Abnormal kinetochore-generated pulling forces from expressing a n-terminally modified Hec1In: PLoS ONE, Vol. 6, 2011, Nr. 1, pp. e16307DOI (Open Access)
-
Direct binding of Cenp-C to the Mis12 complex joins the inner and outer kinetochoreIn: Current Biology, Vol. 21, 2011, Nr. 5, pp. 391 – 398
-
Evidence that Aurora B is implicated in spindle checkpoint signalling independently of error correctionIn: The EMBO Journal, Vol. 30, 2011, Nr. 8, pp. 1508 – 1519
-
Investigating a macromolecular complex : the toolkit of methodsIn: Journal of Structural Biology, Vol. 175, 2011, Nr. 2, pp. 106 – 112
-
Spatial exclusivity combined with positive and negative selection of phosphorylation motifs Is the basis for context-dependent mitotic signalingIn: Science Signaling, Vol. 4, 2011, Nr. 179, 1-15, art. no. ra42
-
Spindle assembly checkpoint : the third decadeIn: Philosophical Transactions of the Royal Society B: Biological Sciences, Vol. 366, 2011, Nr. 1584, pp. 3595 – 3604
-
Structure of the HECT:ubiquitin complex and its role in ubiquitin chain elongationIn: EMBO Reports, Vol. 12, 2011, Nr. 4, pp. 342 – 349
-
The Ndc80 loop region facilitates formation of kinetochore attachment to the dynamic microtubule plus endIn: Current Biology, Vol. 21, 2011, Nr. 3, pp. 207 – 213
-
Dissecting the role of MPS1 in chromosome biorientation and the spindle checkpoint through the small molecule inhibitor reversineIn: The Journal of Cell Biology (JCB), Vol. 190, 2010, Nr. 1, pp. 73 – 87
-
Structural analysis of the RZZ complex reveals common ancestry with multisubunit vesicle tethering machineryIn: Structure, Vol. 18, 2010, Nr. 5, pp. 616 – 626
-
Sustained Mps1 activity is required in mitosis to recruit O-Mad2 to the Mad1-C-Mad2 core complexIn: The Journal of Cell Biology (JCB), Vol. 190, 2010, Nr. 1, pp. 25 – 34
-
The MIS12 complex is a protein interaction hub for outer kinetochore assemblyIn: The Journal of Cell Biology (JCB), Vol. 190, 2010, Nr. 5, pp. 835 – 852
-
Crystal structure of the catalytic domain of Haspin, an atypical kinase implicated in chromatin organizationIn: Proceedings of the National Academy of Sciences of the United States of America (PNAS), Vol. 106, 2009, Nr. 48, pp. 20204 – 20209
-
Sister chromatid tension and the spindle assembly checkpointIn: Current Opinion in Cell Biology, Vol. 21, 2009, Nr. 6, pp. 785 – 795
-
The Aurora B kinase activity is required for the maintenance of the differentiated state of murine myoblastsIn: Cell death and differentiation, Vol. 16, 2009, Nr. 2, pp. 321 – 330
-
The life and miracles of kinetochoresIn: The EMBO Journal, Vol. 28, 2009, Nr. 17, pp. 2511 – 2531
-
Discovery of selective aminothiazole aurora kinase inhibitorsIn: ACS Chemical Biology, Vol. 3, 2008, Nr. 3, pp. 180 – 192
-
Implications for kinetochore-microtubule attachment from the structure of an engineered Ndc80 complexIn: Cell, Vol. 133, 2008, Nr. 3, pp. 427 – 439
-
The spindle assembly checkpoint : correctionIn: Current biology, Vol. 18, 2008, Nr. 18, pp. 1444
-
MAD contortions : conformational dimerization boosts spindle checkpoint signalingIn: Current opinion in structural biology, Vol. 17, 2007, Nr. 6, pp. 716 – 725
-
PLK1 inhibitors : setting the mitotic death trapIn: Current biology, Vol. 17, 2007, Nr. 8, pp. R280 – R283
-
The Mad2 conformational dimer : structure and implications for the spindle assembly checkpointIn: Cell, Vol. 131, 2007, Nr. 4, pp. 730 – 743
-
The Ndc80 complex : hub of kinetochore activityIn: FEBS Letters, Vol. 581, 2007, Nr. 15, pp. 2862 – 2869
-
The spindle-assembly checkpoint in space and timeIn: Nature reviews : molecular cell biology, Vol. 8, 2007, Nr. 5, pp. 379 – 393
-
The structure of the coiled-coil domain of Ndel1 and the basis of its interaction with Lis1, the causal protein of Miller-Dieker lissencephalyIn: Structure, Vol. 15, 2007, Nr. 11, pp. 1467 – 1481
-
Accumulation of Mad2-Cdc20 complex during spindle checkpoint activation requires binding of open and closed conformers of Mad2 in Saccharomyces cerevisiaeIn: The Journal of Cell Biology (JCB), Vol. 174, 2006, Nr. 1, pp. 39 – 51
-
Crystal structure of the ubiquitin binding domains of rabex-5 reveals two modes of interaction with ubiquitinIn: Cell, Vol. 124, 2006, Nr. 6, pp. 1183 – 1195
-
Determinants of conformational dimerization of Mad2 and its inhibition by p31cometIn: The EMBO Journal, Vol. 25, 2006, Nr. 6, pp. 1273 – 1284
-
In vitro FRAP identifies the minimal requirements for Mad2 kinetochore dynamicsIn: Current biology, Vol. 16, 2006, Nr. 8, pp. 755 – 766
-
Kinetochore microtubule dynamics and attachment stability are regulated by Hec1In: Cell, Vol. 127, 2006, Nr. 5, pp. 969 – 982
-
Architecture of the human Ndc80-Hec1 complex, a critical constituent of the outer kinetochoreIn: The Journal of Biological Chemistry (JBC), Vol. 280, 2005, Nr. 32, pp. 29088 – 29095
-
Explaining the oligomerization properties of the spindle assembly checkpoint protein Mad2In: Philosophical transactions of the Royal Society : series B, biological sciences, Vol. 360, 2005, Nr. 1455, pp. 637 – 648
-
Mechanism of Aurora B activation by INCENP and inhibition by HesperadinIn: Molecular cell, Vol. 18, 2005, Nr. 3, pp. 379 – 391
-
The Mad1/Mad2 complex as a template for Mad2 activation in the spindle assembly checkpointIn: Current biology, Vol. 15, 2005, Nr. 3, pp. 214 – 225
-
Crystal structure of the tetrameric Mad1-Mad2 core complex : implications of 'safety belt' binding mechanism for the spindle checkpointIn: The EMBO Journal, Vol. 21, 2002, Nr. 10, pp. 2496 – 2506
-
The spindle checkpoint : structural insights into dynamic signallingIn: Nature reviews : molecular cell biology, Vol. 3, 2002, Nr. 10, pp. 731 – 741
-
Bub3 interaction with Mad2, Mad3 and Cdc20 is mediated by WD40 repeats and does not require intact kinetochoresIn: The EMBO Journal, Vol. 20, 2001, Nr. 23, pp. 6648 – 6659
-
Mad2 binding to Mad1 and Cdc20, rather than oligomerization, is required for spindle checkpointIn: The EMBO Journal, Vol. 20, 2001, Nr. 22, pp. 6371 – 6382
-
Structure and regulation of the CDK5-p25nck5a complexIn: Molecular cell, Vol. 8, 2001, Nr. 3, pp. 657 – 669
-
A mutation in the pleckstrin homology (PH) domain of the FGD1 gene in an Italian family with faciogenital dysplasia (Aarskog-Scott syndrome)In: FEBS Letters, Vol. 478, 2000, Nr. 3, pp. 216 – 220
-
SH3 domain recognition of a proline-independent tyrosine-based RKxxYxxY motif in immune cell adaptor SKAP55In: The EMBO Journal, Vol. 19, 2000, Nr. 12, pp. 2889 – 2899
-
Functional organization of clathrin in coats : combining electron cryomicroscopy and x-ray crystallographyIn: Molecular cell, Vol. 3, 1999, Nr. 6, pp. 761 – 770
-
Atomic structure of clathrin : a β propeller terminal domain joins an α zigzag linkerIn: Cell, Vol. 95, 1998, Nr. 4, pp. 563 – 573
-
Crystal structure of the breakpoint cluster region homology domain from phosphoinositide 3-kinase p85 alpha subunitIn: Proceedings of the National Academy of Sciences of the United States of America (PNAS), Vol. 93, 1996, Nr. 25, pp. 14373 – 14378
-
Backwards and forwards bindingIn: Nature structural biology, Vol. 1, 1994, Nr. 12, pp. 835 – 837
-
Structure and function of the SH3 domainIn: Progress in biophysics and molecular biology, Vol. 61, 1994, Nr. 3, pp. 283 – 297
-
Crystal structure of the SH3 domain in human Fyn : comparison of the three-dimensional structures of SH3 domains in tyrosine kinases and spectrinIn: The EMBO Journal, Vol. 12, 1993, Nr. 7, pp. 2617 – 2624
-
Crystallization and preliminary x-ray analysis of the periplasmic fragment of CyoA-a subunit of the Escherichia coli cytochrome o complexIn: Journal of Molecular Biology (JMB), Vol. 229, 1993, Nr. 3, pp. 794 – 796
-
The PH domain : a common piece in the structural pathcwork of signalling proteinsIn: Trends in biochemical sciences, Vol. 18, 1993, Nr. 9, pp. 343 – 348
-
Crystal structure of a Src-homology 3 (SH3) domainIn: Nature, Vol. 359, 1992, Nr. 6398, pp. 851 – 855
-
Cell cycle, differentiation and disease : editorial overviewIn: Current Opinion in Cell Biology. Amsterdam: Elsevier, Vol. 25, 2013, Nr. 6, pp. 673 – 675
-
Ipl1-controlled attachment maturation regulates Mps1 association with its kinetochore receptor2023DOI (Open Access)