Modular assembly of RWD domains on the Mis12 complex underlies outer kinetochore organization.
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A. Musacchio | S. Mosalaganti | J. Keller | S. Raunser | S. Pasqualato | Arsen Petrovic | Katharina Overlack | A. De Antoni | S. Wohlgemuth | V. Krenn | V. Cecatiello | M. Mattiuzzo | Sabine Wohlgemuth
[1] A. Musacchio,et al. KI Motifs of Human Knl1 Enhance Assembly of Comprehensive Spindle Checkpoint Complexes around MELT Repeats , 2014, Current Biology.
[2] A. Desai,et al. Spindle assembly checkpoint proteins are positioned close to core microtubule attachment sites at kinetochores , 2013, The Journal of cell biology.
[3] Andrea Ciliberto,et al. Bub3 reads phosphorylated MELT repeats to promote spindle assembly checkpoint signaling , 2013, eLife.
[4] J. Millar,et al. Monopolin Subunit Csm1 Associates with MIND Complex to Establish Monopolar Attachment of Sister Kinetochores at Meiosis I , 2013, PLoS genetics.
[5] A. Schleiffer,et al. Family matters: structural and functional conservation of centromere-associated proteins from yeast to humans. , 2013, Trends in cell biology.
[6] K. Mechtler,et al. A structural basis for kinetochore recruitment of the Ndc80 complex via two distinct centromere receptors , 2013, The EMBO journal.
[7] T. Hori,et al. CENP‐T provides a structural platform for outer kinetochore assembly , 2013, The EMBO journal.
[8] T. Kapoor,et al. Microtubule attachment and spindle assembly checkpoint signalling at the kinetochore , 2012, Nature Reviews Molecular Cell Biology.
[9] Stephen S. Taylor,et al. The Spindle Assembly Checkpoint , 2012, Current Biology.
[10] E. Nogales,et al. Multi-modal microtubule binding by the Ndc80 kinetochore complex , 2012, Nature Structural &Molecular Biology.
[11] Timothy J. Mitchison,et al. Deformations Within Moving Kinetochores Reveal Different Sites of Active and Passive Force Generation , 2012, Science.
[12] S. Biggins,et al. The structure of purified kinetochores reveals multiple microtubule attachment sites , 2012, Nature Structural &Molecular Biology.
[13] Yuya Yamagishi,et al. MPS1/Mph1 phosphorylates the kinetochore protein KNL1/Spc7 to recruit SAC components , 2012, Nature Cell Biology.
[14] J. Rappsilber,et al. Phosphodependent Recruitment of Bub1 and Bub3 to Spc7/KNL1 by Mph1 Kinase Maintains the Spindle Checkpoint , 2012, Current Biology.
[15] Sue Biggins,et al. Phosphoregulation of Spc105 by Mps1 and PP1 Regulates Bub1 Localization to Kinetochores , 2012, Current Biology.
[16] T. Hazbun,et al. Cnn1 inhibits the interactions between the KMN complexes of the yeast kinetochore , 2012, Nature Cell Biology.
[17] Stefan Westermann,et al. CENP-T proteins are conserved centromere receptors of the Ndc80 complex , 2012, Nature Cell Biology.
[18] Hongbin Sun,et al. Structure of human Mad1 C-terminal domain reveals its involvement in kinetochore targeting , 2012, Proceedings of the National Academy of Sciences.
[19] S. Harrison,et al. RWD domain: a recurring module in kinetochore architecture shown by a Ctf19–Mcm21 complex structure , 2012, EMBO reports.
[20] A. Musacchio,et al. Structural analysis reveals features of the spindle checkpoint kinase Bub1–kinetochore subunit Knl1 interaction , 2012, The Journal of cell biology.
[21] K. Oegema,et al. Microtubule binding by KNL-1 contributes to spindle checkpoint silencing at the kinetochore , 2012, The Journal of cell biology.
[22] H. Walden,et al. Structural Analysis of Human FANCL, the E3 Ligase in the Fanconi Anemia Pathway* , 2011, The Journal of Biological Chemistry.
[23] J. Millar,et al. Spindle checkpoint silencing requires association of PP1 to both Spc7 and kinesin-8 motors. , 2011, Developmental cell.
[24] Frederick R. Cross,et al. KNL1/Spc105 Recruits PP1 to Silence the Spindle Assembly Checkpoint , 2011, Current Biology.
[25] Tetsuya Hori,et al. Induced Ectopic Kinetochore Assembly Bypasses the Requirement for CENP-A Nucleosomes , 2011, Cell.
[26] E. Nogales,et al. Direct Binding of Cenp-C to the Mis12 Complex Joins the Inner and Outer Kinetochore , 2011, Current Biology.
[27] D. Glover,et al. CENP-C Is a Structural Platform for Kinetochore Assembly , 2011, Current Biology.
[28] E. Nogales,et al. Molecular architecture and connectivity of the budding yeast Mtw1 kinetochore complex. , 2011, Journal of molecular biology.
[29] M. Yanagida,et al. Protein Interaction Domain Mapping of Human Kinetochore Protein Blinkin Reveals a Consensus Motif for Binding of Spindle Assembly Checkpoint Proteins Bub1 and BubR1 , 2011, Molecular and Cellular Biology.
[30] H. Stark,et al. The MIS12 complex is a protein interaction hub for outer kinetochore assembly , 2010, The Journal of cell biology.
[31] M. Singleton,et al. Molecular architecture and assembly of the yeast kinetochore MIND complex , 2010, The Journal of cell biology.
[32] S. Harrison,et al. The Monopolin Complex Crosslinks Kinetochore Components to Regulate Chromosome-Microtubule Attachments , 2010, Cell.
[33] E. Nogales,et al. The Ndc80 kinetochore complex forms oligomeric arrays along microtubules , 2010, Nature.
[34] E. Salmon,et al. Vertebrate kinetochore protein architecture: protein copy number , 2010, The Journal of cell biology.
[35] M. Yanagida,et al. Inner centromere formation requires hMis14, a trident kinetochore protein that specifically recruits HP1 to human chromosomes , 2010, The Journal of cell biology.
[36] T. Hori,et al. Regulated targeting of protein phosphatase 1 to the outer kinetochore by KNL1 opposes Aurora B kinase , 2010, The Journal of cell biology.
[37] Viji M. Draviam,et al. Roles for the Conserved Spc105p/Kre28p Complex in Kinetochore-Microtubule Binding and the Spindle Assembly Checkpoint , 2009, PloS one.
[38] A. Musacchio,et al. The life and miracles of kinetochores , 2009, The EMBO journal.
[39] Bruce F. McEwen,et al. Protein Architecture of the Human Kinetochore Microtubule Attachment Site , 2009, Cell.
[40] Kerry Bloom,et al. In Vivo Protein Architecture of the Eukaryotic Kinetochore with Nanometer Scale Accuracy , 2009, Current Biology.
[41] Bruce F. McEwen,et al. CCAN Makes Multiple Contacts with Centromeric DNA to Provide Distinct Pathways to the Outer Kinetochore , 2008, Cell.
[42] E. Nogales,et al. Architecture and flexibility of the yeast Ndc80 kinetochore complex. , 2008, Journal of molecular biology.
[43] Stephen S. Taylor,et al. Mps1 kinase activity restrains anaphase during an unperturbed mitosis and targets Mad2 to kinetochores , 2008, The Journal of cell biology.
[44] Jessica K. Polka,et al. Implications for Kinetochore-Microtubule Attachment from the Structure of an Engineered Ndc80 Complex , 2008, Cell.
[45] L. Aravind,et al. Anatomy of the E2 ligase fold: implications for enzymology and evolution of ubiquitin/Ub-like protein conjugation. , 2008, Journal of structural biology.
[46] Mitsuhiro Yanagida,et al. Human Blinkin/AF15q14 is required for chromosome alignment and the mitotic checkpoint through direct interaction with Bub1 and BubR1. , 2007, Developmental cell.
[47] A. Desai,et al. The Conserved KMN Network Constitutes the Core Microtubule-Binding Site of the Kinetochore , 2006, Cell.
[48] Andrea Musacchio,et al. Kinetochore Microtubule Dynamics and Attachment Stability Are Regulated by Hec1 , 2006, Cell.
[49] P. Sorger,et al. Structure of a central component of the yeast kinetochore: the Spc24p/Spc25p globular domain. , 2006, Structure.
[50] E. Salmon,et al. Molecular architecture of a kinetochore–microtubule attachment site , 2006, Nature Cell Biology.
[51] Susan L. Kline,et al. The human Mis12 complex is required for kinetochore assembly and proper chromosome segregation , 2006, The Journal of cell biology.
[52] Andrea Musacchio,et al. Architecture of the Human Ndc80-Hec1 Complex, a Critical Constituent of the Outer Kinetochore* , 2005, Journal of Biological Chemistry.
[53] Peter K Sorger,et al. Molecular organization of the Ndc80 complex, an essential kinetochore component. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[54] K. P. Rabitsch,et al. Functional Genomics Identifies Monopolin A Kinetochore Protein Required for Segregation of Homologs during Meiosis I , 2000, Cell.
[55] A. Desai,et al. Molecular architecture of the kinetochore–microtubule interface , 2008, Nature Reviews Molecular Cell Biology.
[56] S. Harrison,et al. The Ndc80/HEC1 complex is a contact point for kinetochore-microtubule attachment , 2007, Nature Structural &Molecular Biology.
[57] Peer Bork,et al. Systematic identification of novel protein domain families associated with nuclear functions. , 2002, Genome research.