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Generation of a Spindle Checkpoint Arrest from Synthetic Signaling Assemblies.
Yuan, Ivan; Leontiou, Ioanna; Amin, Priya; May, Karen M; Soper Ní Chafraidh, Sadhbh; Zlámalová, Eliska; Hardwick, Kevin G.
Afiliación
  • Yuan I; Wellcome Trust Centre for Cell Biology, University of Edinburgh King's Buildings, Max Born Crescent, Edinburgh EH9 3BF, UK.
  • Leontiou I; Wellcome Trust Centre for Cell Biology, University of Edinburgh King's Buildings, Max Born Crescent, Edinburgh EH9 3BF, UK.
  • Amin P; Wellcome Trust Centre for Cell Biology, University of Edinburgh King's Buildings, Max Born Crescent, Edinburgh EH9 3BF, UK.
  • May KM; Wellcome Trust Centre for Cell Biology, University of Edinburgh King's Buildings, Max Born Crescent, Edinburgh EH9 3BF, UK.
  • Soper Ní Chafraidh S; Wellcome Trust Centre for Cell Biology, University of Edinburgh King's Buildings, Max Born Crescent, Edinburgh EH9 3BF, UK.
  • Zlámalová E; Wellcome Trust Centre for Cell Biology, University of Edinburgh King's Buildings, Max Born Crescent, Edinburgh EH9 3BF, UK.
  • Hardwick KG; Wellcome Trust Centre for Cell Biology, University of Edinburgh King's Buildings, Max Born Crescent, Edinburgh EH9 3BF, UK. Electronic address: kevin.hardwick@ed.ac.uk.
Curr Biol ; 27(1): 137-143, 2017 Jan 09.
Article en En | MEDLINE | ID: mdl-28017606
The spindle checkpoint acts as a mitotic surveillance system, monitoring interactions between kinetochores and spindle microtubules and ensuring high-fidelity chromosome segregation [1-3]. The checkpoint is activated by unattached kinetochores, and Mps1 kinase phosphorylates KNL1 on conserved MELT motifs to generate a binding site for the Bub3-Bub1 complex [4-7]. This leads to dynamic kinetochore recruitment of Mad proteins [8, 9], a conformational change in Mad2 [10-12], and formation of the mitotic checkpoint complex (MCC: Cdc20-Mad3-Mad2 [13-15]). MCC formation inhibits the anaphase-promoting complex/cyclosome (Cdc20-APC/C), thereby preventing the proteolytic destruction of securin and cyclin and delaying anaphase onset. What happens at kinetochores after Mps1-dependent Bub3-Bub1 recruitment remains mechanistically unclear, and it is not known whether kinetochore proteins other than KNL1 have significant roles to play in checkpoint signaling and MCC generation. Here, we take a reductionist approach, avoiding the complexities of kinetochores, and demonstrate that co-recruitment of KNL1Spc7 and Mps1Mph1 is sufficient to generate a robust checkpoint signal and prolonged mitotic arrest. We demonstrate that a Mad1-Bub1 complex is formed during synthetic checkpoint signaling. Analysis of bub3Δ mutants demonstrates that Bub3 acts to suppress premature checkpoint signaling. This synthetic system will enable detailed, mechanistic dissection of MCC generation and checkpoint silencing. After analyzing several mutants that affect localization of checkpoint complexes, we conclude that spindle checkpoint arrest can be independent of their kinetochore, spindle pole, and nuclear envelope localization.
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Texto completo: 1 Base de datos: MEDLINE Asunto principal: Schizosaccharomyces / Transducción de Señal / Segregación Cromosómica / Proteínas de Schizosaccharomyces pombe / Puntos de Control del Ciclo Celular / Mitosis Idioma: En Revista: Curr Biol Asunto de la revista: BIOLOGIA Año: 2017 Tipo del documento: Article

Texto completo: 1 Base de datos: MEDLINE Asunto principal: Schizosaccharomyces / Transducción de Señal / Segregación Cromosómica / Proteínas de Schizosaccharomyces pombe / Puntos de Control del Ciclo Celular / Mitosis Idioma: En Revista: Curr Biol Asunto de la revista: BIOLOGIA Año: 2017 Tipo del documento: Article