Literature DB >> 29895228

The closed form of Mad2 is bound to Mad1 and Cdc20 at unattached kinetochores.

Gang Zhang1,2,3, Jakob Nilsson1.   

Abstract

The spindle assembly checkpoint (SAC) ensures accurate chromosome segregation by delaying anaphase onset in response to unattached kinetochores. Anaphase is delayed by the generation of the mitotic checkpoint complex (MCC) composed of the checkpoint proteins Mad2 and BubR1/Bub3 bound to the protein Cdc20. Current models assume that MCC production is catalyzed at unattached kinetochores and that the Mad1/Mad2 complex is instrumental in the conversion of Mad2 from an open form (O-Mad2) to a closed form (C-Mad2) that can bind to Cdc20. Importantly the levels of Mad2 at kinetochores correlate with SAC activity but whether C-Mad2 at kinetochores exclusively represents its complex with Mad1 is not fully established. Here we use a recently established C-Mad2 specific monoclonal antibody to show that Cdc20 and C-Mad2 levels correlate at kinetochores and that depletion of Cdc20 reduces Mad2 but not Mad1 kinetochore levels. Importantly reintroducing wild type Cdc20 but not Cdc20 R132A, a mutant form that cannot bind Mad2, restores Mad2 levels. In agreement with this live cell imaging of fluorescent tagged Mad2 reveals that Cdc20 depletion strongly reduces Mad2 localization to kinetochores. These results support the presence of Mad2-Cdc20 complexes at kinetochores in agreement with current models of the SAC but also argue that Mad2 levels at kinetochores cannot be used as a direct readout of Mad1 levels.

Entities:  

Keywords:  Cdc20; Mad1; Mad2; kinetochore; spindle assembly checkpoint

Year:  2018        PMID: 29895228      PMCID: PMC6110578          DOI: 10.1080/15384101.2018.1480209

Source DB:  PubMed          Journal:  Cell Cycle        ISSN: 1551-4005            Impact factor:   4.534


  30 in total

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Authors:  Lucia Sironi; Marina Mapelli; Stefan Knapp; Anna De Antoni; Kuan-Teh Jeang; Andrea Musacchio
Journal:  EMBO J       Date:  2002-05-15       Impact factor: 11.598

2.  Spindle checkpoint protein dynamics at kinetochores in living cells.

Authors:  Bonnie J Howell; Ben Moree; Emily M Farrar; Scott Stewart; Guowei Fang; E D Salmon
Journal:  Curr Biol       Date:  2004-06-08       Impact factor: 10.834

3.  Probing the in vivo function of Mad1:C-Mad2 in the spindle assembly checkpoint.

Authors:  Luca L Fava; Manuel Kaulich; Erich A Nigg; Anna Santamaria
Journal:  EMBO J       Date:  2011-07-19       Impact factor: 11.598

4.  Dynamics of centromere and kinetochore proteins; implications for checkpoint signaling and silencing.

Authors:  Jagesh V Shah; Elliot Botvinick; Zahid Bonday; Frank Furnari; Michael Berns; Don W Cleveland
Journal:  Curr Biol       Date:  2004-06-08       Impact factor: 10.834

5.  p31comet-mediated extraction of Mad2 from the MCC promotes efficient mitotic exit.

Authors:  Frederick G Westhorpe; Anthony Tighe; Pablo Lara-Gonzalez; Stephen S Taylor
Journal:  J Cell Sci       Date:  2011-11-18       Impact factor: 5.285

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Review 8.  Regulation of mitotic progression by the spindle assembly checkpoint.

Authors:  Tiziana Lischetti; Jakob Nilsson
Journal:  Mol Cell Oncol       Date:  2015-01-30

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Authors:  Marco Simonetta; Romilde Manzoni; Roberto Mosca; Marina Mapelli; Lucia Massimiliano; Martin Vink; Bela Novak; Andrea Musacchio; Andrea Ciliberto
Journal:  PLoS Biol       Date:  2009-01-13       Impact factor: 8.029

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Journal:  Nat Cell Biol       Date:  2013-10-06       Impact factor: 28.824

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1.  Efficient mitotic checkpoint signaling depends on integrated activities of Bub1 and the RZZ complex.

Authors:  Gang Zhang; Thomas Kruse; Claudia Guasch Boldú; Dimitriya H Garvanska; Fabian Coscia; Matthias Mann; Marin Barisic; Jakob Nilsson
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Review 2.  Zombies Never Die: The Double Life Bub1 Lives in Mitosis.

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4.  Downregulation of the enhancer of zeste homolog 1 transcriptional factor predicts poor prognosis of triple-negative breast cancer patients.

Authors:  Wei Peng; Wei Tang; Jian-Di Li; Rong-Quan He; Jia-Yuan Luo; Zu-Xuan Chen; Jiang-Hui Zeng; Xiao-Hua Hu; Jin-Cai Zhong; Yang Li; Fu-Chao Ma; Tian-Yi Xie; Su-Ning Huang; Lian-Ying Ge
Journal:  PeerJ       Date:  2022-07-12       Impact factor: 3.061

  4 in total

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