4.8 Article

The Spindle Assembly Checkpoint Is Not Essential for Viability of Human Cells with Genetically Lowered APC/C Activity

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CELL REPORTS
卷 14, 期 8, 页码 1829-1840

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CELL PRESS
DOI: 10.1016/j.celrep.2016.01.060

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资金

  1. Hallas Moller Investigator award from the Novo Nordisk Foundation
  2. European Research Council (ERC) consolidator grant from the European Commission
  3. Sapere Aude program from the Danish Council for Independent Research
  4. Danish Cancer Society
  5. Lundbeck Foundation
  6. Danish Council for Independent Research
  7. Novo Nordisk Foundation [NNF14CC0001]
  8. Novo Nordisk Fonden [NNF14OC0008541] Funding Source: researchfish
  9. Novo Nordisk Foundation Center for Protein Research [PI Jakob Nilsson, PI Chunaram Choudhary] Funding Source: researchfish

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The anaphase-promoting complex/cyclosome (APC/C) and the spindle assembly checkpoint (SAC), which inhibits the APC/C, are essential determinants of mitotic timing and faithful division of genetic material. Activation of the APC/C is known to depend on two APC/C-interacting E2 ubiquitin-conjugating enzymes-UBE2C and UBE2S. We show that APC/C activity in human cells is tuned by the combinatorial use of three E2s, namely UBE2C, UBE2S, and UBE2D. Genetic deletion of UBE2C and UBE2S, individually or in combination, leads to discriminative reduction in APC/C function and sensitizes cells to UBE2D depletion. Reduction of APC/C activity results in loss of switch-like metaphase-to-anaphase transition and, strikingly, renders cells insensitive to chemical inhibition of MPS1 and genetic ablation of MAD2, both of which are essential for the SAC. These results provide insights into the regulation of APC/C activity and demonstrate that the essentiality of the SAC is imposed by the strength of the APC/C.

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