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Human securin proteolysis is controlled by the spindle checkpoint and reveals when the APC/C switches from activation by Cdc20 to Cdh1

机译:人体安全蛋白水解由主轴检查点控制,并显示APC / C从Cdc20激活切换到Cdh1的时间

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摘要

Progress through mitosis is controlled by the sequential destruction of key regulators including the mitotic cyclins and securin, an inhibitor of anaphase whose destruction is required for sister chromatid separation. Here we have used live cell imaging to determine the exact time when human securin is degraded in mitosis. We show that the timing of securin destruction is set by the spindle checkpoint; securin destruction begins at metaphase once the checkpoint is satisfied. Furthermore, reimposing the checkpoint rapidly inactivates securin destruction. Thus, securin and cyclin B1 destruction have very similar properties. Moreover, we find that both cyclin B1 and securin have to be degraded before sister chromatids can separate. A mutant form of securin that lacks its destruction box (D-box) is still degraded in mitosis, but now this is in anaphase. This destruction requires a KEN box in the NH2 terminus of securin and may indicate the time in mitosis when ubiquitination switches from APCCdc20 to APCCdh1. Lastly, a D-box mutant of securin that cannot be degraded in metaphase inhibits sister chromatid separation, generating a cut phenotype where one cell can inherit both copies of the genome. Thus, defects in securin destruction alter chromosome segregation and may be relevant to the development of aneuploidy in cancer.
机译:通过有丝分裂的进展受关键调节剂(包括有丝分裂细胞周期蛋白和securin)的后期破坏的控制,后者是后期阶段的抑制剂,其姊妹染色单体分离需要破坏。在这里,我们已经使用活细胞成像来确定人安全蛋白在有丝分裂中降解的确切时间。我们表明,安全性破坏的时机是由主轴检查点设置的。一旦检查点得到满足,securin破坏就会从中期开始。此外,重新设置检查点会迅速使安全性破坏。因此,securin和cyclin B1破坏具有非常相似的特性。此外,我们发现在姊妹染色单体可以分离之前,cyclin B1和securin都必须被降解。缺少破坏框(D-box)的securin突变体形式仍在有丝分裂中降解,但是现在处于后期。这种破坏需要在Securin的NH2末端有一个KEN盒,并且可能指示泛素化从APCCdc20切换到APCCdh1时的有丝分裂时间。最后,不能在中期降解的securin的D-box突变体抑制了姐妹染色单体的分离,产生了一个切割表型,一个细胞可以继承两个基因组拷贝。因此,securin破坏的缺陷改变了染色体的分离,可能与癌症中非整倍性的发展有关。

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