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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Explaining the oligomerization properties of the spindle assembly checkpoint protein Mad2
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Explaining the oligomerization properties of the spindle assembly checkpoint protein Mad2

机译:解释纺锤体装配检查点蛋白Mad2的低聚特性

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Mad2 is an essential component of the spindle assembly checkpoint (SAC), a molecular device designed to coordinate anaphase onset with the completion of chromosome attachment to the spindle. Capture of chromosome by microtubules occur on protein scaffolds known as kinetochores. The SAC proteins are recruited to kinetochores in prometaphase where they generate a signal that halts anaphase until all sister chromatid pairs are bipolarly oriented. Mad2 is a subunit of the mitotic checkpoint complex, which is regarded as the effector of the spindle checkpoint. Its function is the sequestration of Cdc20, a protein required for progression into anaphase. The function of Mad2 in the checkpoint correlates with a dramatic conformational rearrangement of the Mad2 protein. Mad2 adopts a closed conformation (C-Mad2) when bound to Cdc20, and an open conformation (O-Mad2) when unbound to this ligand. Checkpoint activation promotes the conversion of O-Mad2 to Cdc20-bound C-Mad2. We show that this conversion requires a C-Mad2 template and we identify this in Mad l-bound Mad2. In our proposition, Mad1-bound C-Mad2 recruits O-Mad2 to kinetochores, stimulating Cdc20 capture, implying that O-Mad2 and C-Mad2 form dimers. We discuss Mad2 oligomerization and link our discoveries to previous observations related to Mad2 oligomerization.
机译:Mad2是纺锤体装配检查点(SAC)的重要组成部分,SAC是一种分子装置,旨在协调后期发生与染色体与纺锤体的附着完成。微管捕获染色体发生在被称为动索的蛋白支架上。 SAC蛋白被募集到前期的动植物中,在那里它们产生一个停止后期的信号,直到所有姐妹染色单体对都双极性取向。 Mad2是有丝分裂检查点复合体的一个亚基,被认为是纺锤体检查点的效应子。它的功能是隔离Cdc20,Cdc20是进入后期的蛋白质。 Mad2在检查点中的功能与Mad2蛋白的剧烈构象重排有关。 Mad2与Cdc20结合时采用封闭构象(C-Mad2),而与该配体未结合时则采用开放构象(O-Mad2)。检查点激活可促进O-Mad2转换为与Cdc20绑定的C-Mad2。我们表明此转换需要一个C-Mad2模板,并在与Mad 1结合的Mad2中进行识别。在我们的主张中,与Mad1结合的C-Mad2将O-Mad2募集到动植物,刺激Cdc20捕获,暗示O-Mad2和C-Mad2形成二聚体。我们讨论Mad2寡聚化并将我们的发现与以前与Mad2寡聚化有关的观察结果联系起来。

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