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催化作用对Mad2激活动力学的影响。

The influence of catalysis on mad2 activation dynamics.

作者信息

Simonetta Marco, Manzoni Romilde, Mosca Roberto, Mapelli Marina, Massimiliano Lucia, Vink Martin, Novak Bela, Musacchio Andrea, Ciliberto Andrea

机构信息

Department of Experimental Oncology, European Institute of Oncology, Milan, Italy.

出版信息

PLoS Biol. 2009 Jan 13;7(1):e10. doi: 10.1371/journal.pbio.1000010.

Abstract

Mad2 is a key component of the spindle assembly checkpoint, a safety device ensuring faithful sister chromatid separation in mitosis. The target of Mad2 is Cdc20, an activator of the anaphase-promoting complex/cyclosome (APC/C). Mad2 binding to Cdc20 is a complex reaction that entails the conformational conversion of Mad2 from an open (O-Mad2) to a closed (C-Mad2) conformer. Previously, it has been hypothesized that the conversion of O-Mad2 is accelerated by its conformational dimerization with C-Mad2. This hypothesis, known as the Mad2-template hypothesis, is based on the unproven assumption that the natural conversion of O-Mad2 required to bind Cdc20 is slow. Here, we provide evidence for this fundamental assumption and demonstrate that conformational dimerization of Mad2 accelerates the rate of Mad2 binding to Cdc20. On the basis of our measurements, we developed a set of rate equations that deliver excellent predictions of experimental binding curves under a variety of different conditions. Our results strongly suggest that the interaction of Mad2 with Cdc20 is rate limiting for activation of the spindle checkpoint. Conformational dimerization of Mad2 is essential to accelerate Cdc20 binding, but it does not modify the equilibrium of the Mad2:Cdc20 interaction, i.e., it is purely catalytic. These results surpass previously formulated objections to the Mad2-template model and predict that the release of Mad2 from Cdc20 is an energy-driven process.

摘要

Mad2是纺锤体组装检验点的关键组成部分,该检验点是一种确保有丝分裂过程中姐妹染色单体准确分离的安全机制。Mad2的作用靶点是Cdc20,它是后期促进复合物/细胞周期体(APC/C)的激活因子。Mad2与Cdc20的结合是一个复杂的反应,需要Mad2从开放构象(O-Mad2)转变为封闭构象(C-Mad2)。此前有假说认为,O-Mad2与C-Mad2的构象二聚化可加速其转变。这一假说即Mad2模板假说,基于一个未经证实的假设,即结合Cdc20所需的O-Mad2自然转变过程很慢。在此,我们为这一基本假设提供了证据,并证明Mad2的构象二聚化加速了Mad2与Cdc20的结合速率。基于我们的测量结果,我们推导出了一组速率方程,这些方程能在各种不同条件下出色地预测实验结合曲线。我们的结果有力地表明,Mad2与Cdc20的相互作用是纺锤体检验点激活的限速步骤。Mad2的构象二聚化对于加速与Cdc20的结合至关重要,但它不会改变Mad2与Cdc20相互作用的平衡,即它纯粹起催化作用。这些结果超越了之前对Mad2模板模型提出的质疑,并预测Mad2从Cdc20上的释放是一个能量驱动的过程。

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