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CED-4与CED-9复合物的2:1化学计量关系以及四聚体CED-4:对CED-3激活调控的见解。

2:1 Stoichiometry of the CED-4-CED-9 complex and the tetrameric CED-4: insights into the regulation of CED-3 activation.

作者信息

Yan Nieng, Xu Yanhui, Shi Yigong

机构信息

Department of Molecular Biology, Princeton University, Lewis Thomas Laboratory, Princeton, New Jersey 08544, USA.

出版信息

Cell Cycle. 2006 Jan;5(1):31-4. doi: 10.4161/cc.5.1.2263. Epub 2006 Jan 18.

Abstract

Four evolutionally conserved proteins -EGL-1, CED-9, CED-4 and CED-3- collectively control the initiation of programmed cell death (PCD) in Caenorhabditis elegans. Activation of CED-3, the cell killing caspase, requires CED-4. The pro-death function of CED-4 is inhibited by the mitochondria-bound CED-9. Crystal structure of the 150-kDa CED-4-CED-9 complex at 2.6 A resolution reveals a 2:1 stoichiometry between CED-4 and CED-9. EGL-1 binding to CED-9 results in the dissociation of CED-4 from the CED-4-CED-9 complex. The freed CED-4 dimer further dimerizes to form a tetramer. Only the CED-4 tetramer, but not dimer or monomer, is capable of activating CED-3. Thus, CED-9 inhibits CED-4-mediated activation of CED-3 by sequestering CED-4 dimer from further dimerization. On the basis of structural and biochemical analyses, working models are proposed to explain the mechanism by which CED-4 facilitates CED-3 activation.

摘要

四种进化上保守的蛋白质——EGL-1、CED-9、CED-4和CED-3——共同控制秀丽隐杆线虫程序性细胞死亡(PCD)的起始。细胞杀伤性半胱天冬酶CED-3的激活需要CED-4。CED-4的促死亡功能受到与线粒体结合的CED-9的抑制。分辨率为2.6埃的150 kDa CED-4-CED-9复合物的晶体结构揭示了CED-4与CED-9之间2:1的化学计量比。EGL-1与CED-9结合导致CED-4从CED-4-CED-9复合物中解离。释放的CED-4二聚体进一步二聚化形成四聚体。只有CED-4四聚体,而不是二聚体或单体,能够激活CED-3。因此,CED-9通过隔离CED-4二聚体使其不再二聚化,从而抑制CED-4介导的CED-3激活。基于结构和生化分析,提出了工作模型来解释CED-4促进CED-3激活的机制。

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