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一种用于半胱天冬酶-8激活的诱导邻近模型。

An induced proximity model for caspase-8 activation.

作者信息

Muzio M, Stockwell B R, Stennicke H R, Salvesen G S, Dixit V M

机构信息

University of Michigan Medical School, Department of Pathology, Ann Arbor, Michigan 48109, USA.

出版信息

J Biol Chem. 1998 Jan 30;273(5):2926-30. doi: 10.1074/jbc.273.5.2926.

Abstract

The assembly of the CD-95 (Fas/Apo-1) receptor death-inducing signaling complex occurs in a hierarchical manner; the death domain of CD-95 binds to the corresponding domain in the adapter molecule Fas-associated death domain (FADD) Mort-1, which in turn recruits the zymogen form of the death protease caspase-8 (FLICE/Mach-1) by a homophilic interaction involving the death effector domains. Immediately after recruitment, the single polypeptide FLICE zymogen is proteolytically processed to the active dimeric species composed of large and small catalytic subunits. Since all caspases cleave their substrates after Asp residues and are themselves processed from the single-chain zymogen to the two-chain active enzyme by cleavage at internal Asp residues, it follows that an upstream caspase can process a downstream zymogen. However, since FLICE represents the most apical caspase in the Fas pathway, its mode of activation has been enigmatic. We hypothesized that the FLICE zymogen possesses intrinsic enzymatic activity such that when approximated, it autoprocesses to the active protease. Support for this was provided by (i) the synthesis of chimeric Fpk3FLICE molecules that can be oligomerized in vivo by the synthetic cell-permeable dimerizer FK1012H2. Cells transfected with Fpk3FLICE underwent apoptosis after exposure to FK1012H2; (ii) the creation of a nonprocessable zymogen form of FLICE that retained low but detectable protease activity.

摘要

CD-95(Fas/Apo-1)受体死亡诱导信号复合物的组装呈层级方式进行;CD-95的死亡结构域与衔接分子Fas相关死亡结构域(FADD,即Mort-1)中的相应结构域结合,而FADD又通过涉及死亡效应结构域的同源相互作用募集死亡蛋白酶caspase-8(FLICE/Mach-1)的酶原形式。募集后,单链多肽FLICE酶原立即被蛋白水解加工成由大小催化亚基组成的活性二聚体形式。由于所有半胱天冬酶都在天冬氨酸残基后切割其底物,并且自身也通过在内部天冬氨酸残基处切割从单链酶原加工成双链活性酶,因此上游半胱天冬酶可以加工下游酶原。然而,由于FLICE是Fas途径中最顶端的半胱天冬酶,其激活方式一直是个谜。我们推测FLICE酶原具有内在酶活性,因此当靠近时,它会自动加工成活性蛋白酶。以下几点为该推测提供了支持:(i)合成了嵌合Fpk3FLICE分子,其可通过合成的可透过细胞的二聚体FK1012H2在体内进行寡聚化。用Fpk3FLICE转染的细胞在暴露于FK1012H2后发生凋亡;(ii)创建了一种不可加工的FLICE酶原形式,其保留了低但可检测到的蛋白酶活性。

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