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2
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3
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4
A conserved XIAP-interaction motif in caspase-9 and Smac/DIABLO regulates caspase activity and apoptosis.半胱天冬酶 -9和Smac/DIABLO中一个保守的XIAP相互作用基序调节半胱天冬酶活性和细胞凋亡。
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Regulation of the Apaf-1/caspase-9 apoptosome by caspase-3 and XIAP.半胱天冬酶-3和X连锁凋亡抑制蛋白对凋亡蛋白酶激活因子-1/半胱天冬酶-9凋亡小体的调控
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Role of XIAP in inhibiting cisplatin-induced caspase activation in non-small cell lung cancer cells: a small molecule Smac mimic sensitizes for chemotherapy-induced apoptosis by enhancing caspase-3 activation.XIAP在抑制非小细胞肺癌细胞中顺铂诱导的半胱天冬酶激活中的作用:一种小分子Smac模拟物通过增强半胱天冬酶-3激活使细胞对化疗诱导的凋亡敏感。
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Direct inhibition of caspase 3 is dispensable for the anti-apoptotic activity of XIAP.对caspase 3的直接抑制对于XIAP的抗凋亡活性而言并非必需。
EMBO J. 2001 Jun 15;20(12):3114-23. doi: 10.1093/emboj/20.12.3114.
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Survivin does not influence the anti-apoptotic action of XIAP on caspase-9.生存素不影响X染色体连锁凋亡抑制蛋白对胱天蛋白酶-9的抗凋亡作用。
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Mathematical modeling identifies inhibitors of apoptosis as mediators of positive feedback and bistability.数学建模确定凋亡抑制剂是正反馈和双稳态的介质。
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The apoptosome activates caspase-9 by dimerization.凋亡小体通过二聚化激活半胱天冬酶-9。
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Activity-based probes that target diverse cysteine protease families.靶向多种半胱氨酸蛋白酶家族的基于活性的探针。
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Targeting XIAP for the treatment of malignancy.靶向X连锁凋亡抑制蛋白用于恶性肿瘤治疗
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XIAP inhibits caspase-3 and -7 using two binding sites: evolutionarily conserved mechanism of IAPs.XIAP通过两个结合位点抑制半胱天冬酶-3和-7:IAPs的进化保守机制。
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Molecular mechanisms of caspase regulation during apoptosis.细胞凋亡过程中半胱天冬酶调节的分子机制。
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The protein structures that shape caspase activity, specificity, activation and inhibition.塑造半胱天冬酶活性、特异性、激活和抑制作用的蛋白质结构。
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A small molecule Smac mimic potentiates TRAIL- and TNFalpha-mediated cell death.一种小分子Smac模拟物可增强TRAIL和TNFα介导的细胞死亡。
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Structure-based design, synthesis, and evaluation of conformationally constrained mimetics of the second mitochondria-derived activator of caspase that target the X-linked inhibitor of apoptosis protein/caspase-9 interaction site.基于结构的设计、合成以及对靶向X连锁凋亡抑制蛋白/半胱天冬酶-9相互作用位点的线粒体衍生的半胱天冬酶激活剂-2构象受限模拟物的评估。
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半胱天冬酶3减弱X连锁凋亡抑制蛋白(XIAP)介导的对半胱天冬酶9的抑制作用。

Caspase 3 attenuates XIAP (X-linked inhibitor of apoptosis protein)-mediated inhibition of caspase 9.

作者信息

Denault Jean-Bernard, Eckelman Brendan P, Shin Hwain, Pop Cristina, Salvesen Guy S

机构信息

Program in Cell Death and Apoptosis Research, The Burnham Institute for Medical Research and the Graduate Program in Molecular Pathology, University of California San Diego, La Jolla, CA 92037, USA.

出版信息

Biochem J. 2007 Jul 1;405(1):11-9. doi: 10.1042/BJ20070288.

DOI:10.1042/BJ20070288
PMID:17437405
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1925235/
Abstract

During apoptosis, the initiator caspase 9 is activated at the apoptosome after which it activates the executioner caspases 3 and 7 by proteolysis. During this process, caspase 9 is cleaved by caspase 3 at Asp(330), and it is often inferred that this proteolytic event represents a feedback amplification loop to accelerate apoptosis. However, there is substantial evidence that proteolysis per se does not activate caspase 9, so an alternative mechanism for amplification must be considered. Cleavage at Asp(330) removes a short peptide motif that allows caspase 9 to interact with IAPs (inhibitors of apoptotic proteases), and this event may control the amplification process. We show that, under physiologically relevant conditions, caspase 3, but not caspase 7, can cleave caspase 9, and this does not result in the activation of caspase 9. An IAP antagonist disrupts the inhibitory interaction between XIAP (X-linked IAP) and caspase 9, thereby enhancing activity. We demonstrate that the N-terminal peptide of caspase 9 exposed upon cleavage at Asp330 cannot bind XIAP, whereas the peptide generated by autolytic cleavage of caspase 9 at Asp315 binds XIAP with substantial affinity. Consistent with this, we found that XIAP antagonists were only capable of promoting the activity of caspase 9 when it was cleaved at Asp315, suggesting that only this form is regulated by XIAP. Our results demonstrate that cleavage by caspase 3 does not activate caspase 9, but enhances apoptosis by alleviating XIAP inhibition of the apical caspase.

摘要

在细胞凋亡过程中,起始半胱天冬酶-9在凋亡小体处被激活,随后通过蛋白水解作用激活执行性半胱天冬酶-3和-7。在此过程中,半胱天冬酶-9在天冬氨酸330(Asp330)处被半胱天冬酶-3切割,通常推断这种蛋白水解事件代表一种反馈放大环以加速细胞凋亡。然而,有大量证据表明蛋白水解本身并不会激活半胱天冬酶-9,因此必须考虑一种替代的放大机制。在Asp330处的切割去除了一个短肽基序,该基序允许半胱天冬酶-9与凋亡蛋白酶抑制剂(IAPs)相互作用,这一事件可能控制放大过程。我们发现,在生理相关条件下,半胱天冬酶-3而非半胱天冬酶-7可切割半胱天冬酶-9,且这不会导致半胱天冬酶-9的激活。一种IAP拮抗剂破坏了X连锁IAP(XIAP)与半胱天冬酶-9之间的抑制性相互作用,从而增强活性。我们证明,在Asp330处切割后暴露的半胱天冬酶-9的N端肽不能结合XIAP,而半胱天冬酶-9在Asp315处自溶切割产生的肽与XIAP具有显著亲和力。与此一致的是,我们发现XIAP拮抗剂仅在半胱天冬酶-9在Asp315处被切割时能够促进其活性,这表明只有这种形式受XIAP调节。我们的结果表明,半胱天冬酶-3的切割不会激活半胱天冬酶-9,而是通过减轻XIAP对顶端半胱天冬酶的抑制来增强细胞凋亡。