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Phosphorylation by protein kinase A disassembles the caspase-9 core.蛋白激酶 A 的磷酸化使 caspase-9 核心解体。
Cell Death Differ. 2018 Jun;25(6):1025-1039. doi: 10.1038/s41418-017-0052-9. Epub 2018 Jan 19.
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Post-translational Modification of Caspases: The Other Side of Apoptosis Regulation.翻译:Caspases 的翻译后修饰:细胞凋亡调控的另一面。
Trends Cell Biol. 2017 May;27(5):322-339. doi: 10.1016/j.tcb.2017.01.003. Epub 2017 Feb 7.
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Palmitoylation of caspase-6 by HIP14 regulates its activation.HIP14对胱天蛋白酶-6的棕榈酰化修饰调控其激活。
Cell Death Differ. 2017 Mar;24(3):433-444. doi: 10.1038/cdd.2016.139. Epub 2016 Dec 2.
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Dual Site Phosphorylation of Caspase-7 by PAK2 Blocks Apoptotic Activity by Two Distinct Mechanisms.PAK2对Caspase-7的双位点磷酸化通过两种不同机制阻断凋亡活性。
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The Apaf-1 apoptosome induces formation of caspase-9 homo- and heterodimers with distinct activities.凋亡酶激活因子-1(Apaf-1)凋亡体诱导具有不同活性的胱冬酶-9 同源和异源二聚体的形成。
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Opposing effects of Elk-1 multisite phosphorylation shape its response to ERK activation.Elk-1多位点磷酸化的相反作用塑造了其对ERK激活的反应。
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A near atomic structure of the active human apoptosome.活性人类凋亡小体的近原子结构。
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Cacidases: caspases can cleave after aspartate, glutamate and phosphoserine residues.半胱天冬酶:半胱天冬酶可在天冬氨酸、谷氨酸和磷酸丝氨酸残基之后进行切割。
Cell Death Differ. 2016 Oct;23(10):1717-26. doi: 10.1038/cdd.2016.62. Epub 2016 Jul 1.
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Caspase-8 tyrosine-380 phosphorylation inhibits CD95 DISC function by preventing procaspase-8 maturation and cycling within the complex.半胱天冬酶-8酪氨酸-380磷酸化通过阻止前半胱天冬酶-8成熟及在复合物中循环来抑制CD95死亡诱导信号复合物功能。
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10
Tyrosine Phosphorylation of Caspase-8 Abrogates Its Apoptotic Activity and Promotes Activation of c-Src.半胱天冬酶-8的酪氨酸磷酸化消除其凋亡活性并促进c-Src的激活。
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c-Abl 激酶在活性位点附近使 Tyr-397 发生磷酸化,从而使 caspase-9 失活。

Active site-adjacent phosphorylation at Tyr-397 by c-Abl kinase inactivates caspase-9.

机构信息

From the Departments of Chemistry and.

Veterinary and Animal Sciences, University of Massachusetts, Amherst, Massachusetts 01003.

出版信息

J Biol Chem. 2017 Dec 29;292(52):21352-21365. doi: 10.1074/jbc.M117.811976. Epub 2017 Oct 24.

DOI:10.1074/jbc.M117.811976
PMID:29066624
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5766954/
Abstract

Caspase-9 (casp-9) is an initiator caspase and plays a central role in activating apoptotic cell death. Control of all caspases is tightly regulated by a series of phosphorylation events enacted by several different kinases. Caspase-9 is the most heavily phosphorylated of all caspases, with phosphorylation of at least 11 distinct residues in all three caspase-9 domains by nine kinases. Caspase-9 phosphorylation by the non-receptor tyrosine kinase c-Abl at Tyr-153 reportedly leads to caspase-9 activation. All other phosphorylation events on caspases have been shown to block proteolytic function by a number of mechanisms, so we sought to unravel the molecular mechanism of the putative caspase-9 activation by phosphorylation. Surprisingly, we observed no evidence for Tyr-153 phosphorylation of caspase-9 or in cells, suggesting that Tyr-153 is not phosphorylated by c-Abl. Instead, we identified a new site for c-Abl-mediated phosphorylation, Tyr-397. This residue is adjacent to the caspase-9 active site but, as a member of the second shell, not a residue that directly contacts substrate. Our results further indicate that Tyr-397 is the dominant site of c-Abl phosphorylation both and upon c-Abl activation in cells. Of note, phosphorylation at this site inhibits caspase-9 activity, and the bulk of the added phosphate moiety appeared to directly block substrate binding. c-Abl plays both proapoptotic and prosurvival roles, and our findings suggest that c-Abl's effects on caspase-9 activity promote the prosurvival mode.

摘要

半胱天冬酶-9(casp-9)是一种起始半胱天冬酶,在激活细胞凋亡中起着核心作用。所有半胱天冬酶的活性都受到严格控制,这是通过一系列由不同激酶实施的磷酸化事件实现的。Caspase-9 是所有半胱天冬酶中磷酸化程度最高的,在所有三个 caspase-9 结构域中,有至少 11 个不同的残基被 9 种激酶磷酸化。据报道,非受体酪氨酸激酶 c-Abl 在 Tyr-153 上的磷酸化导致 caspase-9 的激活。所有其他半胱天冬酶的磷酸化事件都通过多种机制被证明会阻断蛋白水解功能,因此我们试图揭示磷酸化介导的假定 caspase-9 激活的分子机制。令人惊讶的是,我们没有观察到 caspase-9 或细胞中 Tyr-153 的磷酸化证据,这表明 Tyr-153 不是由 c-Abl 磷酸化的。相反,我们鉴定了 c-Abl 介导的磷酸化的新位点,Tyr-397。该残基位于 caspase-9 的活性位点附近,但作为第二壳层的一部分,不是直接与底物接触的残基。我们的结果进一步表明,Tyr-397 是 c-Abl 磷酸化的主要位点,无论是在 和细胞中 c-Abl 激活时。值得注意的是,该位点的磷酸化抑制了 caspase-9 的活性,并且添加的磷酸部分大部分似乎直接阻止了底物的结合。c-Abl 发挥促凋亡和抗凋亡的双重作用,我们的研究结果表明,c-Abl 对半胱天冬酶-9 活性的影响促进了抗凋亡模式。