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本文引用的文献

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The apoptotic v-cyclin-CDK6 complex phosphorylates and inactivates Bcl-2.凋亡性v-细胞周期蛋白-CDK6复合物使Bcl-2磷酸化并使其失活。
Nat Cell Biol. 2000 Nov;2(11):819-25. doi: 10.1038/35041064.
2
Protein kinase inhibitors flavopiridol and 7-hydroxy-staurosporine down-regulate antiapoptosis proteins in B-cell chronic lymphocytic leukemia.蛋白激酶抑制剂黄酮哌啶醇和7-羟基星孢菌素可下调B细胞慢性淋巴细胞白血病中的抗凋亡蛋白。
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Phosphorylation of Bcl-2 protein by CDC2 kinase during G2/M phases and its role in cell cycle regulation.G2/M期期间细胞周期蛋白依赖性激酶2(CDC2激酶)对Bcl-2蛋白的磷酸化作用及其在细胞周期调控中的作用。
J Biol Chem. 2000 Jul 14;275(28):21661-7. doi: 10.1074/jbc.M906893199.
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Requirement of the prolyl isomerase Pin1 for the replication checkpoint.脯氨酰异构酶Pin1对复制检查点的需求。
Science. 2000 Mar 3;287(5458):1644-7. doi: 10.1126/science.287.5458.1644.
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Regulation of Bcl2 phosphorylation by stress response kinase pathway.应激反应激酶途径对Bcl2磷酸化的调控。
Int J Oncol. 2000 Mar;16(3):497-500. doi: 10.3892/ijo.16.3.497.
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Science. 2000 Feb 4;287(5454):873-80. doi: 10.1126/science.287.5454.873.
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Caspase-dependent Cdk activity is a requisite effector of apoptotic death events.半胱天冬酶依赖性细胞周期蛋白依赖性激酶活性是凋亡死亡事件的必要效应器。
J Cell Biol. 2000 Jan 10;148(1):59-72. doi: 10.1083/jcb.148.1.59.
8
BCL-2 is phosphorylated and inactivated by an ASK1/Jun N-terminal protein kinase pathway normally activated at G(2)/M.BCL-2在通常在G(2)/M期被激活的ASK1/ Jun N端蛋白激酶途径作用下发生磷酸化并失活。
Mol Cell Biol. 1999 Dec;19(12):8469-78. doi: 10.1128/MCB.19.12.8469.
9
Mitogen-activated protein kinase pathway is dispensable for microtubule-active drug-induced Raf-1/Bcl-2 phosphorylation and apoptosis in leukemia cells.丝裂原活化蛋白激酶通路对于微管活性药物诱导白血病细胞中Raf-1/Bcl-2磷酸化和凋亡而言并非必需。
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10
How the cyclin became a cyclin: regulated proteolysis in the cell cycle.细胞周期蛋白如何成为细胞周期蛋白:细胞周期中的调控性蛋白水解作用
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微管靶向药物诱导Bcl-2磷酸化并与Pin1结合。

Microtubule-targeting drugs induce Bcl-2 phosphorylation and association with Pin1.

作者信息

Pathan N, Aime-Sempe C, Kitada S, Haldar S, Reed J C

机构信息

The Burnham Institute, 10901 N. Torrey Pines, La Jolla, CA 92037, USA.

出版信息

Neoplasia. 2001 Jan-Feb;3(1):70-9. doi: 10.1038/sj.neo.7900131.

DOI:10.1038/sj.neo.7900131
PMID:11326318
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1505024/
Abstract

Bcl-2 is a critical suppressor of apoptosis that is overproduced in many types of cancer. Phosphorylation of the Bcl-2 protein is induced on serine residues in tumor cells arrested by microtubule-targeting drugs (paclitaxel, vincristine, nocodazole) and has been associated with inactivation of antiapoptotic function through an unknown mechanism. Comparison of a variety of pharmacological inhibitors of serine/threonine-specific protein kinases demonstrated that the cyclin-dependent kinase inhibitor, flavopiridol, selectively blocks Bcl-2 phosphorylation induced by antimicrotubule drugs. Bcl-2 could also be coimmunoprecipitated with the kinase Cdc2 in M-phase-arrested cells, suggesting that a Cdc2 may be responsible for phosphorylation of Bcl-2 in cells treated with microtubule-targeting drugs. Examination of several serine-->alanine substitution mutants of Bcl-2 suggested that serine 70 and serine 87 represent major sites of Bcl-2 phosphorylation induced in response to microtubule-targeting drugs. Both these serines are within sequence contexts suitable for proline-directed kinases such as Cdc2. Phosphorylated Bcl-2 protein was discovered to associate in M-phase-arrested cells with Pin1, a mitotic peptidyl prolyl isomerase (PPIase) known to interact with substrates of Cdc2 during mitosis. In contrast, phosphorylation of Bcl-2 induced by microtubule-targeting drugs did not alter its ability to associate with Bcl-2 (homodimerization), Bax, BAG1, or other Bcl-2-binding proteins. Since the region in Bcl-2 containing serine 70 and serine 87 represents a proline-rich loop that has been associated with autorepression of its antiapoptotic activity, the discovery of Pin1 interactions with phosphorylated Bcl-2 raises the possibility that Pin1 alters the conformation of Bcl-2 and thereby modulates its function in cells arrested with antimicrotubule drugs.

摘要

Bcl-2是细胞凋亡的关键抑制因子,在多种癌症中过度产生。在被微管靶向药物(紫杉醇、长春新碱、诺考达唑)阻滞的肿瘤细胞中,Bcl-2蛋白的丝氨酸残基会发生磷酸化,并且通过未知机制与抗凋亡功能的失活相关。对多种丝氨酸/苏氨酸特异性蛋白激酶的药理学抑制剂进行比较表明,细胞周期蛋白依赖性激酶抑制剂黄酮哌酯能选择性地阻断抗微管药物诱导的Bcl-2磷酸化。在M期阻滞的细胞中,Bcl-2也能与激酶Cdc2进行共免疫沉淀,这表明Cdc2可能负责微管靶向药物处理的细胞中Bcl-2的磷酸化。对Bcl-2的几个丝氨酸→丙氨酸替代突变体的研究表明,丝氨酸70和丝氨酸87是响应微管靶向药物诱导的Bcl-2磷酸化的主要位点。这两个丝氨酸都处于适合脯氨酸导向激酶(如Cdc2)作用的序列环境中。发现在M期阻滞的细胞中,磷酸化的Bcl-2蛋白与Pin1相关联,Pin1是一种有丝分裂肽基脯氨酰异构酶(PPIase),已知在有丝分裂期间与Cdc2的底物相互作用。相比之下,微管靶向药物诱导的Bcl-2磷酸化并没有改变其与Bcl-2(同二聚化)、Bax、BAG1或其他Bcl-2结合蛋白结合的能力。由于Bcl-2中包含丝氨酸70和丝氨酸87的区域代表一个富含脯氨酸的环,该环与其抗凋亡活性的自抑制有关,Pin1与磷酸化Bcl-2相互作用的发现增加了一种可能性,即Pin1改变了Bcl-2的构象,从而调节其在被抗微管药物阻滞的细胞中的功能。