首页> 美国卫生研究院文献>Nucleic Acids Research >Cleavage of the Bloom’s syndrome gene product during apoptosis by caspase-3 results in an impaired interaction with topoisomerase IIIα
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Cleavage of the Bloom’s syndrome gene product during apoptosis by caspase-3 results in an impaired interaction with topoisomerase IIIα

机译:绽放的开裂 caspase-3凋亡过程中的综合征基因产物导致 与拓扑异构酶IIIα的相互作用减弱

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摘要

In higher eukaryotes, the integration of signals triggered in response to certain types of stress can result in programmed cell death. Central to these events is the sequential activation of a cascade of proteinases known as caspases. The final activated effector caspases of this cascade digest a number of cellular proteins, in some cases increasing their enzymatic activity, in others destroying their function. Of the proteins shown to be targets for caspase-mediated proteolysis, a surprisingly large proportion are proteins involved in the signalling or repair of DNA damage. Here we investigate whether BLM, the product of the gene mutated in Bloom’s syndrome, a human autosomal disease characterised by cancer predisposition and sunlight sensitivity, is cleaved during apoptosis. BLM interacts with topoisomerase IIIα and has been proposed to play an important role in maintaining genomic integrity through its roles in DNA repair and replication. We show that BLM is cleaved during apoptosis by caspase-3 and reveal that the main cleavage site is located at the junction between the N-terminal and central helicase domains of BLM. Proteolytic cleavage by caspase-3 produces a 120 kDa fragment, which contains the intact helicase domain and three smaller fragments, the relative amounts of which depend on time of incubation with caspase-3. The 120 kDa fragment retains the helicase activity of the intact BLM protein. However, its interaction with topoisomerase IIIα is severely impaired. Since the BLM–topoisomerase interaction is believed to be necessary for many of the replication and recombination functions of BLM, we suggest that caspase-3 cleavage of BLM could alter the localisation and/or function of BLM and that these changes may be important in the process of apoptosis.
机译:在高等真核生物中,响应某些类型的压力而触发的信号整合可能导致程序性细胞死亡。这些事件的核心是顺序激活一系列称为胱天蛋白酶的蛋白酶。该级联的最终活化的效应子胱天蛋白酶消化许多细胞蛋白,在某些情况下增加其酶促活性,而在另一些情况下破坏其功能。显示为胱天蛋白酶介导的蛋白水解靶标的蛋白质中,出乎意料的大比例是参与DNA损伤的信号传导或修复的蛋白质。在这里,我们研究了BLM(在Bloom综合征中突变的基因的产物),它在凋亡过程中是否被裂解,Bloom综合征是一种以癌症易感性和阳光敏感性为特征的人类常染色体疾病。 BLM与拓扑异构酶IIIα相互作用,并已提出通过其在DNA修复和复制中的作用在维持基因组完整性中起重要作用。我们显示BLM在凋亡过程中被caspase-3裂解,并且揭示主要裂解位点位于N末端之间的连接处 和BLM的中央解旋酶结构域。 caspase-3蛋白水解切割 产生一个120 kDa的片段,其中包含完整的解旋酶 域和三个较小的片段,其相对数量 取决于与caspase-3孵育的时间。 120 kDa片段 保留完整BLM蛋白的解旋酶活性。但是,它的 与拓扑异构酶IIIα的相互作用是 严重受损。由于BLM-拓扑异构酶相互作用是 被认为是许多复制和重组所必需的 BLM的功能,我们建议BLM的caspase-3裂解可以 改变BLM的本地化和/或功能,以及这些 改变在凋亡过程中可能很重要。

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