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关于热疗诱导BRCA2蛋白降解的机制

On the Mechanism of Hyperthermia-Induced BRCA2 Protein Degradation.

作者信息

van den Tempel Nathalie, Zelensky Alex N, Odijk Hanny, Laffeber Charlie, Schmidt Christine K, Brandsma Inger, Demmers Jeroen, Krawczyk Przemek M, Kanaar Roland

机构信息

Department of Molecular Genetics, Oncode Institute, Erasmus University Medical Center, 3000 CA Rotterdam, The Netherlands.

Department of Biochemistry, The Gurdon Institute, University of Cambridge, Cambridge CB2 1QN, UK.

出版信息

Cancers (Basel). 2019 Jan 15;11(1):97. doi: 10.3390/cancers11010097.

Abstract

The DNA damage response (DDR) is a designation for a number of pathways that protects our DNA from various damaging agents. In normal cells, the DDR is extremely important for maintaining genome integrity, but in cancer cells these mechanisms counteract therapy-induced DNA damage. Inhibition of the DDR could therefore be used to increase the efficacy of anti-cancer treatments. Hyperthermia is an example of such a treatment-it inhibits a sub-pathway of the DDR, called homologous recombination (HR). It does so by inducing proteasomal degradation of BRCA2 -one of the key HR factors. Understanding the precise mechanism that mediates this degradation is important for our understanding of how hyperthermia affects therapy and how homologous recombination and BRCA2 itself function. In addition, mechanistic insight into the process of hyperthermia-induced BRCA2 degradation can yield new therapeutic strategies to enhance the effects of local hyperthermia or to inhibit HR. Here, we investigate the mechanisms driving hyperthermia-induced BRCA2 degradation. We find that BRCA2 degradation is evolutionarily conserved, that BRCA2 stability is dependent on HSP90, that ubiquitin might not be involved in directly targeting BRCA2 for protein degradation via the proteasome, and that BRCA2 degradation might be modulated by oxidative stress and radical scavengers.

摘要

DNA损伤反应(DDR)是指多种保护我们的DNA免受各种损伤因子损害的途径。在正常细胞中,DDR对于维持基因组完整性极为重要,但在癌细胞中,这些机制会对抗治疗诱导的DNA损伤。因此,抑制DDR可用于提高抗癌治疗的疗效。热疗就是这样一种治疗方法——它抑制DDR的一个子途径,即同源重组(HR)。它通过诱导关键HR因子之一的BRCA2发生蛋白酶体降解来实现这一点。了解介导这种降解的精确机制,对于我们理解热疗如何影响治疗以及同源重组和BRCA2自身如何发挥作用至关重要。此外,对热疗诱导的BRCA2降解过程的机制性洞察可以产生新的治疗策略,以增强局部热疗的效果或抑制HR。在这里,我们研究驱动热疗诱导的BRCA2降解的机制。我们发现BRCA2降解在进化上是保守的,BRCA2的稳定性依赖于HSP90,泛素可能不参与通过蛋白酶体直接靶向BRCA2进行蛋白质降解,并且BRCA2降解可能受氧化应激和自由基清除剂的调节。

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