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Structure-Function Analysis of the Mcl-1 Protein Identifies a Novel Senescence-regulating Domain

机译:Mcl-1蛋白的结构功能分析确定了一个新的衰老调节域。

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摘要

Unlike other antiapoptotic Bcl-2 family members, Mcl-1 also mediates resistance to cancer therapy by uniquely inhibiting chemotherapy-induced senescence (CIS). In general, Bcl-2 family members regulate apoptosis at the level of the mitochondria through a common prosurvival binding groove. Through mutagenesis, we determined that Mcl-1 can inhibit CIS even in the absence of its apoptotically important mitochondrion-localizing domains. This finding prompted us to generate a series of Mcl-1 deletion mutants from both the N and C termini of the protein, including one that contained a deletion of all of the Bcl-2 homology domains, none of which impacted anti-CIS capabilities. Through subsequent structure-function analyses of Mcl-1, we identified a previously uncharacterized loop domain responsible for the anti-CIS activity of Mcl-1. The importance of the loop domain was confirmed in multiple tumor types, two in vivo models of senescence, and by demonstrating that a peptide mimetic of the loop domain can effectively inhibit the anti-CIS function of Mcl-1. The results from our studies appear to be highly translatable because we discerned an inverse relationship between the expression of Mcl-1 and of various senescence markers in cancerous human tissues. In summary, our findings regarding the unique structural properties of Mcl-1 provide new approaches for targeted cancer therapy.
机译:与其他抗凋亡Bcl-2家族成员不同,Mcl-1还通过独特地抑制化疗诱导的衰老(CIS)来介导对癌症治疗的抵抗力。通常,Bcl-2家族成员通过共同的生存结合槽在线粒体水平调节细胞凋亡。通过诱变,我们确定Mcl-1可以抑制CIS,即使在缺少其重要的凋亡线粒体定位域的情况下也是如此。这一发现促使我们从蛋白质的N和C末端产生了一系列的Mcl-1缺失突变体,包括一个含有所有Bcl-2同源结构域缺失的突变体,这些均不影响抗CIS功能。通过随后的Mcl-1的结构功能分析,我们确定了一个先前未表征的负责Mcl-1的抗CIS活性的环结构域。在多种肿瘤类型,两种衰老的体内模型中以及通过证明环结构域的肽模拟物可以有效抑制Mcl-1的抗CIS功能,证实了环结构域的重要性。我们的研究结果似乎具有很高的可翻译性,因为我们发现了癌组织中Mcl-1的表达与各种衰老标记之间的反比关系。总之,我们关于Mcl-1独特结构特性的发现为靶向癌症治疗提供了新方法。

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