【2h】

IAPs: Guardians of RIPK1

机译:IAP:RIPK1的监护人

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摘要

Deregulation of innate immune signalling and cell death form the basis of most human disease pathogenesis. Inhibitor of APoptosis (IAP) protein-family members are frequently overexpressed in cancer and contribute to tumour cell survival, chemo-resistance, disease progression and poor prognosis. Although best known for their ability to regulate caspases, IAPs also influence ubiquitin-dependent pathways that modulate innate immune signalling by activation of NF-κB. Recent advances in our understanding of the molecular mechanisms through which IAPs influence cell death and innate immune responses have provided new insights into novel strategies for treatment of cancer. In this review we discuss our current understanding of IAP-mediated NF-κB signalling, as well as elaborate on unexpected insights into the involvement of IAPs in regulating the ‘Ripoptosome', a novel intrinsic cell death-inducing platform. We propose an evolutionarily conserved concept whereby IAPs function as guardians of killer platforms such as the apoptosome in Drosophila and the Ripoptosome in mammals.
机译:先天性免疫信号的失调和细胞死亡形成了大多数人类疾病发病机理的基础。 APoptosis(IAP)抑制剂家族的成员通常在癌症中过表达,并且有助于肿瘤细胞的存活,耐化学性,疾病进展和不良预后。尽管IAP以其调节胱天蛋白酶的能力而闻名,但它也影响泛素依赖性途径,该途径通过激活NF-κB来调节先天性免疫信号传导。我们对IAP通过其影响细胞死亡和先天性免疫反应的分子机制的理解的最新进展为治疗癌症的新策略提供了新见解。在这篇综述中,我们讨论了我们对IAP介导的NF-κB信号传导的当前理解,并详细阐述了IAP参与调节“核小体”(一种新颖的内在细胞死亡诱导平台)的意想不到的见解。我们提出一个进化上保守的概念,IAP充当杀手平台(如果蝇中的凋亡小体和哺乳动物中的核小体)的守护者。

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