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PARP1/2 和 tankyrases 的调控:新兴的相似性。

Regulation of PARP1/2 and the tankyrases: emerging parallels.

机构信息

Division of Structural Biology, The Institute of Cancer Research (ICR), London, U.K.

Division of Cancer Biology, The Institute of Cancer Research (ICR), London, U.K.

出版信息

Biochem J. 2024 Sep 4;481(17):1097-1123. doi: 10.1042/BCJ20230230.

Abstract

ADP-ribosylation is a prominent and versatile post-translational modification, which regulates a diverse set of cellular processes. Poly-ADP-ribose (PAR) is synthesised by the poly-ADP-ribosyltransferases PARP1, PARP2, tankyrase (TNKS), and tankyrase 2 (TNKS2), all of which are linked to human disease. PARP1/2 inhibitors have entered the clinic to target cancers with deficiencies in DNA damage repair. Conversely, tankyrase inhibitors have continued to face obstacles on their way to clinical use, largely owing to our limited knowledge of their molecular impacts on tankyrase and effector pathways, and linked concerns around their tolerability. Whilst detailed structure-function studies have revealed a comprehensive picture of PARP1/2 regulation, our mechanistic understanding of the tankyrases lags behind, and thereby our appreciation of the molecular consequences of tankyrase inhibition. Despite large differences in their architecture and cellular contexts, recent structure-function work has revealed striking parallels in the regulatory principles that govern these enzymes. This includes low basal activity, activation by intra- or inter-molecular assembly, negative feedback regulation by auto-PARylation, and allosteric communication. Here we compare these poly-ADP-ribosyltransferases and point towards emerging parallels and open questions, whose pursuit will inform future drug development efforts.

摘要

ADP-核糖基化是一种突出的、多功能的翻译后修饰,它调节着多种细胞过程。聚 ADP-核糖(PAR)由聚 ADP-核糖转移酶 PARP1、PARP2、端锚聚合酶(TNKS)和端锚聚合酶 2(TNKS2)合成,它们都与人类疾病有关。PARP1/2 抑制剂已进入临床,以靶向 DNA 损伤修复缺陷的癌症。相反,端锚聚合酶抑制剂在走向临床应用的道路上继续面临障碍,这主要是由于我们对它们在端锚聚合酶和效应途径上的分子影响及其对耐受性的相关担忧的了解有限。虽然详细的结构-功能研究揭示了 PARP1/2 调节的全面图景,但我们对端锚聚合酶的机制理解落后了,因此我们对端锚聚合酶抑制的分子后果的认识也落后了。尽管它们在结构和细胞环境上存在很大差异,但最近的结构-功能研究揭示了这些酶的调控原则惊人的相似之处。这包括基础活性低、通过分子内或分子间组装激活、自身 PAR 化的负反馈调节以及变构通讯。在这里,我们比较了这些聚 ADP-核糖转移酶,并指出了新出现的相似之处和悬而未决的问题,这些问题的研究将为未来的药物开发工作提供信息。

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