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一种可能依赖IMP的ARL13B-IMPDH相互作用诱导基于IMPDH的细胞蛇形成

Induction of IMPDH-Based Cytoophidia by a Probable IMP-Dependent ARL13B-IMPDH Interaction.

作者信息

Alijani Najva, Yazdanparast Razieh

机构信息

Institute of Biochemistry and Biophysics, University of Tehran, Tehran, 13145-1384, Iran.

出版信息

Biochemistry (Mosc). 2024 Dec;89(12):2287-2291. doi: 10.1134/S0006297924120162.

Abstract

Inosine Monophosphate Dehydrogenase (IMPDH) catalyzes rate-limiting step of the reaction converting inosine monophosphate (IMP) to guanine nucleotides. IMPDH is up-regulated in the healthy proliferating cells and also in tumor cells to meet their elevated demand for guanine nucleotides. An exclusive regulatory mechanism for this enzyme is filamentation, through which IMPDH can resist allosteric inhibition by the end product, GTP. It has been proven that intracellular IMP, which rises during the proliferative state, potentially promotes IMPDH filamentation. On the other hand, interaction of IMPDH with ADP-ribosylation factor-like protein 13B (ARL13B) directs guanine biosynthesis toward the pathway. However, ARL13B is not localized in the IMPDH-based cytoophidia, super structures composed of bundled IMPDH filaments and other proteins. Here, we hypothesized that ARL13B could increase availability of the -produced IMP for IMPDH by interacting with the IMP-free IMPDH and microtubules adjacent to the purinosome. Following IMP-binding, IMPDH would be released from ARL13B and preferentially associated with its cytoophidia. Considering clinical side effects of catalytic inhibitors of IMPDH and their ability to induce IMPDH cytoophidia, we suggest that combination of proper doses of IMPDH catalytic inhibitors and inhibitors of the IMP biosynthesis could be more effective in controlling cell proliferation.

摘要

肌苷单磷酸脱氢酶(IMPDH)催化将肌苷单磷酸(IMP)转化为鸟嘌呤核苷酸反应的限速步骤。在健康的增殖细胞以及肿瘤细胞中,IMPDH都会上调,以满足它们对鸟嘌呤核苷酸不断增加的需求。该酶的一种独特调节机制是形成丝状结构,通过这种方式IMPDH可以抵抗终产物GTP的变构抑制。已经证明,在增殖状态下升高的细胞内IMP可能促进IMPDH形成丝状结构。另一方面,IMPDH与ADP-核糖基化因子样蛋白13B(ARL13B)的相互作用将鸟嘌呤生物合成导向该途径。然而,ARL13B并不定位于基于IMPDH的细胞蛇(由成束的IMPDH细丝和其他蛋白质组成的超结构)中。在这里,我们假设ARL13B可以通过与游离IMP的IMPDH以及与嘌呤体相邻的微管相互作用,增加由其产生的IMP对IMPDH的可用性。IMP结合后,IMPDH将从ARL13B中释放出来,并优先与其细胞蛇相关联。考虑到IMPDH催化抑制剂的临床副作用及其诱导IMPDH细胞蛇形成的能力,我们建议适当剂量的IMPDH催化抑制剂与IMP生物合成抑制剂联合使用可能在控制细胞增殖方面更有效。

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