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肌苷酸脱氢酶的合理稳定抑制状态提出了一种涉及跨结构域和组装抑制的新型靶向方法。

Rationally-Stabilized Inhibited State of IMPDH Proposes a Novel Targeting Approach Involving Its Cross-Domain and Assembly Suppression.

作者信息

Sattari Samira, Yazdanparast Razieh, Barzegari Ebrahim

机构信息

Institute of Biochemistry and Biophysics, University of Tehran, Tehran, 1417614335, Iran.

Medical Biology Research Center, Health Technology Institute, Kermanshah University of Medical Sciences, Kermanshah, Iran.

出版信息

Mol Biotechnol. 2025 Jul 11. doi: 10.1007/s12033-025-01474-w.

Abstract

Inosine monophosphate dehydrogenase (IMPDH) catalyzes the rate-limiting step of GTP biosynthesis. The multilevel regulation of the enzyme complicates its inhibition to treat diseases such as retinitis pigmentosa (RP) where modulation of the isozyme IMPDH1 is disrupted by mutations in a GTP-binding site on its regulatory CBS domain. Here, we hypothesize that upsetting the ATP-binding site 1 on the CBS domain, which contributes to all levels of the enzyme regulation, can endow it with the conformational features characteristic of the inhibited form of IMPDH1. This concept was validated by introducing a rationally selected mutation, I157V, which was appraised in silico followed by experimental structural characterizations using circular dichroism, intrinsic and extrinsic fluorescence, and thermal denaturation of the purified mutant, comparatively with a wild type enzyme in its active extended conformation. Molecular dynamics yielded a mutant conformation matching the experimental models of inactive IMPDH in terms of various global measures, local features and energy landscapes. Consistently, CD profiles, fluorescence spectra and thermal data confirmed a rigid, compressed and stable conformation with appropriate secondary structural compositions, surface properties and overall fold, respectively. The mutation could thus mimic the allosteric inhibition of the catalytic domain by the GTP-bound CBS domain. Disrupted ATP Site 1 also suppresses the enzyme assembly to octamers and filaments. Therefore, designing molecules to target Site 1 is suggested as a potent strategy to cope with the enzyme regulatory defects in RP using the proposed dual suppression approach.

摘要

肌苷单磷酸脱氢酶(IMPDH)催化GTP生物合成的限速步骤。该酶的多级调控使其抑制作用变得复杂,难以用于治疗诸如视网膜色素变性(RP)等疾病,在RP中,同工酶IMPDH1的调节因调控性CBS结构域上GTP结合位点的突变而受到破坏。在此,我们假设破坏CBS结构域上的ATP结合位点1(该位点参与酶的各级调控),可赋予其IMPDH1抑制形式的构象特征。通过引入合理选择的突变I157V验证了这一概念,先在计算机上进行评估,然后使用圆二色性、内在和外在荧光以及纯化突变体的热变性对其进行实验结构表征,并与处于活性伸展构象的野生型酶进行比较。分子动力学在各种全局测量、局部特征和能量景观方面产生了与无活性IMPDH的实验模型相匹配的突变体构象。一致地,圆二色性图谱、荧光光谱和热数据分别证实了具有适当二级结构组成、表面性质和整体折叠的刚性、压缩和稳定构象。因此,该突变可模拟GTP结合的CBS结构域对催化结构域的变构抑制。破坏的ATP位点1还会抑制酶组装成八聚体和细丝。因此,建议设计靶向位点1的分子,作为使用所提出的双重抑制方法应对RP中酶调节缺陷的有效策略。

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