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配体围绕蛋白质云:一种具有内在无序蛋白质的配体结合情景。

Ligand clouds around protein clouds: a scenario of ligand binding with intrinsically disordered proteins.

机构信息

BNLMS, State Key Laboratory for Structural Chemistry of Unstable and Stable Species, College of Chemistry and Molecular Engineering, Peking University, Beijing, China ; Center for Quantitative Biology, Peking University, Beijing, China.

出版信息

PLoS Comput Biol. 2013;9(10):e1003249. doi: 10.1371/journal.pcbi.1003249. Epub 2013 Oct 3.

Abstract

Intrinsically disordered proteins (IDPs) were found to be widely associated with human diseases and may serve as potential drug design targets. However, drug design targeting IDPs is still in the very early stages. Progress in drug design is usually achieved using experimental screening; however, the structural disorder of IDPs makes it difficult to characterize their interaction with ligands using experiments alone. To better understand the structure of IDPs and their interactions with small molecule ligands, we performed extensive simulations on the c-Myc₃₇₀₋₄₀₉ peptide and its binding to a reported small molecule inhibitor, ligand 10074-A4. We found that the conformational space of the apo c-Myc₃₇₀₋₄₀₉ peptide was rather dispersed and that the conformations of the peptide were stabilized mainly by charge interactions and hydrogen bonds. Under the binding of the ligand, c-Myc₃₇₀₋₄₀₉ remained disordered. The ligand was found to bind to c-Myc₃₇₀₋₄₀₉ at different sites along the chain and behaved like a 'ligand cloud'. In contrast to ligand binding to more rigid target proteins that usually results in a dominant bound structure, ligand binding to IDPs may better be described as ligand clouds around protein clouds. Nevertheless, the binding of the ligand and a non-ligand to the c-Myc₃₇₀₋₄₀₉ target could be clearly distinguished. The present study provides insights that will help improve rational drug design that targets IDPs.

摘要

无规卷曲蛋白 (IDPs) 广泛存在于人类疾病中,可能成为潜在的药物设计靶点。然而,针对 IDPs 的药物设计仍处于早期阶段。药物设计的进展通常通过实验筛选来实现;然而,IDPs 的结构无序使得仅通过实验来表征它们与配体的相互作用变得困难。为了更好地理解 IDPs 的结构及其与小分子配体的相互作用,我们对 c-Myc₃₇₀₋₄₀₉ 肽及其与报道的小分子抑制剂配体 10074-A4 的结合进行了广泛的模拟。我们发现,apo c-Myc₃₇₀₋₄₀₉ 肽的构象空间相当分散,肽的构象主要通过电荷相互作用和氢键稳定。在配体的结合下,c-Myc₃₇₀₋₄₀₉ 仍保持无序。发现配体在链上的不同位置与 c-Myc₃₇₀₋₄₀₉ 结合,并表现为“配体云”。与配体与更刚性的靶蛋白结合通常导致主导结合结构的情况相反,配体与 IDPs 的结合可能更好地描述为围绕蛋白质云的配体云。然而,可以清楚地区分配体和非配体与 c-Myc₃₇₀₋₄₀₉ 靶标的结合。本研究提供的见解将有助于改进针对 IDPs 的合理药物设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/caad/3789766/7fa85890702a/pcbi.1003249.g001.jpg

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