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比较 C1 结构域的配体结合位点:C1 结构域-佛波醇 13-醋酸酯-膜系统的分子动力学模拟研究。

Comparison of the ligand binding site of C1 domains: a molecular dynamics simulation study of the C1 domain-phorbol 13-acetate-membrane system.

机构信息

Department of Pharmacological & Pharmaceutical Sciences, College of Pharmacy, University of Houston, Houston, TX, USA.

出版信息

J Biomol Struct Dyn. 2023;41(21):11796-11809. doi: 10.1080/07391102.2022.2163699. Epub 2023 Jan 5.

Abstract

C1 domains are lipid-binding structural units of about 50 residues. Typical C1 domains associate with the plasma membrane and bind to diacylglycerol/phorbol ester during the activation of the proteins containing these domains. Although the overall structure of the C1 domains are similar, there are differences in their primary sequence and in the orientation of the ligand/lipid binding residues. To gain structural insights into the ligand/lipid binding, we performed molecular docking of phorbol 13-acetate into the C1 domain and 1.0 μs molecular dynamics simulation on the C1 domain-ligand-lipid ternary system for PKCθ C1A, PKCδ C1B, PKCβII C1B, PKCθ C1B, Munc13-1 C1, and βII-Chimaerin C1. We divided these C1 domains into three types based on the orientations of Gln-27 and Trp/Tyr-22. In type 1, Trp/Tyr-22 is outside and Gln-27 is inside the ligand binding pocket. In type 2, both Trp/Tyr-22 and Gln-27 are outside the ligand binding pocket, and in type 3, Trp/Tyr-22 is inside and Gln-27 is outside the pocket. The type 1 C1 domains showed higher ligand binding and higher membrane binding with a shorter distance between the C1 domain and the membrane than the type 2 and type 3. For ligand binding, Pro-11 plays a major role in the type 1 and 2, and Gly-23 in the type 1 and type 3 C1 domains. This study elucidates the role of Gln-27, Trp-22, Pro-11 and Gly-23 in ligand/lipid binding in typical C1 domains and bears significance in developing selective modulators of C1 domain-containing proteins.Communicated by Ramaswamy H. Sarma.

摘要

C1 结构域是由约 50 个残基组成的脂质结合结构单元。典型的 C1 结构域与质膜结合,并在含有这些结构域的蛋白质被激活时与二酰基甘油/佛波酯结合。尽管 C1 结构域的整体结构相似,但它们的一级序列和配体/脂质结合残基的取向存在差异。为了深入了解配体/脂质的结合结构,我们对蛋白激酶 Cθ C1A、蛋白激酶 Cδ C1B、蛋白激酶 CβII C1B、蛋白激酶 Cθ C1B、Munc13-1 C1 和 βII-Chimaerin C1 的 C1 结构域进行了佛波 13-乙酸酯的分子对接和 1.0 μs 的分子动力学模拟。我们根据 Gln-27 和 Trp/Tyr-22 的取向将这些 C1 结构域分为三种类型。在第 1 种类型中,Trp/Tyr-22 在配体结合口袋外,Gln-27 在口袋内。在第 2 种类型中,Trp/Tyr-22 和 Gln-27 都在配体结合口袋外,而在第 3 种类型中,Trp/Tyr-22 在口袋内,Gln-27 在口袋外。第 1 种类型的 C1 结构域显示出更高的配体结合能力和更高的膜结合能力,并且 C1 结构域与膜之间的距离也更短。对于配体结合,Pro-11 在第 1 型和第 2 型中起主要作用,而 Gly-23 在第 1 型和第 3 型 C1 结构域中起主要作用。这项研究阐明了 Gln-27、Trp-22、Pro-11 和 Gly-23 在典型 C1 结构域中配体/脂质结合的作用,并在开发 C1 结构域包含蛋白的选择性调节剂方面具有重要意义。由 Ramaswamy H. Sarma 交流。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f1e7/10319914/39d57f6284fc/nihms-1862264-f0001.jpg

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