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含kelch结构域蛋白3如何区分疱疹病毒蛋白UL49.5的C端降解结构域及其突变体——来自分子动力学的见解

How kelch domain-containing protein 3 distinguishes between the C-end degron of herpesviral protein UL49.5 and its mutants - Insights from molecular dynamics.

作者信息

Ślusarz Magdalena J

机构信息

Faculty of Chemistry, University of Gdańsk, Wita Stwosza 63, 80-308 Gdańsk, Poland.

出版信息

Bioorg Med Chem. 2024 Jul 15;109:117795. doi: 10.1016/j.bmc.2024.117795. Epub 2024 Jun 11.

DOI:10.1016/j.bmc.2024.117795
PMID:38878709
Abstract

The C-terminal residues of proteins can function as degrons recognized by ubiquitin ligases for proteasomal degradation. Kelch domain-containing protein 3 (KLHDC3) is a substrate receptor for E3 ubiquitin ligase (Cullin2-RING ligase) that targets the C-terminal degrons. UL49.5 is 96 amino-acid type 1 transmembrane protein from bovine herpesvirus 1. Herpesviruses have evolved highly effective strategies to evade the antiviral immune response. One of these strategies is inhibition of the antigen processing and presentation pathway by MHC I, thereby reducing the presentation of the antigenic peptides on the surface of the infected cell. Recently, it has been demonstrated that UL49.5 triggers TAP degradation via recruiting the E3 ubiquitin ligase to TAP. Moreover, the mutagenesis revealed that the mutations within the UL49.5 C-degron sequence (RGRG) affect binding of UL49.5 to KLHDC3. In this work the molecular dynamics of KLHDC3 in complexes with the C-terminal decapeptide of the herpesviral protein UL4.95 and its three mutants has been employed to provide a framework for understanding molecular recognition of UL49.5 by KLHDC3. The findings of this study give insights into the interactions of the various degrons with KLHDC3. During the molecular dynamics, an active RGKG mutant adopts a conformation similar to that of the wild type decapeptide, whereas the conformations of two inactive mutants, KGRG and RGRD are significantly different. Both R93K and G96D mutations impair the interactions of the C-terminal glycine with KLHDC3. The findings of this study expand the existing knowledge about the mechanism of protein recognition by Cullin2-RING ligases thus contributing to the design of antiviral and anticancer drugs that can selectively promote or inhibit degradation of the proteins of interest.

摘要

蛋白质的C末端残基可作为泛素连接酶识别的降解子,用于蛋白酶体降解。含Kelch结构域蛋白3(KLHDC3)是E3泛素连接酶(Cullin2-RING连接酶)的底物受体,该连接酶靶向C末端降解子。UL49.5是来自牛疱疹病毒1的96个氨基酸的1型跨膜蛋白。疱疹病毒已进化出高效策略来逃避抗病毒免疫反应。其中一种策略是通过MHC I抑制抗原加工和呈递途径,从而减少感染细胞表面抗原肽的呈递。最近,已证明UL49.5通过将E3泛素连接酶招募到TAP来触发TAP降解。此外,诱变显示UL49.5 C末端降解子序列(RGRG)内的突变影响UL49.5与KLHDC3的结合。在这项工作中,利用KLHDC3与疱疹病毒蛋白UL4.95的C末端十肽及其三个突变体形成的复合物的分子动力学,为理解KLHDC3对UL49.5的分子识别提供一个框架。本研究结果深入了解了各种降解子与KLHDC3的相互作用。在分子动力学过程中,活性RGKG突变体采用与野生型十肽相似的构象,而两个无活性突变体KGRG和RGRD的构象则明显不同。R93K和G96D突变均损害C末端甘氨酸与KLHDC3的相互作用。本研究结果扩展了关于Cullin2-RING连接酶识别蛋白质机制的现有知识,从而有助于设计可选择性促进或抑制目标蛋白质降解的抗病毒和抗癌药物。

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