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A20 羧基末端结构域的解析,为痘苗病毒 DNA 聚合酶与其延伸因子界面特征研究提供了关键缺失环节。

Solution Structure of the C-terminal Domain of A20, the Missing Brick for the Characterization of the Interface between Vaccinia Virus DNA Polymerase and its Processivity Factor.

机构信息

Institut de Biologie Structurale, Univ. Grenoble Alpes, CNRS, CEA, IBS, F-38000 Grenoble, France.

Institut de Biologie Structurale, Univ. Grenoble Alpes, CNRS, CEA, IBS, F-38000 Grenoble, France.

出版信息

J Mol Biol. 2021 Jun 25;433(13):167009. doi: 10.1016/j.jmb.2021.167009. Epub 2021 Apr 24.

Abstract

Poxviruses are enveloped viruses with a linear, double-stranded DNA genome. Viral DNA synthesis is achieved by a functional DNA polymerase holoenzyme composed of three essential proteins. For vaccinia virus (VACV) these are E9, the catalytic subunit, a family B DNA polymerase, and the heterodimeric processivity factor formed by D4 and A20. The A20 protein links D4 to the catalytic subunit. High-resolution structures have been obtained for the VACV D4 protein in complex with an N-terminal fragment of A20 as well as for E9. In addition, biochemical studies provided evidence that a poxvirus-specific insertion (insert 3) in E9 interacts with the C-terminal residues of A20. Here, we provide solution structures of two different VACV A20 C-terminal constructs containing residues 304-426, fused at their C-terminus to either a BAP (Biotin Acceptor Peptide)-tag or a short peptide containing the helix of E9 insert 3. Together with results from titration studies, these structures shed light on the molecular interface between the catalytic subunit and the processivity factor component A20. The interface comprises hydrophobic residues conserved within the Chordopoxvirinae subfamily. Finally, we constructed a HADDOCK model of the VACV A20-E9 complex, which is in excellent accordance with previous experimental data.

摘要

痘病毒是具有线性双链 DNA 基因组的包膜病毒。病毒 DNA 的合成是通过一种功能性的 DNA 聚合酶全酶来实现的,该酶由三个必需的蛋白组成。对于牛痘病毒 (VACV) 来说,这三个必需的蛋白是 E9(催化亚基)、B 族 DNA 聚合酶和由 D4 和 A20 形成的异二聚体延伸因子。A20 蛋白将 D4 连接到催化亚基上。已经获得了 VACV D4 蛋白与 A20 的 N 端片段复合物的高分辨率结构,以及 E9 的高分辨率结构。此外,生化研究也提供了证据表明,E9 中的一种痘病毒特异性插入(插入 3)与 A20 的 C 端残基相互作用。在这里,我们提供了两个不同的 VACV A20 C 端结构的溶液结构,这些结构包含 304-426 位残基,在 C 端融合了 BAP(生物素接受肽)标签或含有 E9 插入 3 螺旋的短肽。结合滴定研究的结果,这些结构阐明了催化亚基和延伸因子成分 A20 之间的分子界面。该界面包含 Chordopoxvirinae 亚科内保守的疏水性残基。最后,我们构建了 VACV A20-E9 复合物的 HADDOCK 模型,该模型与之前的实验数据非常吻合。

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