病毒基因 DNA 包装机械

Q1 Biochemistry, Genetics and Molecular Biology
Dorothy E D P Hawkins, Owen C Godwin, Alfred A Antson
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引用次数: 0

摘要

噬菌体尾部的双链 DNA 利用蛋白终结酶马达将其基因组包装到预先形成的蛋白外壳中--这是与疱疹病毒等真核 dsDNA 病毒共享的系统。DNA 包装马达蛋白是抗病毒治疗的绝佳靶点,与巨细胞病毒终结酶结合的来替莫韦(Letermovir)已被授权作为一种有效的预防药物。在细菌病毒领域,这些 DNA 包装马达由三种蛋白质组成:入口蛋白、小终结酶和大终结酶。入口蛋白负责将 DNA 运送到预先形成的蛋白质外壳中,并在整个病毒组装过程中充当蛋白质相互作用的枢纽。小终结酶识别病毒 DNA 并招募大终结酶,大终结酶则以依赖 ATP 的方式泵送 DNA。大终结酶还会在包装终止时切割 DNA。针对不同的噬菌体,每种成分都有多种高分辨率结构,但直到最近,这一领域才转向蛋白质复合体的低温电子显微镜重建。结合对包装动力学的高信息量单粒子研究,这些结构开始启发人们建立包装过程的模型,并确定其在其他 DNA 机器中的位置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Viral Genomic DNA Packaging Machinery.

Tailed double-stranded DNA bacteriophage employs a protein terminase motor to package their genome into a preformed protein shell-a system shared with eukaryotic dsDNA viruses such as herpesviruses. DNA packaging motor proteins represent excellent targets for antiviral therapy, with Letermovir, which binds Cytomegalovirus terminase, already licensed as an effective prophylaxis. In the realm of bacterial viruses, these DNA packaging motors comprise three protein constituents: the portal protein, small terminase and large terminase. The portal protein guards the passage of DNA into the preformed protein shell and acts as a protein interaction hub throughout viral assembly. Small terminase recognises the viral DNA and recruits large terminase, which in turn pumps DNA in an ATP-dependent manner. Large terminase also cleaves DNA at the termination of packaging. Multiple high-resolution structures of each component have been resolved for different phages, but it is only more recently that the field has moved towards cryo-EM reconstructions of protein complexes. In conjunction with highly informative single-particle studies of packaging kinetics, these structures have begun to inspire models for the packaging process and its place among other DNA machines.

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来源期刊
Sub-cellular biochemistry
Sub-cellular biochemistry Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
5.90
自引率
0.00%
发文量
33
期刊介绍: The book series SUBCELLULAR BIOCHEMISTRY is a renowned and well recognized forum for disseminating advances of emerging topics in Cell Biology and related subjects. All volumes are edited by established scientists and the individual chapters are written by experts on the relevant topic. The individual chapters of each volume are fully citable and indexed in Medline/Pubmed to ensure maximum visibility of the work.
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