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多角体病毒 SPN3US 的质谱分析揭示了大型二十面体衣壳蛋白水解成熟的保守和差异主题。

Mass Spectral Analyses of Myovirus SPN3US Reveal Conserved and Divergent Themes in Proteolytic Maturation of Large Icosahedral Capsids.

机构信息

Thomas H. Gosnell School of Life Sciences, Rochester Institute of Technology, Rochester, NY 14620, USA.

Department of Biochemistry and Structural Biology, The University of Texas Health Science Center at San Antonio, San Antonio, TX 78229, USA.

出版信息

Viruses. 2023 Mar 10;15(3):723. doi: 10.3390/v15030723.

Abstract

myovirus SPN3US has a T = 27 capsid composed of >50 different gene products, including many that are packaged along with the 240 kb genome and ejected into the host cell. Recently, we showed that an essential phage-encoded prohead protease gp245 is responsible for cleavage of proteins during SPN3US head assembly. This proteolytic maturation step induces major changes in precursor head particles, enabling them to expand and undergo genome packaging. To comprehensively define the composition of the mature SPN3US head and elucidate how it is modified by proteolysis during assembly, we conducted tandem mass spectrometry analysis of purified virions and tailless heads. Fourteen protease cleavage sites were identified in nine proteins, including eight sites not previously identified in head proteins in vivo. Among these was the maturation cleavage site of gp245 which was identical to the autocleavage site we had previously identified in purified recombinant gp245. Our findings underscore the value of employing multiple mass spectrometry-based experimental strategies as a way to enhance the detection of head protein cleavage sites in tailed phages. In addition, our results have identified a conserved set of head proteins in related giant phages that are similarly cleaved by their respective prohead proteases, suggesting that these proteins have important roles in governing the formation and function of large icosahedral capsids.

摘要

我的病毒 SPN3US 具有 T=27 的衣壳,由>50 种不同的基因产物组成,其中许多与 240 kb 基因组一起包装,并被喷射到宿主细胞中。最近,我们表明,一种必需的噬菌体编码的前噬菌体蛋白酶 gp245 负责在 SPN3US 头部组装过程中切割蛋白质。这个蛋白水解成熟步骤诱导前体头部颗粒发生重大变化,使它们能够扩张并进行基因组包装。为了全面定义成熟的 SPN3US 头部的组成,并阐明在组装过程中蛋白酶水解如何对其进行修饰,我们对纯化的病毒粒子和无尾头部进行了串联质谱分析。在九个蛋白质中鉴定出了 14 个蛋白酶切割位点,包括以前在体内头部蛋白质中未鉴定出的八个位点。其中包括 gp245 的成熟切割位点,该位点与我们之前在纯化的重组 gp245 中鉴定出的自动切割位点相同。我们的发现强调了采用多种基于质谱的实验策略的价值,这是增强对尾部噬菌体头部蛋白切割位点检测的一种方式。此外,我们的结果还鉴定出了一组在相关巨型噬菌体中保守的头部蛋白,这些蛋白被各自的前噬菌体蛋白酶切割,这表明这些蛋白在控制大型二十面体衣壳的形成和功能方面具有重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b88b/10052503/f1800973ef80/viruses-15-00723-g001.jpg

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