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痘病毒信使核糖核酸帽甲基转移酶。催化亚基中的突变绕过对刺激亚基的需求及亚基间变构的证据。

Poxvirus mRNA cap methyltransferase. Bypass of the requirement for the stimulatory subunit by mutations in the catalytic subunit and evidence for intersubunit allostery.

作者信息

Schwer Beate, Hausmann Stéphane, Schneider Susanne, Shuman Stewart

机构信息

Department of Microbiology and Immunology, Weill Medical College of Cornell University, New York, New York 10021, USA.

出版信息

J Biol Chem. 2006 Jul 14;281(28):18953-60. doi: 10.1074/jbc.M602867200. Epub 2006 May 16.

Abstract

The guanine-N7 methyltransferase domain of vaccinia virus mRNA capping enzyme is a heterodimer composed of a catalytic subunit vD1-(540-844) and a stimulatory subunit vD12. The poxvirus enzyme can function in vivo in Saccharomyces cerevisiae in lieu of the essential cellular cap methyltransferase Abd1. Coexpression of both poxvirus subunits is required to complement the growth of abd1delta cells. We performed a genetic screen for mutations in the catalytic subunit that bypassed the requirement for the stimulatory subunit in vivo. We thereby identified missense changes in vicinal residues Tyr-752 (to Ser, Cys, or His) and Asn-753 (to Ile), which are located in the cap guanine-binding pocket. Biochemical experiments illuminated a mechanism of intersubunit allostery, whereby the vD12 subunit enhances the affinity of the catalytic subunit for AdoMet and the cap guanine methyl acceptor by 6- and 14-fold, respectively, and increases kcat by a factor of 4. The bypass mutations elicited gains of function in both vD12-independent and vD12-dependent catalysis of cap methylation in vitro when compared with wild-type vD1-(540-844). These results highlight the power of yeast as a surrogate model for the genetic analysis of interacting poxvirus proteins and demonstrate that the activity of an RNA processing enzyme can be augmented through selection and protein engineering.

摘要

痘苗病毒mRNA加帽酶的鸟嘌呤-N7甲基转移酶结构域是一个异源二聚体,由催化亚基vD1-(540-844)和刺激亚基vD12组成。痘病毒酶可在酿酒酵母体内发挥作用,替代必需的细胞帽甲基转移酶Abd1。两个痘病毒亚基的共表达是补充abd1delta细胞生长所必需的。我们对催化亚基中的突变进行了遗传筛选,这些突变在体内绕过了对刺激亚基的需求。由此,我们在位于帽鸟嘌呤结合口袋中的相邻残基Tyr-752(变为Ser、Cys或His)和Asn-753(变为Ile)中鉴定出错义变化。生化实验阐明了亚基间变构的机制,即vD12亚基分别将催化亚基对AdoMet和帽鸟嘌呤甲基受体的亲和力提高了6倍和14倍,并使催化常数提高了4倍。与野生型vD1-(540-844)相比,这些旁路突变在体外帽甲基化的vD12非依赖性和vD12依赖性催化中均引发了功能增强。这些结果突出了酵母作为相互作用的痘病毒蛋白遗传分析替代模型的作用,并证明RNA加工酶的活性可通过选择和蛋白质工程得到增强。

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