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首页> 外文期刊>Virology >Intersubunit interactions allowing a carboxylate mutant coat protein to inhibit tobamovirus disassembly.
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Intersubunit interactions allowing a carboxylate mutant coat protein to inhibit tobamovirus disassembly.

机译:亚基间相互作用允许羧酸盐突变体外壳蛋白抑制烟草花叶病毒的拆卸。

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摘要

To investigate the ability of tobacco mosaic tobamovirus (TMV) coat protein (CP) mutant E50Q (which lacks a repulsive intersubunit carboxylate group and can effectively inhibit the disassembly of wild-type TMV) to block disassembly, a series of second-site amino acid substitutions were added to the E50Q CP. These second-site mutations were designed to disrupt specific intersubunit stabilizing interactions involving hydrophobic or polar residues, salt bridges, and CP-RNA contacts. Results showed substitutions disrupting intersubunit interactions that face the disassembling surface of the virion dramatically reduced the ability of CP E50Q to inhibit TMV disassembly. Substitutions that disrupted the CP inner loop, RNA binding capabilities, or intersubunit interactions that faced away from the disassembling surface did not dramatically interfere with CP E50Q's ability to inhibit disassembly. Taken together, these findings suggest that intersubunit interactions made by 5' terminal E50Q subunits, not associated with RNA, provide the stabilizing forces that prevent virion disassembly. The role of these stabilizing interactions in TMV disassembly and their potential use for creating disassembly inhibiting CPs are discussed.
机译:为了研究烟草花叶烟草花叶病毒(TMV)外壳蛋白(CP)突变体E50Q(缺乏排斥性亚基间的羧酸盐基团并可以有效抑制野生型TMV的分解)阻止分解的能力,一系列第二位氨基酸替代品已添加到E50Q CP。这些第二位点突变旨在破坏涉及疏水或极性残基,盐桥和CP-RNA接触的特定亚基稳定相互作用。结果表明,替代物破坏了面对病毒粒子分解表面的亚基间相互作用,从而大大降低了CP E50Q抑制TMV分解的能力。破坏了CP内环,RNA结合能力或背离拆卸表面的亚基间相互作用的取代并没有显着干扰CP E50Q抑制拆卸的能力。综上所述,这些发现表明5'末端E50Q亚基与RNA无关的亚基间相互作用提供了防止病毒体分解的稳定力。讨论了这些稳定相互作用在TMV拆卸中的作用及其在创建抑制拆卸CP的潜在用途。

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