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修饰正黏病毒 HC-Pro 的 N 端 FWKG-αH1 元件影响其多种功能,并产生有效的减毒突变体用于交叉保护。

Modification of the N-terminal FWKG-αH1 element of potyviral HC-Pro affects its multiple functions and generates effective attenuated mutants for cross-protection.

机构信息

Department of Plant Pathology, National Chung Hsing University, Taichung, Taiwan, R.O.C.

Advanced Plant Biotechnology Center, National Chung Hsing University, Taichung, Taiwan, R.O.C.

出版信息

Mol Plant Pathol. 2022 Jul;23(7):947-965. doi: 10.1111/mpp.13201. Epub 2022 Mar 14.

Abstract

Control of plant viruses by cross-protection is limited by the availability of effective protective strains. Incorporation of an NIa-protease processing site in the extreme N-terminal region of the helper component protease (HC-Pro) of turnip mosaic virus (TuMV) resulted in a mutant virus TuHN I that induced highly attenuated symptoms. Recombination analysis verified that two variations, F7I mutation and amino acid 7-upstream-deletion, in HC-Pro co-determined TuHN I attenuation. TuHN I provided complete protection to Nicotiana benthamiana and Brassica campestris subsp. chinensis plants against infection by the severe parental strain. Aphid transmission tests revealed that TuHN I was not aphid-transmissible. An RNA silencing suppression (RSS) assay by agroinfiltration suggested the RSS-defective nature of the mutant HC-Pro. In the context (amino acids 3-17) encompassing the two variations of HC-Pro, we uncovered an FWKG-α-helix 1 (αH1) element that influenced the functions of aphid transmission and RSS, whose motifs were located far downstream. We further demonstrated that HC-Pro F7 was a critical residue on αH1 for HC-Pro functions and that reinstating αH1 in the RSS-defective HC-Pro of TuHN I restored the protein's RSS function. Yeast two-hybrid and bimolecular fluorescence complementation assays indicated the FWKG-αH1 element as an integral part of the HC-Pro self-interaction domain. The possibility of regulation of the mechanistically independent functions of RSS and aphid transmission by the FWKG-αH1 element is discussed. Extension of TuMV HC-Pro FWKG-αH1 variations to another potyvirus, zucchini yellow mosaic virus, also generated nonaphid-transmissible cross-protective mutant viruses. Hence, the modification of the FWKG-αH1 element can generate effective attenuated viruses for the control of potyviruses by cross-protection.

摘要

植物病毒的交叉保护受到有效保护菌株可用性的限制。在芜菁花叶病毒(TuMV)辅助成分蛋白酶(HC-Pro)的极端 N 端区域中引入 NIa-蛋白酶加工位点,导致突变病毒 TuHN I 引起高度衰减的症状。重组分析验证了 HC-Pro 中的两个变异,即 F7I 突变和氨基酸 7 上游缺失,共同决定了 TuHN I 的衰减。TuHN I 为烟草原生质体和白菜亚种chinensis 植物提供了对严重亲本株系感染的完全保护。蚜虫传播试验表明 TuHN I 不可通过蚜虫传播。农杆菌浸润的 RNA 沉默抑制(RSS)测定表明突变 HC-Pro 具有 RSS 缺陷。在包含 HC-Pro 两个变异的上下文(氨基酸 3-17)中,我们发现了一个影响蚜虫传播和 RSS 的 FWKG-α-螺旋 1(αH1)元件,其基序位于下游很远的位置。我们进一步证明,HC-Pro F7 是 HC-Pro 功能的αH1 上的关键残基,并且在 TuHN I 的 RSS 缺陷型 HC-Pro 中恢复αH1 恢复了该蛋白的 RSS 功能。酵母双杂交和双分子荧光互补测定表明,FWKG-αH1 元件是 HC-Pro 自我相互作用域的一个组成部分。FWKG-αH1 元件调节 RSS 和蚜虫传播的机制独立功能的可能性进行了讨论。将 TuMV HC-Pro FWKG-αH1 变异扩展到另一种马铃薯 Y 病毒科病毒,西葫芦黄花叶病毒,也产生了非蚜虫传播的交叉保护突变病毒。因此,FWKG-αH1 元件的修饰可以生成有效的减毒病毒,通过交叉保护控制马铃薯 Y 病毒科病毒。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4439/9190983/33fd4774bb65/MPP-23-947-g006.jpg

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