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大豆花叶病毒 P3 蛋白互作因子及过敏反应类似病变诱导蛋白功能的综合分析。

Comprehensive Analysis of Soybean Mosaic Virus P3 Protein Interactors and Hypersensitive Response-Like Lesion-Inducing Protein Function.

机构信息

National Center for Soybean Improvement, Nanjing Agricultural University, Nanjing 210095, China.

Institute of Vegetable Crops, Jiangsu Academy of Agricultural Sciences, Nanjing 210014, China.

出版信息

Int J Mol Sci. 2019 Jul 10;20(14):3388. doi: 10.3390/ijms20143388.

Abstract

Soybean mosaic virus (SMV) is one of the most prevalent and important pathogens of soybean, which produces 11 proteins, and the third protein, P3, was suggested to be involved in virus movement and replication, as well as host infection. During the virus infection, host proteins are essential in the virus cycle. However, there is no comprehensive report on the network of host proteins that interact with P3. Fifty-one interactors were identified by using the P3 protein as the bait against the SMV SC15 strain-challenged soybean cDNA library. These proteins were classified into five groups, including transport and protein transport-related proteins, defense and disease-related proteins, photosynthesis proteins, cellular metabolic proteins, and unknown proteins. Among these proteins, the protein defined as hypersensitive response-like lesion-inducing (HRLI) appeared multiple times and showed strong affinity with P3, which indicated its important role in SMV infection. Thus, it was chosen for further investigation. Phylogenetic classification showed that paralog proteins GmHRLI-1 and GmHRLI-2 clustered together and shared 90% homologous identity. Bimolecular fluorescence complementation (BiFC) assay was carried out to confirm the interaction, and fluorescence was detected at the cell periplasmic as well as at the nucleus. Subcellular localization showed that GmHRLI was localized to the cell periplasmic, while the co-localization of GmHRLI and P3 signals was also observed in the nucleus, suggesting that GmHRLI could interact with P3 and promoted the translation of P3 to the nucleus. Moreover, the gene expression of GmHRLI was abundant in the roots, leaves, and flowers, and could be induced by SMV infection, suggesting its involvement in SMV infection. Our results together lay the foundation to explore the mechanisms of P3 in the HR process and the HRLI protein function in SMV response.

摘要

大豆花叶病毒 (SMV) 是大豆上最普遍和最重要的病原体之一,它能产生 11 种蛋白,其中第三蛋白 P3 被认为参与病毒运动、复制和宿主感染。在病毒感染过程中,宿主蛋白是病毒周期中的关键。然而,目前还没有关于与 P3 互作的宿主蛋白网络的全面报道。本研究利用 P3 蛋白作为诱饵,从 SMV SC15 株侵染的大豆 cDNA 文库中鉴定到 51 个互作蛋白,将这些蛋白分为运输和蛋白运输相关蛋白、防御和疾病相关蛋白、光合作用蛋白、细胞代谢蛋白和未知蛋白 5 个功能组。其中,定义为过敏反应样损伤诱导蛋白(HRLI)的蛋白多次出现,与 P3 表现出很强的亲和力,表明其在 SMV 侵染过程中具有重要作用。因此,选择该蛋白进行进一步研究。系统发育分类表明,同源蛋白 GmHRLI-1 和 GmHRLI-2 聚为一类,具有 90%的同源性。双分子荧光互补(BiFC)实验证实了它们的互作,并且在细胞质和细胞核中都检测到了荧光。亚细胞定位显示 GmHRLI 定位于细胞质,同时还观察到 GmHRLI 和 P3 信号的共定位。这些结果表明,GmHRLI 可能与 P3 互作,并促进 P3 向细胞核的翻译。此外,GmHRLI 的基因表达在根、叶和花中都很丰富,并且能够被 SMV 诱导,这表明其参与了 SMV 的侵染。本研究结果为探索 P3 在 HR 过程中的作用机制以及 HRLI 蛋白在 SMV 响应中的功能奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be4d/6678280/30b1f651c906/ijms-20-03388-g001.jpg

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