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Functional comparison of RNA silencing suppressor between the p5 protein of rice grassy stunt virus and the p3 protein of rice stripe virus

机译:水稻草特技病毒p5蛋白与水稻条纹病毒p3蛋白RNA沉默抑制剂的功能比较

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Rice grassy stunt virus (RGSV) is a member of the genus Tenuivirus, which includes rice stripe virus (RSV), as the type species. A viral suppressor of RNA silencing (VSR) of RGSV has not been identified, whereas the p3 protein of RSV (RSVp3) encoded by the viral-sense (v) strand of RNA3 has been reported to act as a VSR. In this study, we examined the VSR function of the p5 protein of RGSV (RGSVp5), encoded by vRNA5. Expecting it to correspond to the vRNA3 of RSV, we compared the VSR function of RGSVp5 with that of RSVp3. In an Agrobacterium-mediated transient expression assay using a transgenic line of Nicotiana benthamiana that expressed green fluorescent protein and the wild type, RGSVp5 suppressed sense transgene-mediated post-transcriptional gene silencing (S-PTGS), inverted-repeat (IR) transgene-induced PTGS (IR-PTGS), and the systemic spread of GFP silencing, as in the case with RSVp3. By contrast, a gel mobility shift assay revealed that RGSVp5 did not have any distinct binding activity with 21-, 22-, or 24-nucleotide small interfering RNA (siRNA) duplexes, whereas RSVp3 binds to all three sizes of siRNA duplexes. Furthermore, the transiently expressed p5 protein fused with GFP was dispersed mainly in the cytoplasm, whereas the GFP-fused p3 protein of RSV was localized both in the nucleus and in the cytoplasm. Our results suggest that RGSVp5 functions as a VSR but that the suppression mechanism of RNA silencing and the subcellular localization of RGSVp5 differ from those of the analogous VSR, RSVp3, even in the same genus. (C) 2015 Elsevier B.V. All rights reserved.
机译:水稻草特技病毒(RGSV)是Tenuivirus属的成员,其中包括水稻条纹病毒(RSV)作为类型种。尚未确定RGSV的RNA沉默(VSR)的病毒抑制子,而据报道由RNA3的病毒有义(v)链编码的RSV的p3蛋白(RSVp3)充当了VSR。在这项研究中,我们检查了由vRNA5编码的RGSV p5蛋白(RGSVp5)的VSR功能。期望它对应于RSV的vRNA3,我们比较了RGSVp5和RSVp3的VSR功能。在使用表达绿色荧光蛋白和野生型烟草的本氏烟草转基因株的农杆菌介导的瞬时表达测定中,RGSVp5抑制了有义转基因介导的转录后基因沉默(S-PTGS),反向重复(IR)转基因-就像RSVp3一样,它会引起PTGS(IR-PTGS)和GFP沉默的系统扩散。相比之下,凝胶迁移率漂移分析表明RGSVp5与21、22或24个核苷酸的小干扰RNA(siRNA)双链体没有任何明显的结合活性,而RSVp3与所有三种大小的siRNA双链体结合。此外,瞬时表达的与GFP融合的p5蛋白主要分散在细胞质中,而RSV的GFP融合p3蛋白既位于细胞核中,又位于细胞质中。我们的研究结果表明,RGSVp5充当VSR,但即使在同一属中,RNA沉默的抑制机制和RGSVp5的亚细胞定位也不同于类似的VSR,RSVp3。 (C)2015 Elsevier B.V.保留所有权利。

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