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Identification of Key Residues Required for RNA Silencing Suppressor Activity of p23 Protein from a Mild Strain of Citrus Tristeza Virus

机译:鉴定从柑橘轻型青霉病毒轻毒株中p23蛋白的RNA沉默抑制子活性所需的关键残基

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摘要

The severe strain of citrus tristeza virus (CTV) causes quick decline of citrus trees. However, the CTV mild strain causes no symptoms and commonly presents in citrus trees. Viral suppressor of RNA silencing (VSR) plays an important role in the successful invasion of viruses into plants. For CTV, VSR has mostly been studied in severe strains. In this study, the N4 mild strain in China was sequenced and found to have high sequence identity with the T30 strain. Furthermore, we verified the functions of three VSRs in the N4 strain, and p23 was found to be the most effective in terms of local silencing suppressor activity among the three CTV VSRs and localized to both nucleus and plasmodesmata, which is similar to CTV T36 strain. Several conserved amino acids were identified in p23. Mutation of E95A/V96A and M99A/L100AA impaired p23 protein stability. Consequently, these two mutants lost most of its suppressor activity and their protein levels could not be rescued by co-expressing p19. Q93A and R143A/E144A abolished p23 suppressor activity only and their protein levels increased to wild type level when co-expressed with p19. This work may facilitate a better understanding of the pathogenic mechanism of CTV mild strains.
机译:严重的柑橘特里斯特萨病毒(CTV)株会导致柑橘树快速衰退。但是,CTV轻度菌株不会引起症状,并且通常出现在柑橘树中。 RNA沉默的病毒抑制剂(VSR)在病毒成功入侵植物中起着重要作用。对于CTV,VSR大多是在严重菌株中进行研究的。在这项研究中,对中国的N4轻度菌株进行了测序,发现与T30菌株具有高度的序列同一性。此外,我们验证了N4菌株中三个VSR的功能,并且在三个CTV VSR中,p23被认为是最有效的局部沉默抑制活性,并位于细胞核和胞浆中,类似于CTV T36菌株。 。在p23中鉴定出几种保守的氨基酸。 E95A / V96A和M99A / L100AA的突变会破坏p23蛋白的稳定性。因此,这两个突变体丧失了其大部分抑制活性,并且它们的蛋白水平无法通过共表达p19得以挽救。 Q93A和R143A / E144A仅废除了p23抑制子活性,当与p19共表达时,它们的蛋白质水平增加到野生型水平。这项工作可能有助于更好地了解CTV轻毒株的致病机理。

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