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ROCK1/MLC2 抑制可诱导 BPXV 感染细胞中病毒 mRNA 的衰减。

ROCK1/MLC2 inhibition induces decay of viral mRNA in BPXV infected cells.

机构信息

National Centre for Veterinary Type Cultures, ICAR-National Research Centre on Equines, Hisar, India.

Department of Veterinary Microbiology and Biotechnology, Rajasthan University of Veterinary and Animal Sciences, Bikaner, India.

出版信息

Sci Rep. 2022 Oct 24;12(1):17811. doi: 10.1038/s41598-022-21610-9.

Abstract

Rho-associated coiled-coil containing protein kinase 1 (ROCK1) intracellular cell signaling pathway regulates cell morphology, polarity, and cytoskeletal remodeling. We observed the activation of ROCK1/myosin light chain (MLC2) signaling pathway in buffalopox virus (BPXV) infected Vero cells. ROCK1 depletion by siRNA and specific small molecule chemical inhibitors (Thiazovivin and Y27632) resulted in a reduced BPXV replication, as evidenced by reductions in viral mRNA/protein synthesis, genome copy numbers and progeny virus particles. Further, we demonstrated that ROCK1 inhibition promotes deadenylation of viral mRNA (mRNA decay), mediated via inhibiting interaction with PABP [(poly(A)-binding protein] and enhancing the expression of CCR4-NOT (a multi-protein complex that plays an important role in deadenylation of mRNA). In addition, ROCK1/MLC2 mediated cell contraction, and perinuclear accumulation of p-MLC2 was shown to positively correlate with viral mRNA/protein synthesis. Finally, it was demonstrated that the long-term sequential passage (P = 50) of BPXV in the presence of Thiazovivin does not select for any drug-resistant virus variants. In conclusion, ROCK1/MLC2 cell signaling pathway facilitates BPXV replication by preventing viral mRNA decay and that the inhibitors targeting this pathway may have novel therapeutic effects against buffalopox.

摘要

Rho 相关卷曲螺旋蛋白激酶 1(ROCK1)细胞内信号通路调节细胞形态、极性和细胞骨架重塑。我们观察到 buffalo 痘病毒(BPXV)感染的 Vero 细胞中 ROCK1/肌球蛋白轻链(MLC2)信号通路的激活。通过 siRNA 和特异性小分子化学抑制剂(Thiazovivin 和 Y27632)耗竭 ROCK1 导致 BPXV 复制减少,这表现在病毒 mRNA/蛋白合成、基因组拷贝数和子代病毒颗粒减少。此外,我们证明 ROCK1 抑制通过抑制与 PABP[(多聚(A)结合蛋白)的相互作用和增强 CCR4-NOT(一种在 mRNA 去腺苷酸化中起重要作用的多蛋白复合物)的表达,促进病毒 mRNA 的去腺苷酸化(mRNA 衰变)。此外,ROCK1/MLC2 介导的细胞收缩和核周 p-MLC2 的积累与病毒 mRNA/蛋白合成呈正相关。最后,证明在 Thiazovivin 存在下对 BPXV 进行长期连续传代(P=50)不会选择出任何耐药病毒变体。总之,ROCK1/MLC2 细胞信号通路通过防止病毒 mRNA 衰变促进 BPXV 复制,针对该通路的抑制剂可能对 buffalo 痘具有新的治疗作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62a4/9592580/f699dfefcc20/41598_2022_21610_Fig1_HTML.jpg

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