Department of Plant Pathology, University of Kentucky, Lexington, Kentucky 40546, USA.
J Virol. 2010 Mar;84(5):2270-81. doi: 10.1128/JVI.02003-09. Epub 2009 Dec 16.
The replication of plus-strand RNA viruses depends on subcellular membranes. Recent genome-wide screens have revealed that the sterol biosynthesis genes ERG25 and ERG4 affected the replication of Tomato bushy stunt virus (TBSV) in a yeast model host. To further our understanding of the role of sterols in TBSV replication, we demonstrate that the downregulation of ERG25 or the inhibition of the activity of Erg25p with an inhibitor (6-amino-2-n-pentylthiobenzothiazole; APB) leads to a 3- to 5-fold reduction in TBSV replication in yeast. In addition, the sterol biosynthesis inhibitor lovastatin reduced TBSV replication by 4-fold, confirming the importance of sterols in viral replication. We also show reduced stability for the p92(pol) viral replication protein as well as a decrease in the in vitro activity of the tombusvirus replicase when isolated from APB-treated yeast. Moreover, APB treatment inhibits TBSV RNA accumulation in plant protoplasts and in Nicotiana benthamiana leaves. The inhibitory effect of APB on TBSV replication can be complemented by exogenous stigmasterol, the main plant sterol, suggesting that sterols are required for TBSV replication. The silencing of SMO1 and SMO2 genes, which are orthologs of ERG25, in N. benthamiana reduced TBSV RNA accumulation but had a lesser inhibitory effect on the unrelated Tobacco mosaic virus, suggesting that various viruses show different levels of dependence on sterol biosynthesis for their replication.
正链 RNA 病毒的复制依赖于亚细胞膜。最近的全基因组筛选揭示了固醇生物合成基因 ERG25 和 ERG4 影响番茄丛矮病毒(TBSV)在酵母模型宿主中的复制。为了进一步了解固醇在 TBSV 复制中的作用,我们证明 ERG25 的下调或用抑制剂(6-氨基-2-n-戊基噻唑并[4,5-d]嘧啶;APB)抑制 Erg25p 的活性会导致酵母中 TBSV 复制减少 3 到 5 倍。此外,固醇生物合成抑制剂 lovastatin 将 TBSV 复制减少了 4 倍,证实了固醇在病毒复制中的重要性。我们还显示,从 APB 处理的酵母中分离出的 p92(pol)病毒复制蛋白的稳定性降低,以及 TBSV 复制酶的体外活性降低。此外,APB 处理抑制了植物原生质体和 Nicotiana benthamiana 叶片中 TBSV RNA 的积累。APB 对 TBSV 复制的抑制作用可以被外源性豆甾醇(植物固醇的主要成分)补充,表明固醇是 TBSV 复制所必需的。SMO1 和 SMO2 基因(ERG25 的同源物)在 N. benthamiana 中的沉默减少了 TBSV RNA 的积累,但对不相关的烟草花叶病毒的抑制作用较小,这表明各种病毒对固醇生物合成的依赖程度不同。