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Assembly-hub function of ER-localized SNARE proteins in biogenesis of tombusvirus replication compartment

机译:ER定位的SNARE蛋白的集线器枢纽功能在弓形病毒复制区隔的生物发生中

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摘要

Positive-strand RNA viruses assemble numerous membrane-bound viral replicase complexes within large replication compartments to support their replication in infected cells. Yet the detailed mechanism of how given subcellular compartments are subverted by viruses is incompletely understood. Although, Tomato bushy stunt virus (TBSV) uses peroxisomal membranes for replication, in this paper, we show evidence that the ER-resident SNARE (soluble attachment protein receptor) proteins play critical roles in the formation of active replicase complexes in yeast model host and in plants. Depletion of the syntaxin 18-like Ufe1 and Use1, which are components of the ER SNARE complex in the ERAS (ER arrival site) subdomain, in yeast resulted in greatly reduced tombusvirus accumulation. Over-expression of a dominant-negative mutant of either the yeast Ufe1 or the orthologous plant Syp81 syntaxin greatly interferes with tombusvirus replication in yeast and plants, thus further supporting the role of this host protein in tombusvirus replication. Moreover, tombusvirus RNA replication was low in cell-free extracts from yeast with repressed Ufe1 or Use1 expression. We also present evidence for the mislocalization of the tombusviral p33 replication protein to the ER membrane in Ufe1p-depleted yeast cells. The viral p33 replication protein interacts with both Ufe1p and Use1p and co-opts them into the TBSV replication compartment in yeast and plant cells. The co-opted Ufe1 affects the virus-driven membrane contact site formation, sterol-enrichment at replication sites, recruitment of several pro-viral host factors and subversion of the Rab5-positive PE-rich endosomes needed for robust TBSV replication. In summary, we demonstrate a critical role for Ufe1 and Use1 SNARE proteins in TBSV replication and propose that the pro-viral functions of Ufe1 and Use1 are to serve as assembly hubs for the formation of the extensive TBSV replication compartments in cells. Altogether, these findings point clearly at the ERAS subdomain of ER as a critical site for the biogenesis of the TBSV replication compartment.
机译:正链RNA病毒在大型复制区室中组装许多膜结合的病毒复制酶复合物,以支持它们在感染细胞中的复制。然而,如何彻底破坏给定的亚细胞区室被病毒破坏的详细机制。尽管番茄浓密特技病毒(TBSV)使用过氧化物酶体膜进行复制,但在本文中,我们显示了证据,即驻留ER的SNARE(可溶性附着蛋白受体)蛋白在酵母模型宿主和宿主中形成活性复制酶复合体中起着关键作用。在植物中。酵母中ERAS(ER到达位点)子域中ER SNARE复合体的组成部分18样Ufe1和Use1语法语法的消耗导致大大减少了鼓膜病毒的积累。酵母Ufe1或直系同源植物Syp81 Syntaxin的显性负突变体的过表达极大地干扰了酵母菌和植物中的鼓膜病毒复制,从而进一步支持了该宿主蛋白在鼓膜病毒复制中的作用。此外,在Ufe1或Use1表达受抑制的酵母中,无细胞提取物中的鼓膜病毒RNA复制率很低。我们还提供了证据,证明在缺乏Ufe1p的酵母细胞中,毒理学病毒p33复制蛋白向ER膜的定位错误。病毒p33复制蛋白与Ufe1p和Use1p相互作用,并将它们共同选择进入酵母和植物细胞的TBSV复制区室。共同选择的Ufe1影响病毒驱动的膜接触位点形成,复制位点处的固醇富集,几种前病毒宿主因子的募集以及破坏性的TBSV复制所需的Rab5阳性PE丰富的内体的颠覆。总而言之,我们证明了Ufe1和Use1 SNARE蛋白在TBSV复制中的关键作用,并提出Ufe1和Use1的前病毒功能将作为装配中心,用于在细胞中形成广泛的TBSV复制区室。总而言之,这些发现清楚地指出ER的ERAS子域是TBSV复制区室生物发生的关键部位。

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