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Turnip Mosaic Virus Uses the SNARE Protein VTI11 in an Unconventional Route for Replication Vesicle Trafficking

机译:萝卜马赛克病毒在一个非传统的Repication粉碎贩运方面使用Snare蛋白VTI11

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Infection of plant cells by RNA viruses leads to the generation of organelle-like subcellular structures that contain the viral replication complex. During Turnip mosaic virus (TuMV) infection of Nicotiana benthamiana, the viral membrane protein 6K(2) plays a key role in the release of motile replication vesicles from the host endoplasmic reticulum (ER). Here, we demonstrate that 6K(2) contains a GxxxG motif within its predicted transmembrane domain that is vital for TuMV infection. Replacement of the Gly with Val within this motif inhibited virus production, and this was due to a relocation of the viral protein to the Golgi apparatus and the plasma membrane. This indicated that passage of 6K(2) through the Golgi apparatus is a dead-end avenue for virus infection. Impairing the fusion of transport vesicles between the ER and the Golgi apparatus by overexpression of the SNARE Sec22 protein resulted in enhanced intercellular virus movement. Likewise, expression of nonfunctional, Golgi-located synaptotagmin during infection enhanced TuMV intercellular movement. 6K(2) copurified with VTI11, a prevacuolar compartment SNARE protein. An Arabidopsis thaliana vtill mutant was completely resistant to TuMV infection. We conclude that TuMV replication vesicles bypass the Golgi apparatus and take an unconventional pathway that may involve prevacuolar compartments/multivesicular bodies for virus infection.
机译:RNA病毒感染植物细胞导致产生含有病毒复制复合物的细胞石样亚细胞结构。在萝卜叶片病毒(Tumv)期间,尼科尼亚植物的感染,病毒膜蛋白6K(2)在来自宿主内质网(ER)的释放动机复制囊泡中起关键作用。在此,我们证明6K(2)包含在其预测的跨膜结构域内的GXXXG基序,这对于TuMV感染至关重要。在该基序内用Val替换vly抑制病毒的生产,这是由于病毒蛋白与Golgi设备和质膜的重新定位。这表明6K(2)通过Golgi设备的通过是病毒感染的死端大道。通过陷阱Sec22蛋白的过表达损害ER和Golgi装置之间的运输囊泡的融合导致细胞间病毒运动增强。同样,感染期间,在感染期间的非功能性,高尔基突变蛋白的表达增强了CuMV细胞间运动。 6K(2)用VTI11共筛选,预先寄生套房圈套蛋白。拟南芥VTill突变体完全抵抗Tumv感染。我们得出结论,Tumv复制囊泡绕过Golgi装置,并采取非常规的途径,其可能涉及预先甲状室/多物体的病毒感染。

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