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Subcellular localization and membrane association of the replicase protein of grapevine rupestris stem pitting-associated virus, family Betaflexiviridae

机译:葡萄叶柄凹痕相关病毒Betaflexiviridae家族复制酶蛋白的亚细胞定位和膜结合

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As a member of the newly established Betaflexiviridae family, grapevine rupestris stem pitting-associated virus (GRSPaV) has an RNA genome containing five ORFs. ORF1 encodes a putative replicase polyprotein typical of the alphavirus superfamily of positive-strand ssRNA viruses. Several viruses of this superfamily have been demonstrated to replicate in structures designated viral replication complexes associated with intracellular membranes. However, structure and cellular localization of the replicase complex have not been studied for members of Betaflexiviridae, a family of mostly woody plant viruses. As a first step towards the elucidation of the replication complex of GRSPaV, we investigated the subcellular localization of full-length and truncated versions of its replicase polyprotein via fluorescent tagging, followed by fluorescence microscopy. We found that the replicase polyprotein formed distinctive punctate bodies in both Nicotiana benthamiana leaf cells and tobacco protoplasts. We further mapped a region of 76 amino acids in the methyl-transferase domain responsible for the formation of these punctate structures. The punctate structures are distributed in close proximity to the endoplasmic reticulum network. Membrane flotation and biochemical analyses demonstrate that the N-terminal region responsible for punctate structure formation associated with cellular membrane is likely through an amphipathic α helix serving as an in-plane anchor. The identity of this membrane is yet to be determined. This is, to our knowledge, the first report on the localization and membrane association of the replicase proteins of a member of the family Betaflexiviridae.
机译:作为新近建立的Betaflexiviridae家族的一员,葡萄墨杆茎麻点相关病毒(GRSPaV)的RNA基因组包含五个ORF。 ORF1编码一个假定的复制酶多蛋白,典型的是正链ssRNA病毒的alpha病毒超家族。已经证明该超家族的几种病毒在与细胞内膜相关的称为病毒复制复合物的结构中复制。但是,尚未对Betaflexiviridae(大多数为木本植物病毒的家族)成员研究复制酶复合物的结构和细胞定位。作为阐明GRSPaV复制复合体的第一步,我们通过荧光标记研究了其复制酶多蛋白的全长和截短版本的亚细胞定位,然后进行了荧光显微镜检查。我们发现复制酶多蛋白在本生烟草叶细胞和烟草原生质体中均形成独特的点状体。我们进一步绘制了甲基​​转移酶域中负责形成这些点状结构的76个氨基酸区域。点状结构非常靠近内质网分布。膜浮选和生化分析表明,负责与细胞膜相关的点状结构形成的N端区域可能是通过两亲性α螺旋作为面内锚定的。该膜的身份尚未确定。据我们所知,这是关于贝氏弯曲病毒科成员复制酶蛋白的定位和膜缔合的首次报道。

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