首页> 美国卫生研究院文献>Viruses >A Motif in the F Homomorph of Rabbit Haemorrhagic Disease Virus Polymerase Is Important for the Subcellular Localisation of the Protein and Its Ability to Induce Redistribution of Golgi Membranes
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A Motif in the F Homomorph of Rabbit Haemorrhagic Disease Virus Polymerase Is Important for the Subcellular Localisation of the Protein and Its Ability to Induce Redistribution of Golgi Membranes

机译:兔出血性疾病病毒聚合酶F同形体的基序对于该蛋白的亚细胞定位及其诱导高尔基体膜的重新分布的能力很重要

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摘要

Rabbit haemorrhagic disease virus (RHDV) is a calicivirus that infects and frequently kills rabbits. Previously, we showed that the RHDV RNA-dependent RNA polymerase (RdRp) is associated with distinct, but yet uncharacterised subcellular structures and is capable of inducing a redistribution of Golgi membranes. In this study, we identified a partially hidden hydrophobic motif that determines the subcellular localisation of recombinant RHDV RdRp in transfected cells. This novel motif, 189LLWGCDVGVAVCAAAVFHNICY210, is located within the F homomorph, between the conserved F3 and A motifs of the core RdRp domain. Amino acid substitutions that decrease the hydrophobicity of this motif reduced the ability of the protein to accumulate in multiple subcellular foci and to induce a rearrangement of the Golgi network. Furthermore, preliminary molecular dynamics simulations suggest that the RHDV RdRp could align with the negatively charged surfaces of biological membranes and undergo a conformational change involving the F homomorph. These changes would expose the newly identified hydrophobic motif so it could immerse itself into the outer leaflet of intracellular membranes.
机译:兔出血性疾病病毒(RHDV)是杯状病毒,可感染并经常杀死兔子。以前,我们表明RHDV RNA依赖性RNA聚合酶(RdRp)与独特的但尚未表征的亚细胞结构相关,并且能够诱导高尔基体膜的重新分布。在这项研究中,我们确定了部分隐藏的疏水基序,该基序决定了重组RHDV RdRp在转染细胞中的亚细胞定位。这个新的基序189LLWGCDVGVAVCAAAVFHNICY210位于F同形物内,位于核心RdRp结构域的保守F3和A基序之间。降低该基序的疏水性的氨基酸取代降低了蛋白质在多个亚细胞灶中积累并诱导高尔基网络重排的能力。此外,初步的分子动力学模拟表明,RHDV RdRp可以与生物膜带负电的表面对齐,并发生涉及F同形体的构象变化。这些变化将暴露出新近识别的疏水基序,使其可以浸入细胞内膜的外部小叶中。

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