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Conserved Outer Tegument Component UL11 from Herpes Simplex Virus 1 Is an Intrinsically Disordered, RNA-Binding Protein

机译:Simplex病毒1的保守外部Tegument组分UL11是一个内在混乱的RNA结合蛋白

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A distinguishing morphological feature of all herpesviruses is the multiprotein tegument layer located between the nucleocapsid and lipid envelope of the virion. Tegument proteins play multiple roles in viral replication, including viral assembly, but we do not yet understand their individual functions or how the tegument is assembled and organized. UL11, the smallest tegument protein, is important for several distinct processes in replication, including efficient virion morphogenesis and cell-cell spread. However, the mechanistic understanding of its role in these and other processes is limited in part by the scant knowledge of its biochemical and structural properties. Here, we report that UL11 from herpes simplex virus 1 (HSV-1) is an intrinsically disordered, conformationally dynamic protein that undergoes liquid-liquid phase separation (LLPS) in vitro . Intrinsic disorder may underlie the ability of UL11 to exert multiple functions and bind multiple partners. Sequence analysis suggests that not only all UL11 homologs but also all HSV-1 tegument proteins contain intrinsically disordered regions of different lengths. The presence of intrinsic disorder, and potentially, the ability to form LLPS, may thus be a common feature of the tegument proteins. We hypothesize that tegument assembly may involve the formation of a biomolecular condensate, driven by the heterogeneous mixture of intrinsically disordered tegument proteins.
机译:所有Herpesviruses的区别的形态特征是位于病毒素核衣壳和脂质包络之间的多素蛋白Tegument层。 Tegument蛋白在病毒复制中发挥多种作用,包括病毒组件,但我们尚未理解他们的个人功能或如何组装和组织Tegument如何。 UL11是最小的Tegument蛋白,对复制中的几种不同的方法很重要,包括有效的病毒血清体形态发生和细胞 - 细胞扩散。然而,机械理解其在这些和其他过程中的作用是有限的,部分地受到其生化和结构性质的瘢痕知识。在这里,我们报告从疱疹病毒1(HSV-1)中的UL11是一种内在混乱的,构象的动态蛋白质,其在体外经历液液相分离(LLP)。内在病症可能使UL11发挥多种功能并绑定多个伴侣的能力。序列分析表明,不仅所有UL11同源物,还均包含所有HSV-1 Tegument蛋白质含有不同长度的本质上无序区域。因此,存在内在病症,并且可能形成LLP的能力,可以是Tegument蛋白的共同特征。我们假设Tegument组件可以涉及形成由本质上无序的Tegument蛋白的异质混合物驱动的生物分子缩合物。

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