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痘苗病毒结构元件中DNA结合蛋白和二硫键连接蛋白的定位

Location of DNA-binding proteins and disulfide-linked proteins in vaccinia virus structural elements.

作者信息

Ichihashi Y, Oie M, Tsuruhara T

出版信息

J Virol. 1984 Jun;50(3):929-38. doi: 10.1128/JVI.50.3.929-938.1984.

Abstract

Treatment with sodium dodecyl sulfate (SDS) converted the vaccinia virus strain IHD-J into particles of two types: (i) ghosts which possessed a thin-membrane vesicle derived from basement part of the virus membrane with attached lateral bodies and a membranous structure derived from the core wall and (ii) aggregates of a DNA-nucleoprotein eluted from the core. These particles lacked lipids, and all the viral phospholipids were detected in the SDS-soluble fraction. The viral membrane was composed of an SDS-soluble coat layer and the basement membrane, and the basement membrane was maintained by a mechanism other than the lipid bilayer. By comparisons of protein species in morphologically distinct subviral particles prepared by several solubilizing methods, protein compositions of viral structural elements were suggested as follows: 25,000-molecular-weight viral protein-17,000-molecular-weight viral protein ( VP25K - VP17K ), viral basement membrane; VP13 . 8K , major component of the lateral body; VP70K , VP69K , VP66K , and VP64K , minor components of the lateral body; VP61K , outer layer of core wall; VP57K - VP22K , inner layer of core wall; and VP27K - VP13K , nucleoprotein. These structural elements found in the SDS-insoluble particles dissolved in the same SDS solution under reducing conditions, indicating that the disulfide linkages seem to have a principal role in maintaining their morphological integrity. VP57K , VP27K , VP13 . 8K , and VP13K were revealed to possess affinity for DNA. Denatured calf thymus DNA and viral DNA in double- or single-stranded form associated equally well with these proteins, but RNA did not bind. Therefore, it was strongly suggested that disulfide-linked VP27K - VP13K represented the nucleoproteins of vaccinia virus. A structural model of vaccinia virus is proposed and discussed.

摘要

用十二烷基硫酸钠(SDS)处理将痘苗病毒株IHD-J转化为两种类型的颗粒:(i)空壳,其具有源自病毒膜基部的薄膜囊泡,带有附着的侧体以及源自核心壁的膜状结构;(ii)从核心洗脱的DNA-核蛋白聚集体。这些颗粒缺乏脂质,并且所有病毒磷脂都在SDS可溶部分中检测到。病毒膜由SDS可溶的外层和基底膜组成,并且基底膜通过脂质双层以外的机制维持。通过比较几种增溶方法制备的形态学上不同的亚病毒颗粒中的蛋白质种类,病毒结构元件的蛋白质组成如下:25,000分子量病毒蛋白-17,000分子量病毒蛋白(VP25K-VP17K),病毒基底膜;VP13.8K,侧体的主要成分;VP70K、VP69K、VP66K和VP64K,侧体的次要成分;VP61K,核心壁外层;VP57K-VP22K,核心壁内层;以及VP27K-VP13K,核蛋白。在还原条件下,这些在SDS不溶性颗粒中发现的结构元件溶解于相同的SDS溶液中,表明二硫键似乎在维持其形态完整性方面起主要作用。VP57K、VP27K、VP13.8K和VP13K被发现对DNA具有亲和力。变性的小牛胸腺DNA和双链或单链形式的病毒DNA与这些蛋白质的结合效果相同,但RNA不结合。因此,强烈表明二硫键连接的VP27K-VP13K代表痘苗病毒的核蛋白。提出并讨论了痘苗病毒的结构模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d51e/255755/9ef2036f5412/jvirol00135-0268-a.jpg

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