Zeng C Q, Wentz M J, Cohen J, Estes M K, Ramig R F
Division of Molecular Virology, Baylor College of Medicine, Houston, Texas 77030, USA.
J Virol. 1996 May;70(5):2736-42. doi: 10.1128/JVI.70.5.2736-2742.1996.
Rotavirus has a capsid composed of three concentric protein layers. We coexpressed various combinations of the rotavirus structural proteins of single-layered (core) and double-layered (single-shelled) capsids from baculovirus vectors in insect cells and determined the ability of the various combinations to assemble into viruslike particles (VLPs). VLPs were purified by centrifugation, their structure was examined by negative-stain electron microscopy, their protein content was determined by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and GTP binding assays, and their ability to support synthesis of negative-strand RNAs on positive-sense template RNAs was determined in an in vitro replication system. Coexpression of all possible combinations of VP1, VP2, VP3, and VP6, the proteins of double-layered capsids, resulted in the formation of VP1/2/3/6, VP1/2/6, VP2/3/6, and VP2/6 double-layered VLPs. These VLPs had the structural characteristics of empty rotavirus double-layered particles and contained the indicated protein species. Only VPI/2/3/6 and VP1/2/6 particles supported RNA replication. Coexpression of all possible combinations of VPl, VP2, and VP3, the proteins of single-layered capsids, resulted in the formation of VP1/2/3, VP1/2, VP2/3, and VP2 single-layered VLPs. These VLPs had the structural characteristics of empty single-layered rotavirus particles and contained the indicated protein species. Only VP1/2/3 and VP1/2 VLPs supported RNA replication. We conclude that (i) the assembly of VP1 and VP3 into VLPs requires the presence of VP2, (ii) the role of VP2 in the assembly of VP1 and VP3 and in replicase activity is most likely structural, (iii) VP1 is required and VP3 is not required for replicase activity of VLPs, and (iv) VP1/2 VLPs constitute the minimal replicase particle in the in vitro replication system.
轮状病毒有一个由三层同心蛋白质层组成的衣壳。我们在昆虫细胞中通过杆状病毒载体共表达了单层(核心)和双层(单壳)衣壳的轮状病毒结构蛋白的各种组合,并确定了各种组合组装成病毒样颗粒(VLP)的能力。通过离心纯化VLP,用负染色电子显微镜检查其结构,用十二烷基硫酸钠-聚丙烯酰胺凝胶电泳和GTP结合试验测定其蛋白质含量,并在体外复制系统中测定其支持正链模板RNA上负链RNA合成的能力。双层衣壳蛋白VP1、VP2、VP3和VP6的所有可能组合的共表达导致形成VP1/2/3/6、VP1/2/6、VP2/3/6和VP2/6双层VLP。这些VLP具有空轮状病毒双层颗粒的结构特征,并含有所示的蛋白质种类。只有VPI/2/3/6和VP1/2/6颗粒支持RNA复制。单层衣壳蛋白VPl、VP2和VP3的所有可能组合的共表达导致形成VP1/2/3、VP1/2、VP2/3和VP2单层VLP。这些VLP具有空单层轮状病毒颗粒的结构特征,并含有所示的蛋白质种类。只有VP1/2/3和VP1/2 VLP支持RNA复制。我们得出结论:(i)VP1和VP3组装成VLP需要VP2的存在;(ii)VP2在VP1和VP3组装以及复制酶活性中的作用很可能是结构性的;(iii)VLP的复制酶活性需要VP1而不需要VP3;(iv)在体外复制系统中,VP1/2 VLP构成最小的复制酶颗粒。