Lu G, Zhou Z H, Baker M L, Jakana J, Cai D, Wei X, Chen S, Gu X, Chiu W
National Laboratory of Protein Engineering and Plant Genetic Engineering, College of Life Sciences, Peking University, Beijing 100871, China.
J Virol. 1998 Nov;72(11):8541-9. doi: 10.1128/JVI.72.11.8541-8549.1998.
Rice dwarf virus (RDV), a member of the Reoviridae family, is a double-stranded RNA virus. Infection of rice plants with RDV reduces crop production significantly and can pose a major economic threat to Southeast Asia. A 25-A three-dimensional structure of the 700-A-diameter RDV capsid has been determined by 400-kV electron cryomicroscopy and computer reconstruction. The structure revealed two distinctive icosahedral shells: a T=13l outer icosahedral shell composed of 260 trimeric clusters of P8 (46 kDa) and an inner T=1 icosahedral shell of 60 dimers of P3 (114 kDa). Sequence and structural comparisons were made between the RDV outer shell trimer and the two crystal conformations (REF and HEX) of the VP7 trimer of bluetongue virus, an animal analog of RDV. The low-resolution structural match of the RDV outer shell trimer to the HEX conformation of VP7 trimer has led to the proposal that P8 consists of an upper domain of beta-sandwich motif and a lower domain of alpha helices. The less well fit REF conformation of VP7 to the RDV trimer may be due to the differences between VP7 and P8 in the sequence of the hinge region that connects the two domains. The additional mass density and the absence of a known signaling peptide on the surface of the RDV outer shell trimer may be responsible for the different interactions between plants and animal reoviruses.
水稻矮缩病毒(RDV)是呼肠孤病毒科的成员,是一种双链RNA病毒。水稻植株被RDV感染会显著降低作物产量,并可能对东南亚构成重大经济威胁。通过400 kV电子冷冻显微镜和计算机重建技术,已确定了直径700 Å的RDV衣壳的25 Å三维结构。该结构揭示了两个独特的二十面体壳层:一个由260个P8(46 kDa)三聚体簇组成的T = 13l外二十面体壳层和一个由60个P3(114 kDa)二聚体组成的内T = 1二十面体壳层。对RDV外壳三聚体与蓝舌病毒VP7三聚体的两种晶体构象(REF和HEX)进行了序列和结构比较,蓝舌病毒是RDV的动物类似物。RDV外壳三聚体与VP7三聚体的HEX构象的低分辨率结构匹配导致有人提出P8由β-三明治基序的上部结构域和α螺旋的下部结构域组成。VP7与RDV三聚体不太匹配的REF构象可能是由于VP7和P8在连接两个结构域的铰链区序列上的差异。RDV外壳三聚体表面额外的质量密度和已知信号肽的缺失可能是植物呼肠孤病毒和动物呼肠孤病毒之间不同相互作用的原因。