Filichkin S A, Brumfield S, Filichkin T P, Young M J
Department of Plant Pathology, Montana State University, Bozeman 59717, USA.
J Virol. 1997 Jan;71(1):569-77. doi: 10.1128/JVI.71.1.569-577.1997.
Barley yellow dwarf virus (BYDV)-vector relationships suggest that there are specific interactions between BYDV virions and the aphid's cellular components. However, little is known about vector factors that mediate virion recognition, cellular trafficking, and accumulation within the aphid. Symbionins are molecular chaperonins produced by intracellular endosymbiotic bacteria and are the most abundant proteins found in aphids. To elucidate the potential role of symbionins in BYDV transmission, we have isolated and characterized two new symbionin symL genes encoded by the endosymbionts which are harbored by the BYDV aphid vectors Rhopalosiphum padi and Sitobion avenae. Endosymbiont symL-encoded proteins have extensive homology with the pea aphid SymL and Escherichia coli GroEL chaperonin. Recombinant and native SymL proteins can be assembled into oligomeric complexes which are similar to the GroEL oligomer. R. padi SymL protein demonstrates an in vitro binding affinity for BYDV and its recombinant readthrough polypeptide. In contrast to the R. padi SymL, the closely related GroEL does not exhibit a significant binding affinity either for BYDV or for its recombinant readthrough polypeptide. Comparative sequence analysis between SymL and GroEL was used to identify potential SymL-BYDV binding sites. Affinity binding of SymL to BYDV in vitro suggests a potential involvement of endosymbiotic chaperonins in interactions with virions during their trafficking through the aphid.
大麦黄矮病毒(BYDV)与传毒介体的关系表明,BYDV病毒粒子与蚜虫细胞成分之间存在特定的相互作用。然而,对于介导病毒粒子识别、细胞运输以及在蚜虫体内积累的介体因子,我们了解甚少。共生蛋白是细胞内共生细菌产生的分子伴侣蛋白,是蚜虫体内含量最丰富的蛋白质。为了阐明共生蛋白在BYDV传播中的潜在作用,我们分离并鉴定了由BYDV蚜虫介体麦长管蚜和禾谷缢管蚜体内共生菌编码的两个新的共生蛋白symL基因。共生菌symL编码的蛋白与豌豆蚜SymL和大肠杆菌GroEL分子伴侣蛋白具有广泛的同源性。重组和天然SymL蛋白均可组装成类似于GroEL寡聚体的寡聚复合物。麦长管蚜SymL蛋白对BYDV及其重组通读多肽表现出体外结合亲和力。与麦长管蚜SymL不同,亲缘关系密切的GroEL对BYDV或其重组通读多肽均未表现出明显的结合亲和力。通过对SymL和GroEL进行比较序列分析,以鉴定潜在的SymL - BYDV结合位点。SymL在体外与BYDV的亲和结合表明,内共生伴侣蛋白在病毒粒子通过蚜虫运输过程中与病毒粒子的相互作用中可能发挥作用。