Li C, Cox-Foster D, Gray S M, Gildow F
Department of Entomology, Pennsylvania State University, University Park, Pennsylvania 16802, USA.
Virology. 2001 Jul 20;286(1):125-33. doi: 10.1006/viro.2001.0929.
Two proteins (SaM35 and SaM50) isolated from head tissues of the aphid vector, Sitobion avenae, were identified as potential receptors for barley yellow dwarf virus MAV isolate (Luteoviridae) based on MAV virus overlay assays and immunoblots of urea SDS 2-D gels. An anti-idiotypic antibody (MAV4 anti-ID) that mimics an epitope on MAV virions and competes with MAV in antibody binding assays also bound to SaM50 and SaM35 and to six additional proteins including a GroEL homolog. No MAV-binding proteins were detected from the nonvector aphid, Rhopalosiphum maidis, although MAV4 anti-ID did react with four proteins from R. maidis. It is hypothesized that SaM35 and SaM50 may be MAV receptors involved in MAV transmission based on their high affinity for MAV and their unique association with the vector, S. avenae. The additional aphid proteins binding the MAV4 anti-ID may represent less specific virus-binding proteins facilitating transmission through different aphid tissues.
基于大麦黄矮病毒MAV分离株(黄症病毒科)的病毒覆盖分析以及尿素SDS 2-D凝胶免疫印迹法,从麦长管蚜(蚜虫传播介体)头部组织中分离出的两种蛋白质(SaM35和SaM50)被鉴定为MAV的潜在受体。一种模拟MAV病毒粒子上一个表位且在抗体结合试验中与MAV竞争的抗独特型抗体(MAV4抗独特型抗体)也能与SaM50和SaM35以及包括一种GroEL同源物在内的另外六种蛋白质结合。虽然MAV4抗独特型抗体确实能与玉米蚜的四种蛋白质发生反应,但在非传播介体蚜虫玉米蚜中未检测到MAV结合蛋白。基于SaM35和SaM50对MAV的高亲和力以及它们与传播介体麦长管蚜的独特关联,推测它们可能是参与MAV传播的受体。与MAV4抗独特型抗体结合的其他蚜虫蛋白质可能代表特异性较低的病毒结合蛋白,有助于病毒通过不同的蚜虫组织进行传播。