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蚜虫共生菌 Buchnera aphidicola 的 GroEL 伴侣蛋白与杆状病毒之间的相互作用。

Interactions between a luteovirus and the GroEL chaperonin protein of the symbiotic bacterium Buchnera aphidicola of aphids.

机构信息

Department of Entomology, Comstock Hall, Cornell University, Ithaca, NY 14850, USA.

Department of Biology, University of York, York YO10 5YW, UK.

出版信息

J Gen Virol. 2011 Jun;92(Pt 6):1467-1474. doi: 10.1099/vir.0.029355-0. Epub 2011 Feb 23.

Abstract

Luteoviruses and poleroviruses are important plant viruses transmitted exclusively by aphids in a circulative manner via the aphid haemolymph. A chaperonin protein, GroEL, synthesized in aphids by a symbiotic bacterium, Buchnera aphidicola, is hypothesized to bind to virus particles in the haemolymph, thereby promoting transmission. To investigate this hypothesis, the GroEL-binding site for barley yellow dwarf virus (BYDV) was determined in vitro, and the abundance of GroEL protein in different aphid tissues was investigated. Virus binding to a peptide library representing the full GroEL molecule revealed a single binding site that coincides with the site that anchors two GroEL rings to form the native GroEL tetradecamer. In the functional form of the GroEL protein, virus binding would compete with the formation of the two GroEL rings. Using a mAb raised against a Buchnera-specific GroEL epitope, GroEL was detected in Buchnera cells by immunoblotting and immunocytochemistry, but not in the aphid haemolymph, fat body or gut. From the prediction here that GroEL-virus interactions are probably severely limited by competition with other GroEL molecules, and the evidence that GroEL is not available to interact with virus particles in vivo, it is concluded that GroEL-virus interactions are unlikely to contribute to virus transmission by aphids.

摘要

杆状病毒和马铃薯 Y 病毒是通过蚜虫的血淋巴以循环方式专一地传播的重要植物病毒。共生菌 Buchnera aphidicola 在蚜虫中合成的伴侣蛋白 GroEL 被假设与血淋巴中的病毒颗粒结合,从而促进传播。为了研究这一假说,在体外确定了大麦黄矮病毒(BYDV)与 GroEL 的结合位点,并研究了不同蚜虫组织中 GroEL 蛋白的丰度。病毒与代表完整 GroEL 分子的肽文库的结合揭示了一个单一的结合位点,该位点与将两个 GroEL 环锚定形成天然 GroEL 十四聚体的位点一致。在 GroEL 蛋白的功能形式中,病毒结合会与两个 GroEL 环的形成竞争。使用针对 Buchnera 特异性 GroEL 表位的 mAb 通过免疫印迹和免疫细胞化学检测到 Buchnera 细胞中的 GroEL,但在蚜虫血淋巴、脂肪体或肠道中未检测到。从这里预测,GroEL-病毒相互作用可能受到与其他 GroEL 分子竞争的严重限制,并且证据表明 GroEL 在体内与病毒颗粒没有相互作用,可以得出结论,GroEL-病毒相互作用不太可能有助于蚜虫传播病毒。

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