Jackson T, Blakemore W, Newman J W, Knowles N J, Mould A P, Humphries M J, King A M
Department of Molecular Biology, Institute for Animal Health, Pirbright Laboratory, Ash Road, Pirbright, Surrey GU24 0NF, UK.
J Gen Virol. 2000 May;81(Pt 5):1383-91. doi: 10.1099/0022-1317-81-5-1383.
Field isolates of foot-and-mouth disease virus (FMDV) use RGD-dependent integrins as receptors for internalization, whereas strains that are adapted for growth in cultured cell lines appear to be able to use alternative receptors like heparan sulphate proteoglycans (HSPG). The ligand-binding potential of integrins is regulated by changes in the conformation of their ectodomains and the ligand-binding state would be expected to be an important determinant of tropism for viruses that use integrins as cellular receptors. Currently, alphavbeta3 is the only integrin that has been shown to act as a receptor for FMDV. In this study, a solid-phase receptor-binding assay has been used to characterize the binding of FMDV to purified preparations of the human integrin alpha5beta1, in the absence of HSPG and other RGD-binding integrins. In this assay, binding of FMDV resembled authentic ligand binding to alpha5beta1 in its dependence on divalent cations and specific inhibition by RGD peptides. Most importantly, binding was found to be critically dependent on the conformation of the integrin, as virus bound only after induction of the high-affinity ligand-binding state. In addition, the identity of the amino acid residue immediately following the RGD motif is shown to influence differentially the ability of FMDV to bind integrins alpha5beta1 and alphavbeta3 and evidence is provided that alpha5beta1 might be an important FMDV receptor in vivo.
口蹄疫病毒(FMDV)的野外分离株利用依赖RGD的整合素作为内化受体,而适应于在培养细胞系中生长的毒株似乎能够利用诸如硫酸乙酰肝素蛋白聚糖(HSPG)等替代受体。整合素的配体结合潜力受其胞外域构象变化的调节,并且配体结合状态预计是使用整合素作为细胞受体的病毒嗜性的重要决定因素。目前,αvβ3是唯一已被证明可作为FMDV受体的整合素。在本研究中,已使用固相受体结合测定法来表征在不存在HSPG和其他RGD结合整合素的情况下FMDV与人整合素α5β1纯化制剂的结合。在该测定中,FMDV的结合在对二价阳离子的依赖性和RGD肽的特异性抑制方面类似于真实配体与α5β1的结合。最重要的是,发现结合严重依赖于整合素的构象,因为病毒仅在诱导高亲和力配体结合状态后才结合。此外,RGD基序之后紧邻的氨基酸残基的身份显示出对FMDV结合整合素α5β1和αvβ3的能力有不同影响,并且提供了证据表明α5β1可能是体内重要的FMDV受体。