Delos Sue E, Godby Jesse A, White Judith M
Department of Cell Biology, UVA Health System, School of Medicine, P.O. Box 800732, Charlottesville, VA 22908-0732, USA.
J Virol. 2005 Mar;79(6):3488-99. doi: 10.1128/JVI.79.6.3488-3499.2005.
The avian sarcoma/leukosis virus (ASLV) is activated for fusion by a two-step mechanism. For ASLV subgroup A (ASLV-A), association with its receptor (Tva) at neutral pH converts virions to a form that can bind target membranes and, in some assays, induce the lipid-mixing stage of fusion. Low pH is necessary to complete the fusion reaction. ASLV-A env (EnvA) exists on the viral surface as a trimer of heterodimers consisting of receptor binding (SU-A) and fusion-mediating (TM-A) subunits. As the receptor binding and fusion-mediating functions reside in separate subunits, we hypothesize that SU-A and TM-A are conformationally coupled. To begin to understand the effect of the binding of a soluble 47-residue domain of the receptor (sTva) on this coupling and the subsequent function of low pH, we prepared recombinant proteins representing full-length SU-A and a nested set of deletion mutant proteins. Full-length SU-A binds sTva with high affinity, but even small deletions at either the N or the C terminus severely impair sTva binding. We have purified the full-length SU-A subunit and characterized its interactions with sTva and the subsequent effect of low pH on the complex. sTva binds SU-A with an apparent KD of 3 pM. Complex formation occludes hydrophobic surfaces and tryptophan residues and leads to a partial loss of alpha-helical structure in SU-A. Low pH does not alter the off rate for the complex, further alter the secondary structure of SU-A, or induce measurable changes in tryptophan environment. The implications of these findings for fusion are discussed.
禽肉瘤/白血病病毒(ASLV)通过两步机制被激活以进行融合。对于A亚群禽肉瘤/白血病病毒(ASLV-A),在中性pH下与它的受体(Tva)结合会将病毒粒子转变为一种能够结合靶膜的形式,并且在某些测定中,会诱导融合的脂质混合阶段。低pH对于完成融合反应是必需的。ASLV-A包膜蛋白(EnvA)以异二聚体三聚体的形式存在于病毒表面,该异二聚体由受体结合亚基(SU-A)和介导融合的亚基(TM-A)组成。由于受体结合功能和介导融合的功能存在于不同的亚基中,我们推测SU-A和TM-A在构象上是偶联的。为了开始了解受体的一个47个残基的可溶性结构域(sTva)的结合对这种偶联以及随后低pH功能的影响,我们制备了代表全长SU-A的重组蛋白和一组嵌套的缺失突变蛋白。全长SU-A以高亲和力结合sTva,但即使在N端或C端有小的缺失也会严重损害sTva的结合。我们已经纯化了全长SU-A亚基,并表征了它与sTva的相互作用以及随后低pH对该复合物的影响。sTva以3 pM的表观解离常数(KD)结合SU-A。复合物的形成封闭了疏水表面和色氨酸残基,并导致SU-A中α螺旋结构部分丧失。低pH不会改变复合物的解离速率,不会进一步改变SU-A的二级结构,也不会在色氨酸环境中诱导可测量的变化。讨论了这些发现对融合的意义。