Gilbert J M, Hernandez L D, Balliet J W, Bates P, White J M
Department of Biochemistry, University of California, San Francisco, USA.
J Virol. 1995 Dec;69(12):7410-5. doi: 10.1128/JVI.69.12.7410-7415.1995.
We recently reported that Tva, the host cell receptor for subgroup A avian leukosis and sarcoma viruses, binds specifically to the subgroup A envelope glycoprotein (Env-A) (J.M. Gilbert, P. Bates, H. E. Varmus, and J. M. White, J. Virol. 68:5623-5628, 1994). Here we have tested the hypothesis that binding of Tva causes conformational changes in Env-A that correlate with its conversion from a fusion-inactive to a fusion-active state. Conformational changes were examined by both a proteolysis and an immunoprecipitation assay. A temperature-dependent conformational change, demonstrated by the generation of a specific thermolysin digestion product of the surface (SU) subunit, occurred when a soluble form of Tva (sTva) was incubated with Env-A. sTva did not induce this conformational change in Env-C or in a noninfectious precursor form of Env-A, Env-A CL. However sTva did induce the conformational change in Env-A CL that had been pretreated in vitro to produce the SU and transmembrane (TM) subunits. Moreover, interaction of Tva with Env-A at 25 degrees C, but not at 4 degrees C, appeared to reveal a previously buried segment of the putative fusion peptide of Env-A. Our results suggest that binding of Tva to Env-A results in specific conformational changes in the Env-A glycoprotein that are relevant to the activation of its fusion function.
我们最近报道,A型禽白血病和肉瘤病毒的宿主细胞受体Tva特异性结合A型包膜糖蛋白(Env-A)(J.M.吉尔伯特、P.贝茨、H.E.瓦尔默斯和J.M.怀特,《病毒学杂志》68:5623-5628,1994年)。在这里,我们检验了一个假设,即Tva的结合会导致Env-A发生构象变化,这种变化与其从融合无活性状态转变为融合活性状态相关。通过蛋白水解和免疫沉淀试验检测构象变化。当可溶性形式的Tva(sTva)与Env-A孵育时,会发生一种温度依赖性构象变化,这通过表面(SU)亚基产生特定的嗜热菌蛋白酶消化产物得以证明。sTva不会在Env-C或Env-A的非感染性前体形式Env-A CL中诱导这种构象变化。然而,sTva确实会在体外预处理以产生SU和跨膜(TM)亚基的Env-A CL中诱导构象变化。此外,Tva与Env-A在25℃而非4℃下的相互作用似乎揭示了Env-A推定融合肽中一个先前被掩埋的片段。我们的结果表明,Tva与Env-A的结合会导致Env-A糖蛋白发生特定的构象变化,这些变化与其融合功能的激活相关。