Kielian M, Jungerwirth S, Sayad K U, DeCandido S
Department of Cell Biology, Albert Einstein College of Medicine, Bronx, New York 10461.
J Virol. 1990 Oct;64(10):4614-24. doi: 10.1128/JVI.64.10.4614-4624.1990.
The Semliki Forest virus spike protein has a potent membrane fusion activity which is activated in vivo by the low pH of endocytic vacuoles. The spike protein is composed of two transmembrane subunits, E1 and E2, plus E3, a peripheral polypeptide. Acid-induced conformational changes in the E1 or E2 subunits were analyzed by using monoclonal antibodies specific for the acid-treated spike protein. E1 and E2 reacted with the antibodies after treatment of wild-type or mutant virus at the pH of fusion. The E1 conformational change resembled fusion in its requirement for both low pH and cholesterol. Pulse-chase analysis and intracellular pH treatment were then used to determine the ability of the newly synthesized spike to undergo acid-induced conformational changes. p62, the precursor to E2 and E3, was shown to undergo a pH-dependent conformational change similar to that of E2 and was sensitive to acid very soon after biosynthesis. In contrast, a posttranslational maturation event was required for the conversion of E1 to the pH-sensitive form. E1 maturation occurred fairly late in the exocytic pathway, after the virus spike had passed the medial Golgi but before incorporation of the spike into a new virus particle.
辛德毕斯病毒刺突蛋白具有强大的膜融合活性,可在体内被内吞液泡的低pH激活。刺突蛋白由两个跨膜亚基E1和E2以及一个外周多肽E3组成。通过使用针对酸处理的刺突蛋白的单克隆抗体,分析了E1或E2亚基中酸诱导的构象变化。在融合pH值下处理野生型或突变病毒后,E1和E2与抗体发生反应。E1的构象变化在对低pH和胆固醇的需求方面类似于融合过程。然后使用脉冲追踪分析和细胞内pH处理来确定新合成的刺突经历酸诱导构象变化的能力。E2和E3的前体p62显示出与E2类似的pH依赖性构象变化,并且在生物合成后很快就对酸敏感。相比之下,E1转化为pH敏感形式需要一个翻译后成熟事件。E1成熟发生在胞吐途径的相当后期,在病毒刺突通过高尔基体中部之后,但在刺突并入新病毒颗粒之前。