Tatulian S A, Hinterdorfer P, Baber G, Tamm L K
Department of Molecular Physiology and Biological Physics, University of Virginia School of Medicine, Charlottesville 22908, USA.
EMBO J. 1995 Nov 15;14(22):5514-23. doi: 10.1002/j.1460-2075.1995.tb00238.x.
Fusion of influenza virus with target membranes is mediated by an acid-induced conformational change of the viral fusion protein hemagglutinin (HA) involving an extensive reorganization of the alpha-helices. A 'spring-loaded' displacement over at least 100 A provides a mechanism for the insertion of the fusion peptide into the target membrane, but does not explain how the two membranes are brought into fusion contact. Here we examine, by attenuated total reflection Fourier transform infrared spectroscopy, the secondary structure and orientation of HA reconstituted in planar membranes. At neutral pH, the orientation of the HA trimers in planar membranes is approximately perpendicular to the membrane. However, at the pH of fusion, the HA trimers are tilted 55-70 degrees from the membrane normal in the presence or absence of bound target membranes. In the absence of target membranes, the overall secondary structure of HA at the fusion pH is similar to that at neutral pH, but approximately 50-60 additional residues become alpha-helical upon the conformational change in the presence of bound target membranes. These results are discussed in terms of a structural model for the fusion intermediate of influenza HA.
流感病毒与靶膜的融合是由病毒融合蛋白血凝素(HA)的酸诱导构象变化介导的,这种变化涉及α螺旋的广泛重组。至少100埃的“弹簧加载”位移为融合肽插入靶膜提供了一种机制,但并未解释两个膜是如何形成融合接触的。在这里,我们通过衰减全反射傅里叶变换红外光谱研究了平面膜中重组HA的二级结构和取向。在中性pH下,平面膜中HA三聚体的取向大致垂直于膜。然而,在融合pH下,无论是否存在结合的靶膜,HA三聚体都从膜法线倾斜55 - 70度。在没有靶膜的情况下,融合pH下HA的整体二级结构与中性pH下相似,但在存在结合靶膜的构象变化时,大约有50 - 60个额外的残基变成α螺旋。这些结果根据流感HA融合中间体的结构模型进行了讨论。