Centre of New Technologies, University of Warsaw, 02-097 Warsaw, Poland.
J Phys Chem B. 2023 Nov 9;127(44):9450-9460. doi: 10.1021/acs.jpcb.3c05257. Epub 2023 Oct 25.
Membrane fusion is a fundamental process that is exploited by enveloped viruses to enter host cells. In the case of the influenza virus, fusion is facilitated by the trimeric viral hemagglutinin protein (HA). So far, major focus has been put on its N-terminal fusion peptides, which are directly responsible for fusion initiation. A growing body of evidence points also to a significant functional role of the HA C-terminal domain, which however remains incompletely understood. Our computational study aimed to elucidate the structural and functional interdependencies within the HA C-terminal region encompassing the transmembrane domain (TMD) and the cytoplasmic tail (CT). In particular, we were interested in the conformational shift of the TMD in response to varying cholesterol concentration in the viral membrane and in its modulation by the presence of CT. Using free-energy calculations based on atomistic molecular dynamics simulations, we characterized transitions between straight and tilted metastable TMD configurations under varying conditions. We found that the presence of CT is essential for achieving a stable, highly tilted TMD configuration. As we demonstrate, such a configuration of HA membrane anchor likely supports the tilting motion of its ectodomain, which needs to be executed during membrane fusion. This finding highlights the functional role of, so far, the relatively overlooked CT region.
膜融合是一种基本过程,被包膜病毒利用进入宿主细胞。在流感病毒的情况下,融合是由三聚体病毒血凝素蛋白 (HA) 介导的。到目前为止,主要的重点一直放在其 N 端融合肽上,它直接负责融合的启动。越来越多的证据表明 HA C 端结构域也具有重要的功能作用,但这仍然不完全清楚。我们的计算研究旨在阐明 HA C 端区域内的结构和功能相互依赖性,该区域包括跨膜域 (TMD) 和细胞质尾 (CT)。特别是,我们对 TMD 在病毒膜中胆固醇浓度变化时的构象变化以及 CT 存在时的调制感兴趣。我们使用基于原子分子动力学模拟的自由能计算,在不同条件下表征了 TMD 从直的到倾斜的亚稳态之间的转变。我们发现 CT 的存在对于实现稳定的、高度倾斜的 TMD 构象是必不可少的。正如我们所证明的,这种 HA 膜锚的构象可能支持其外域的倾斜运动,这需要在膜融合过程中执行。这一发现突出了迄今为止相对被忽视的 CT 区域的功能作用。