Cholesterol-rich lipid rafts mediate endocytosis as a common pathway for respiratory syncytial virus entry into different host cells
作者:Anqi Zhou, Bao Xue, Jiayi Zhong, Junjun Liu, Ran Peng, Fan Wang, Yuan Zhou, Jielin Tang, Qi Yang, Xinwen Chen · 发表于:Microbiology Spectrum · 年份:2025 · DOI:10.1128/spectrum.01192-25 · 被引用次数:2 · 研究领域:Respiratory viral infections research、Neonatal Respiratory Health Research、Lipid Membrane Structure and Behavior
ABSTRACT The entry of respiratory syncytial virus (RSV) into host cells is a multifaceted process involving viral adsorption, interaction of viral glycoproteins with cellular receptors, and utilization of various invasion pathways. Despite these complexities, our understanding of potential common pathways facilitating RSV entry remains limited. In this study, we demonstrate that endocytosis via cholesterol-rich lipid rafts is a common mechanism utilized by various RSV genotypes in different cell types. Specifically, RSV strains A2, B18537, and the currently epidemic ON1 strains all employ this mechanism to gain entry into human cell lines, including HEp-2, A549, and primary human bronchial epithelial cells. Cellular receptors binding to viral fusion glycoprotein were recruited to cholesterol-rich lipid rafts, leading to actin rearrangement and endosome formation, which facilitated viral entry. Furthermore, reducing cholesterol levels using methyl-β-cyclodextrin, simvastatin, or terbinafine inhibited RSV infection. Notably, combining simvastatin with an RSV fusion protein inhibitor (AK0529) resulted in enhanced antiviral effects both in vitro and in vivo . These findings expand our understanding of viral-host interaction and provide a novel therapeutic strategy for treating RSV infection. IMPORTANCE Respiratory syncytial virus (RSV) is an important human pathogen that causes severe bronchiolitis and pneumonia in infants and young children. RSV entry host cells involve generall...