自噬
细胞生物学
基因敲除
生物
胆固醇
病毒复制
溶酶体
内质网
低密度脂蛋白受体
重编程
脂滴
病毒
病毒学
生物化学
脂蛋白
细胞
酶
细胞凋亡
作者
Lifeng Chen,J Zhang,Weibin Xu,Jiayi Chen,Yujun Tang,Si Xiong,Yaolan Li,Hong Zhang,Man‐Mei Li,Zhong Liu
标识
DOI:10.1038/s41467-024-50711-4
摘要
Abstract Respiratory syncytial virus (RSV) hijacks cholesterol or autophagy pathways to facilitate optimal replication. However, our understanding of the associated molecular mechanisms remains limited. Here, we show that RSV infection blocks cholesterol transport from lysosomes to the endoplasmic reticulum by downregulating the activity of lysosomal acid lipase, activates the SREBP2–LDLR axis, and promotes uptake and accumulation of exogenous cholesterol in lysosomes. High cholesterol levels impair the VAP-A-binding activity of ORP1L and promote the recruitment of dynein–dynactin, PLEKHM1, or HOPS VPS39 to Rab7–RILP, thereby facilitating minus-end transport of autophagosomes and autolysosome formation. Acidification inhibition and dysfunction of cholesterol-rich lysosomes impair autophagy flux by inhibiting autolysosome degradation, which promotes the accumulation of RSV fusion protein. RSV-F storage is nearly abolished after cholesterol depletion or knockdown of LDLR. Most importantly, the knockout of LDLR effectively inhibits RSV infection in vivo. These findings elucidate the molecular mechanism of how RSV co-regulates lysosomal cholesterol reprogramming and autophagy and reveal LDLR as a novel target for anti-RSV drug development.
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