Lei Zhangmengxue, Wei Wendi, Wang Mingyu, Xu Yun, Bai Lei, Gao Ying, Jiang Congwei, Li Fangxia, Tian Na, Kuang Linlin, Zhu Ruiliang, Pang Gang, Lan Ke, Feng Suihan, Liang Xiaozhen
University of Chinese Academy of Sciences, Shanghai Institute of Immunity and Infection, Chinese Academy of Sciences, Shanghai, China.
State Key Laboratory of Virology, Modern Virology Research Center, College of Life Sciences, Wuhan University, Wuhan, China.
PLoS Pathog. 2025 May 15;21(5):e1013146. doi: 10.1371/journal.ppat.1013146. eCollection 2025 May.
Many viruses alter the phospholipid metabolism to benefit their own life cycles. It is unclear whether the host or the virus is driving phospholipid metabolism reprogramming, and how virus infections are affected by the metabolic status. Here we report that phospholipase A2 inhibitor and LY6/PLAUR domain-containing protein (PINLYP) inhibits Kaposi's sarcoma-associated herpesvirus (KSHV) lytic reactivation by remodeling phospholipid metabolism and especially triacylglycerol (TAG) biosynthesis. PINLYP deficiency led to increased phospholipase cPLA2α activity, cPLA2α-mediated AKT phosphorylation, and KSHV lytic reactivation. Analyses of RNA-seq and lipidomics reveal that PINLYP regulates long-chain fatty acid CoA ligase ACSL5 expression and TAG production. The inhibition of ACSL5 activity or TAG biosynthesis suppresses AKT phosphorylation and KSHV lytic reactivation, restoring the phenotype of PINLYP deficiency. This finding underscores the pivotal role of PINLYP in remodeling phospholipid metabolism and promoting viral latency, which sheds new light on how phospholipid metabolism is regulated by herpesvirus and provides a potential target for controlling chronic herpesvirus infection.
许多病毒会改变磷脂代谢以利于自身的生命周期。目前尚不清楚是宿主还是病毒在驱动磷脂代谢重编程,以及病毒感染如何受到代谢状态的影响。在此我们报告,磷脂酶A2抑制剂和含LY6/PLAUR结构域蛋白(PINLYP)通过重塑磷脂代谢,特别是三酰甘油(TAG)生物合成,来抑制卡波西肉瘤相关疱疹病毒(KSHV)的裂解再激活。PINLYP缺陷导致磷脂酶cPLA2α活性增加、cPLA2α介导的AKT磷酸化以及KSHV裂解再激活。RNA测序和脂质组学分析表明,PINLYP调节长链脂肪酸辅酶A连接酶ACSL5的表达和TAG生成。抑制ACSL5活性或TAG生物合成可抑制AKT磷酸化和KSHV裂解再激活,恢复PINLYP缺陷的表型。这一发现强调了PINLYP在重塑磷脂代谢和促进病毒潜伏方面的关键作用,为疱疹病毒如何调节磷脂代谢提供了新的见解,并为控制慢性疱疹病毒感染提供了一个潜在靶点。