HSV-1 UL42 and UL47 hijack cellular nucleotide synthetic enzyme CAD to promote lytic replication
Chao Qin, Xinchi Xie, Taolin Xie, Zhenhao An, Woo-Chang Chung, Pinghui FengABSTRACT
Cellular metabolic enzymes are well defined for their roles in metabolism, and their function beyond metabolism is poorly defined. Here, we report that herpes simplex virus 1 (HSV-1) couples evasion of the inflammatory response to metabolic activation to promote lytic replication. Specifically, HSV-1 activates carbamoyl-phosphate synthetase, aspartate transcarbamoylase, and dihydroorotase (CAD), which catalyzes the rate-limiting steps of
IMPORTANCE
Host immune defense and cellular metabolism are two fundamental processes that shape viral pathogenesis. Here, we revealed that herpes simplex virus 1 (HSV-1) activates a nucleotide synthetic enzyme not only to support nucleotide synthesis but also to exploit its unconventional activity for immune evasion and metabolic reprogramming, highlighting a potential therapeutic target.