Herpes Simplex Type 1 UL43 Multiple Membrane-Spanning Protein Increases Energy Metabolism in Host Cells through Interacting with ARL2

Author:

Deng Jianshan,Zhong Zhiying,Geng Chengxu,Dai Zhenning,Zheng WeihanORCID,Li Ziyue,Yan Zi,Yang Jiaxin,Deng Wenfeng,Tan Wei,Sun Hanxiao,Li ShiyuORCID

Abstract

Non-essential proteins for viral replication affect host cell metabolism, while the function of the UL43 protein of herpes simplex virus 1 (HSV-1) is not clear. Herein, we performed a comprehensive microarray analysis of HUVEC cells infected with HSV-1 and its UL43-deficient mutant and found significant variation in genes associated with cellular energy metabolic pathways. The localization of UL43 protein in host cells and how it affects cellular energy metabolism pathways were further investigated. Internalization analysis showed that the UL43 protein could be endocytosis-mediated by YPLF motif (aa144–147) and localized to mitochondria. At the same time, more ATP was produced by coupling with mitochondrial small G protein ARF-like 2 (ARL2) GTPase, which triggered the phosphorylation of ANT1 (SLC25A4) to affect the opening degree of mitochondrial permeability transition pore (mPTP), and significantly promoted the aerobic oxidation and oxidative phosphorylation of glucose. Our study shows that UL43 mediates the improvement of host cell metabolism after HSV-1 infection. Additionally, UL43 protein could be a valuable ATP-stimulating factor for mammalian cells.

Funder

National Natural Science Foundation of China

Guangdong Basic and Applied Basic Research Foundation

China Postdoctoral Science Foundation

Yingcai Project in Guangzhou Development District

Scientific research project of Traditional Chinese Medicine Bureau of Guangdong Province

President Foundation of The Third Affiliated Hospital of Southern Medical University

Guangxi Key Laboratory of Birth Defects Research and Prevention

Publisher

MDPI AG

Subject

General Medicine

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