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Veterinary Research· 2026Q1

Bovine viral diarrhea virus (BVDV) relies on cellular lipid droplet biogenesis and lipolysis to provide energy for viral replication

Xiaoran Xiong, Yi Liu, Yaohong Zhu, Jiufeng Wang et al.

Short summary

Bovine viral diarrhea virus (BVDV) exploits host cell lipid droplets (LDs) by enhancing their formation and accelerating their breakdown to release fatty acids, which are then used to fuel viral replication.

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Key points

  • BVDV increases cellular lipid droplet (LD) accumulation via enhanced lipid synthesis and fatty acid uptake.
  • LDs release free fatty acids (FFAs) through ATGL/HSL-dependent lipolysis, which are then oxidized in mitochondria.
  • Increased contact between LDs and mitochondria accelerates FFA release and oxidation, promoting viral replication.
  • The BVDV core protein targets LDs, recruits lipolytic enzymes (ATGL), and links LDs to mitochondria.

AI-generated from the title and abstract; the full text is not read.

Abstract

Abstract Bovine viral diarrhea virus (BVDV), one of the most important viral pathogens in cattle, causes serious economic losses due to immunosuppression and persistent infections. Previous studies have shown a tight connection between virus infection and lipid metabolism, particularly in the formation and degradation of lipid droplets (LDs). However, the pathogenic mechanism of BVDV infection and the molecular mechanisms by which viral proteins reprogram lipid metabolism remain unclear. We found that BVDV increased cellular LD accumulation by enhancing the production of new lipids, accelerating exogenous fatty acid uptake, and elevating diacylglycerol acyltransferase (DGAT)-dependent esterification of fatty acids (FAs). The generated LDs subsequently release free fatty acids (FFAs) via adipose triglyceride lipase/hormone-sensitive lipase (ATGL/HSL)-dependent lipolysis. This lipolysis-dependent release of FFAs is accelerated and transferred to mitochondria for oxidation by increasing contact between LDs and mitochondria, thereby promoting viral replication. Furthermore, BVDV core protein targets the surface of LDs, increasing and recruiting fatty acid synthase (FASN) and ATGL to promote LD mobilization. Meanwhile, the core protein interacts with mitochondria, linking mitochondria to LDs and facilitating the release of FAs for efficient fatty acid oxidation. Collectively, this study demonstrates that the BVDV core protein regulates cellular lipid metabolism to support BVDV replication, contributing to understanding the pathogenetic mechanisms by which BVDV interacts with host cells.

The authors' abstract, as published at the source. Veterinary Research, 2026 · DOI ↗

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BiochemistryBiochemistry, Genetics and Molecular Biology