PofoliaShared via Pofolia

Cells· 2026Q1

HOPS and Vps13 Have Antagonistic Roles in Regulating Lipid Droplet Morphology

Jie Wang, Saidaiguli Abulimiti, Jingping Chen, Xinping Zheng et al.

Short summary

The HOPS complex promotes normal lipid droplet morphology, while Vps13 proteins counteract this effect, as demonstrated by a genetic screen identifying mutations rescuing HOPS-deficient phenotypes.

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

Key points

  • A genetic screen identified the HOPS complex as essential for normal lipid droplet morphology.
  • Mutations in HOPS subunits resulted in abnormal lipid droplet shapes.
  • Deleting Vps13 paralogs (Vps1301, Vps1302) rescued abnormal lipid droplet morphology observed in HOPS-deficient cells.
  • HOPS and Vps13 proteins appear to have opposing roles in regulating lipid droplet morphology.

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

Abstract

Lipid droplets are dynamic organelles that store neutral lipids (mostly triacylglycerols and sterol esters) and are bound by a single phospholipid monolayer. The formation and breakdown of the droplets are important for cellular metabolism; however, the molecular mechanisms regulating their biogenesis and turnover are still obscure. In this study, we used Erg6-yeGFP as a lipid droplet marker, isolated 1100 temperature-sensitive mutants, and observed lipid droplet morphology in these mutants by fluorescence microscopy. Six mutants with abnormal lipid droplet morphology were obtained and next-generation sequencing identified responsible mutations in genes encoding subunits of HOPS complex or its binding partner Ypt7. Therefore, the genetic screen indicated that the HOPS complex plays a critical role in maintaining lipid droplet morphology. In the absence of Vps11, vacuoles were fragmented with dot-like structures and degradation of lipid droplet surface protein Erg6 (under glucose starvation condition) decreased dramatically. A genetic screen for mutations that could rescue the abnormal lipid droplet morphology in Δvps11 by fluorescence microscopy identified two independent mutations in vps1302. Vps1301 and Vps1302 are paralogs that function as intermembrane lipid transfer proteins. Deletion of either vps1301 or vps1302 rescued the abnormal lipid droplet morphology in Δvps11 as well.

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

TakeawaysIn the app
Ask the paperIn the app

The rest is in the Pofolia app

Takeaways and questions to the paper; new summaries every day for your field. Free.

Sign in on the web to open

Field: Biochemistry (Biochemistry, Genetics and Molecular Biology)

BiochemistryBiochemistry, Genetics and Molecular Biology