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Methods for making and observing model lipid droplets.
Gandhi, Sonali A; Parveen, Shahnaz; Alduhailan, Munirah; Tripathi, Ramesh; Junedi, Nasser; Saqallah, Mohammad; Sanders, Matthew A; Hoffmann, Peter M; Truex, Katherine; Granneman, James G; Kelly, Christopher V.
Afiliação
  • Gandhi SA; Department of Physics and Astronomy, Wayne State University, Detroit, MI, USA 48201.
  • Parveen S; Department of Physics and Astronomy, Wayne State University, Detroit, MI, USA 48201.
  • Alduhailan M; Department of Physics and Astronomy, Wayne State University, Detroit, MI, USA 48201.
  • Tripathi R; Department of Physics and Astronomy, Wayne State University, Detroit, MI, USA 48201.
  • Junedi N; Department of Physics and Astronomy, Wayne State University, Detroit, MI, USA 48201.
  • Saqallah M; Department of Physics and Astronomy, Wayne State University, Detroit, MI, USA 48201.
  • Sanders MA; Center for Molecular Medicine and Genetics, School of Medicine, Wayne State University, Detroit, MI, USA 40201.
  • Hoffmann PM; Center for Integrative Metabolic and Endocrine Research, School of Medicine, Wayne State University, Detroit, MI USA 48201.
  • Truex K; Department of Physics and Astronomy, Wayne State University, Detroit, MI, USA 48201.
  • Granneman JG; Physical Sciences Department, Embry-Riddle Aeronautical University, Daytona Beach, FL, USA 32114.
  • Kelly CV; Department of Physics, United States Naval Academy, Annapolis, MD, USA 21402.
bioRxiv ; 2023 Jul 19.
Article em En | MEDLINE | ID: mdl-37503132
ABSTRACT
The mechanisms by which the lipid droplet (LD) membrane is remodeled in concert with the activation of lipolysis incorporate a complex interplay of proteins, phospholipids, and neutral lipids. Model LDs (mLDs) provide an isolated, purified system for testing the mechanisms by which the droplet composition, size, shape, and tension affects triglyceride metabolism. Described here are methods of making and testing mLDs ranging from 0.1 to 40 µm diameter with known composition. Methods are described for imaging mLDs with high-resolution microscopy during buffer exchanges for the measurement of membrane binding, diffusion, and tension via fluorescence correlation spectroscopy (FCS), fluorescence recovery after photobleaching (FRAP), fluorescence lifetime imaging microscopy (FLIM), atomic force microscopy (AFM), pendant droplet tensiometry, and imaging flow cytometry. These complementary, cross-validating methods of measuring LD membrane behavior reveal the interplay of biophysical processes in triglyceride metabolism.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article