| Literature DB >> 34031595 |
David Wu1, Devin L Harrison1,2,3, Teodora Szasz4, Chih-Fan Yeh5, Tzu-Pin Shentu1, Angelo Meliton1, Ru-Ting Huang1, Zhengjie Zhou1, Gökhan M Mutlu1, Jun Huang6,7, Yun Fang8,9.
Abstract
Single-cell motility is spatially heterogeneous and driven by metabolic energy. Directly linking cell motility to cell metabolism is technically challenging but biologically important. Here, we use single-cell metabolic imaging to measure glycolysis in individual endothelial cells with genetically encoded biosensors capable of deciphering metabolic heterogeneity at subcellular resolution. We show that cellular glycolysis fuels endothelial activation, migration and contraction and that sites of high lactate production colocalize with active cytoskeletal remodelling within an endothelial cell. Mechanistically, RhoA induces endothelial glycolysis for the phosphorylation of cofilin and myosin light chain in order to reorganize the cytoskeleton and thus control cell motility; RhoA activation triggers a glycolytic burst through the translocation of the glucose transporter SLC2A3/GLUT3 to fuel the cellular contractile machinery, as demonstrated across multiple endothelial cell types. Our data indicate that Rho-GTPase signalling coordinates energy metabolism with cytoskeleton remodelling to regulate endothelial cell motility.Entities:
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Year: 2021 PMID: 34031595 PMCID: PMC8362837 DOI: 10.1038/s42255-021-00390-y
Source DB: PubMed Journal: Nat Metab ISSN: 2522-5812