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Gene Expression Analysis of Endothelial Cells Exposed to Shear Stress Using Multiple Parallel-plate Flow Chambers
Published on: October 21, 2018
Fluid Shear Stress Drives Endothelial Glycolytic Reprogramming via an AIBP/VEGF Axis
Linhua Zhou1,2, Xiaowu He2, Yaowu Liu2
1Orient Vascular Innovation Institute, University of Shanghai for Science and Technology, Shanghai 200093, China.
Abstract:
Hemodynamic shear stress is a critical mechanical determinant of endothelial homeostasis, yet the mechanosensitive pathways governing metabolic reprogramming remain incompletely understood. Apolipoprotein A-I binding protein (AIBP) regulates cholesterol metabolism, but its role in endothelial mechanotransduction is unknown. Here, we investigated how shear stress modulates AIBP expression to direct human brain microvascular endothelial cell (HBMEC) function via vascular endothelial growth factor (VEGF)-dependent glycolytic reprogramming. HBMECs were subjected to laminar shear stress (1 Pa) with or without the mechanosensitive channel inhibitor GsMTx4. We utilized loss-of-function approaches (shRNA targeting AIBP and VEGF), metabolic assays (metabolite quantification, Western blotting of glycolytic enzymes), and functional assays (EdU proliferation, Transwell migration, tube formation, and apoptosis analysis). Laminar shear stress significantly downregulated AIBP levels via mechanosensitive channel activation. Downregulation or genetic silencing of AIBP stabilized HIF-1α, relieving constitutive repression of VEGF and activating downstream Akt and ERK1/2 signaling. This axis drove glycolytic reprogramming-evidenced by coordinated upregulation of GLUT1, HK2, PFK-A, PKM2, PTBP1, and LDHA, and accumulation of L(+)-lactate and pyruvate-which enhanced proliferation, migration, and tube formation while attenuating apoptosis. Pharmacological inhibition with GsMTx4 prevented shear-induced AIBP downregulation and subsequent metabolic activation. Crucially, simultaneous knockdown of VEGF abolished the glycolytic and phenotypic shifts induced by AIBP deficiency. AIBP functions as a novel mechanosensitive effector in endothelial cells. Shear stress-induced, channel-dependent downregulation of AIBP orchestrates endothelial activation strictly through VEGF-mediated glycolytic reprogramming, identifying a key mechano-metabolic coupling mechanism in vascular regulation.
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