bioRxiv · 10.1101/2024.09.17.613543
Cholesterol binding to VCAM-1 promotes vascular inflammation
Abstract
Hypercholesterolemia has long been implicated in endothelial cell (EC) dysfunction, but the mechanisms by which excess cholesterol causes vascular pathology are incompletely understood. Here we used a cholesterol-mimetic probe to map cholesterol-protein interactions in primary human ECs and discovered that cholesterol binds to and stabilizes the adhesion molecule VCAM-1. We show that accessible plasma membrane (PM) cholesterol in ECs is acutely responsive to inflammatory stimuli and that the nonvesicular cholesterol transporter Aster-A regulates VCAM-1 stability in activated ECs by controlling the size of this pool. Deletion of Aster-A in ECs increases VCAM-1 protein, promotes immune cell recruitment to vessels, and impairs pulmonary immune homeostasis. Conversely, depleting cholesterol from the endothelium in vivo dampens VCAM-1 induction in response to inflammatory stimuli. These findings identify cholesterol binding to VCAM-1 as a key step during EC activation and provide a biochemical explanation for the ability of excess membrane cholesterol to promote immune cell recruitment to the endothelium.
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Kennelly, J. P., Xiao, X., Gao, Y., Kim, S., Hong, S.-G., Villanueva, M., Ferrari, A., Vanharanta, L., Nguyen, A., Nagari, R. T., Burton, N. R., Tol, M. J., Becker, A. P., Lee, M. J., Ikonen, E., Backus, K., Mack, J. J., Tontonoz, P.. 2024-09-18. Cholesterol binding to VCAM-1 promotes vascular inflammation. https://doi.org/10.1101/2024.09.17.613543
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