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[Preprint]. 2023 Jul 10:2023.07.07.548168. [Version 1] doi: 10.1101/2023.07.07.548168

Aster-dependent non-vesicular transport facilitates dietary cholesterol uptake

Alessandra Ferrari, Emily Whang, Xu Xiao, John P Kennelly, Beatriz Romartinez-Alonso, Julia J Mack, Thomas Weston, Kai Chen, Youngjae Kim, Marcus J Tol, Lara Bideyan, Alexander Nguyen, Yajing Gao, Liujuan Cui, Alexander H Bedard, Jaspreet Sandhu, Stephen D Lee, Louise Fairall, Kevin J Williams, Wenxin Song, Priscilla Munguia, Robert A Russell, Martin G Martin, Michael E Jung, Haibo Jiang, John WR Schwabe, Stephen G Young, Peter Tontonoz
PMCID: PMC10369906  PMID: 37503112

Abstract

Intestinal cholesterol absorption is an important contributor to systemic cholesterol homeostasis. Niemann-Pick C1 Like 1 (NPC1L1), the target of the drug ezetimibe (EZ), assists in the initial step of dietary cholesterol uptake. However, how cholesterol moves downstream of NPC1L1 is unknown. Here we show that Aster-B and Aster-C are critical for non-vesicular cholesterol movement in enterocytes, bridging NPC1L1 at the plasma membrane (PM) and ACAT2 in the endoplasmic reticulum (ER). Loss of NPC1L1 diminishes accessible PM cholesterol in enterocytes and abolishes Aster recruitment to the intestinal brush border. Enterocytes lacking Asters accumulate cholesterol at the PM and display evidence of ER cholesterol depletion, including decreased cholesterol ester stores and activation of the SREBP-2 transcriptional pathway. Aster-deficient mice have impaired cholesterol absorption and are protected against diet-induced hypercholesterolemia. Finally, we show that the Aster pathway can be targeted with a small molecule inhibitor to manipulate dietary cholesterol uptake. These findings identify the Aster pathway as a physiologically important and pharmacologically tractable node in dietary lipid absorption.

One-Sentence Summary

Identification of a targetable pathway for regulation of dietary cholesterol absorption

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