LXR-dependent enhancer activation regulates the temporal organization of the liver’s response to refeeding leading to lipogenic gene overshoot

Author:

Korenfeld Noga,Gorbonos Tali,Romero Florian Maria C.,Rotaro Dan,Goldberg Dana,Radushkevitz-Frishman Talia,Charni-Natan Meital,Bar-Shimon Meirav,Cummins Carolyn L.ORCID,Goldstein IdoORCID

Abstract

Transitions between the fed and fasted state are common in mammals. The liver orchestrates adaptive responses to feeding/fasting by transcriptionally regulating metabolic pathways of energy usage and storage. Transcriptional and enhancer dynamics following cessation of fasting (refeeding) have not been explored. We examined the transcriptional and chromatin events occurring upon refeeding in mice, including kinetic behavior and molecular drivers. We found that the refeeding response is temporally organized with the early response focused on ramping up protein translation while the later stages of refeeding drive a bifurcated lipid synthesis program. While both the cholesterol biosynthesis and lipogenesis pathways were inhibited during fasting, most cholesterol biosynthesis genes returned to their basal levels upon refeeding while most lipogenesis genes markedly overshoot above pre-fasting levels. Gene knockout, enhancer dynamics, and ChIP-seq analyses revealed that lipogenic gene overshoot is dictated by LXRα. These findings from unbiased analyses unravel the mechanism behind the long-known phenomenon of refeeding fat overshoot.

Funder

Israel Science Foundation

Canadian Institutes of Health Research

International Development Research Centre

Azrieli Foundation

H2020 European Research Council

Publisher

Public Library of Science (PLoS)

Reference82 articles.

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