产热
分解代谢
脂肪组织
褐色脂肪组织
血红素
生物合成
化学
生物化学
内分泌学
生物
内科学
新陈代谢
酶
医学
作者
Dylan Duerre,Julia K. Hansen,Steven V John,Annie Jen,Noah D. Carrillo,Hoang Nam Bui,Yutong Bao,Matías Fabregat,Katherine Overmeyer,Evgenia Shishkova,Mark P. Keller,Richard A. Anderson,Vincent L. Cryns,Alan Attie,Joshua J. Coon,Jing Fan,Andrea Galmozzi
标识
DOI:10.1101/2023.11.28.568893
摘要
ABSTRACT With age, people tend to accumulate body fat and reduce energy expenditure 1 . Brown (BAT) and beige adipose tissue dissipate heat and increase energy expenditure via the activity of the uncoupling protein UCP1 and other thermogenic futile cycles 2,3 . The activity of brown and beige depots inversely correlates with BMI and age 4–11 , suggesting that promoting thermogenesis may be an effective approach for combating age-related metabolic disease 12–15 . Heme is an enzyme cofactor and signaling molecule that we recently showed to regulate BAT function 16 . Here, we show that heme biosynthesis is the primary contributor to intracellular heme levels in brown adipocytes. Inhibition of heme biosynthesis leads to mitochondrial dysfunction and reduction in UCP1. Although supplementing heme can restore mitochondrial function in heme-synthesis-deficient cells, the downregulation of UCP1 persists due to the accumulation of the heme precursors, particularly propionyl-CoA, which is a product of branched-chain amino acids (BCAA) catabolism. Cold exposure promotes BCAA uptake in BAT, and defects in BCAA catabolism in this tissue hinder thermogenesis 17 . However, BCAAs’ contribution to the TCA cycle in BAT and WAT never exceeds 2% of total TCA flux 18 . Our work offers a way to integrate current literature by describing heme biosynthesis as an important metabolic sink for BCAAs.
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