低温诱导小鼠腹股沟白色脂肪组织中产热特异性基因(pgc-1α, ucp1)和米色细胞(tmem26, slc27a1)的表达

Hoan Le Ngoc
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引用次数: 0

摘要

研究适应性产热反应作为保护几种代谢紊乱的策略。褐变过程是适应性产热反应的关键环节。本研究旨在探讨腹股沟白色脂肪组织(iWAT)是否为褐变过程的候选组织。将小鼠置于4℃冷室(冷组)24 h, 23℃常温条件(RT组)。结果显示,与RT组小鼠相比,冷组小鼠iWAT中产热特异性基因,包括过氧化物酶体增殖体激活受体γ辅助激活因子1- α (PGC-1α)和解偶联蛋白1 (UCP1)的mRNA表达明显上调。与此一致的是,米色细胞特异性的跨膜蛋白26 (TMEM26)基因的mRNA表达在低温暴露小鼠的iWAT中也显著高于室温小鼠的iWAT。与对照组相比,冷暴露小鼠iWAT中溶质载体家族27成员1 (SLC27A1)基因的表达有增加的趋势。SLC27A1是编码米色细胞蛋白的另一个基因。然而,这一变化在两组之间没有显著差异。这些数据表明,iWAT是响应冷诱导产热和褐变过程的重要组织。因此,iWAT是进一步研究白色脂肪组织冷诱导产热反应机制的一个有希望的候选者。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
COLD INDUCES EXPRESSION OF GENES SPECIFIC TO THERMOGENESIS (PGC-1α, UCP1) AND BEIGE CELLS (TMEM26, SLC27A1) IN MOUSE INGUINAL WHITE ADIPOSE TISSUE
Studying adaptive thermogenic responses as being a strategy to protect against several metabolic disorders. The browning process is a crucial point of adaptive thermogenic responses. The present study was carried out to examine whether inguinal white adipose tissue (iWAT) is a candidate for the browning process. Mice were caged in a 4 °C cold chamber (Cold group) for 24 hours and 23 °C room temperature condition (RT group). The result showed that mRNA expression of genes specific to thermogenesis, including peroxisome proliferator-activated receptor gamma coactivator 1-alpha (PGC-1α) and uncoupling protein 1 (UCP1), was markedly upregulated in iWAT of the mice in the Cold group compared to the mice in the RT group. Consistent with this, mRNA expression of the Transmembrane protein 26 (TMEM26) gene, specific to beige cells, was also significantly higher in the iWAT of the cold exposed mice than that in the iWAT of the mice housed at room temperature. Expression of solute carrier family 27member 1 (SLC27A1) gene, another gene coding for a protein of beige cells, was tendency to increase in iWAT of the cold exposed mice compared with that in iWAT of the control mice. However, this change was not significantly differed between the two groups. These data demonstrate that iWAT is an important tissue responding to cold-induced thermogenesis and browning process. Thus, iWAT is a promising candidate for further studies on the mechanism of cold-induced thermogenic responses in white adipose tissues.
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