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首页> 外文期刊>The Biochemical Journal >Mfsd2a encodes a novel major facilitator superfamily domain-containing protein highly induced in brown adipose tissue during fasting and adaptive thermogenesis
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Mfsd2a encodes a novel major facilitator superfamily domain-containing protein highly induced in brown adipose tissue during fasting and adaptive thermogenesis

机译:Mfsd2a编码一种在禁食和适应性生热过程中高度诱导的棕色脂肪组织中高度诱导的新型主要促进子超家族域蛋白

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摘要

This study describes the identification of Mfsd2a (major facilitator superfamily domain-containing protein 2a), a novel mammalian major facilitator superfamily domain-containing protein, and an additional closely related protein, Mfsd2b. Most intron/exon junctions are conserved between the two genes, suggesting that they are derived from a common ancestor. Mfsd2a and Mfsd2b share a 12 transmembrane alpha-helical domain structure that bears greatest similarity to that of the bacterial Na(+)/melibiose symporters. Confocal microscopy demonstrated that Mfsd2a localizes to the endoplasmic reticulum. Mfsd2a is expressed in many tissues and is highly induced in liver and BAT (brown adipose tissue) during fasting. Mfsd2a displays an oscillatory expression profile in BAT and liver, consistent with a circadian rhythm. Although the basal level of Mfsd2a expression is relatively low in mouse BAT, it is greatly induced during cold-induced thermogenesis and after treatment with betaAR (beta-adrenergic receptor) agonists. This induction is totally abolished in beta-less (betaAR-deficient) mice. These findings indicate that Mfsd2a is greatly up-regulated in BAT during thermogenesis and that its induction is controlled by the betaAR signalling pathway. The observed induction of Mfsd2a expression in cultured BAT cells by dibutyryl-cAMP is in agreement with this conclusion. The present study suggests that Mfsd2a plays a role in adaptive thermogenesis.
机译:这项研究描述了Mfsd2a(主要促进者超家族结构域蛋白2a),新型哺乳动物主要促进者超家族结构域蛋白以及其他密切相关的蛋白质Mfsd2b的鉴定。大多数内含子/外显子连接在两个基因之间是保守的,这表明它们是从共同祖先衍生而来的。 Mfsd2a和Mfsd2b共有12个跨膜的α-螺旋结构域结构,与细菌Na(+)/杂合体共转运蛋白具有最大的相似性。共聚焦显微镜显示,Mfsd2a定位于内质网。 Mfsd2a在许多组织中表达,并且在禁食期间在肝脏和BAT(棕色脂肪组织)中高度诱导。 Mfsd2a在BAT和肝脏中显示振荡表达谱,与昼夜节律一致。尽管Mfsd2a表达的基础水平在小鼠BAT中相对较低,但在冷诱导的生热过程中以及在用betaAR(β-肾上腺素受体)激动剂治疗后会极大地诱导Mfsd2a的表达。这种诱导在无β(缺乏βAR)的小鼠中被完全消除。这些发现表明,Mfsd2a在生热过程中在BAT中大大上调,并且其诱导受betaAR信号传导途径控制。二丁酰-cAMP在培养的BAT细胞中观察到的Mfsd2a表达诱导与该结论一致。本研究表明,Mfsd2a在适应性生热中起作用。

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