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The KRAB Zinc Finger Protein RSL1 Modulates Sex-Biased Gene Expression in Liver and Adipose Tissue To Maintain Metabolic Homeostasis

机译:KRAB锌指蛋白RSL1调节肝和脂肪组织中的性别偏向基因表达,以维持代谢稳态。

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Krüppel-associated box zinc finger proteins (KRAB-ZFPs) are a huge family of vertebrate-specific repressors that modify gene expression in an epigenetic manner. Despite a well-defined repression mechanism, few biological roles or gene targets of KRAB-ZFP are known. Regulator of sex-limitation 1 (RSL1) is a mouse KRAB-ZFP that enforces male-predominant expression in the liver, affecting body mass and pubertal timing. Here we show that female but not male Rsl1?/? mice gain more weight than wild-type mice on a high-fat diet (HFD) and that key liver and white adipose tissue (WAT) metabolic genes are altered in both Rsl1?/? sexes in response to dietary stress. Expression profiling of Rsl1-sensitive genes in liver and WAT indicates that RSL1 accentuates sex-biased gene expression in liver but greatly diminishes it in WAT. RSL1 expression solely in liver is sufficient to limit diet-induced weight gain and suppress lipogenic genes in WAT, indicating that RSL1 balances metabolism via liver-to-adipose-tissue communication. RSL1's effects on adult physiology exemplify a significant modulatory capacity of KRAB-ZFPs, in the absence of which there is widespread metabolic dysregulation. This ability to buffer against gene expression noise, coupled with extensive individual genetic variation, highlights the enormous potential of KRAB-Zfp genes as candidate risk factors for complex diseases.
机译:克鲁勃相关框锌指蛋白(KRAB-ZFPs)是一大类脊椎动物特异性阻遏物,它们以表观遗传方式修饰基因表达。尽管有明确的阻抑机制,但很少有人知道KRAB-ZFP的生物学作用或基因靶标。性别限制1(RSL1)的调节剂是小鼠KRAB-ZFP,可在肝脏中强制男性表达,影响体重和青春期。在这里,我们显示,在高脂饮食(HFD)下,雌性而不是雄性的 Rsl1 ?/?小鼠比野生型小鼠体重增加,而且关键的肝脏和白色小鼠的体重增加饮食压力对 Rsl1 ?/?男女的脂肪组织(WAT)代谢基因都有影响。肝脏和WAT中 Rsl1 敏感基因的表达谱表明,RSL1增强了肝脏中性别偏向的基因表达,但在WAT中大大降低了性别偏向的基因表达。仅在肝脏中的RSL1表达就足以限制饮食引起的体重增加并抑制WAT中的脂肪生成基因,这表明RSL1通过肝脏与脂肪组织的通讯来平衡新陈代谢。 RSL1对成人生理的影响体现了KRAB-ZFPs的显着调节能力,在没有这种调节能力的情况下,存在广泛的代谢失调。这种缓冲基因表达噪音的能力,再加上广泛的个体遗传变异,凸显了 KRAB-Zfp 基因作为复杂疾病候选危险因素的巨大潜力。

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