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Mice lacking G0S2 are lean and cold-tolerant

机译:缺乏G0S2的小鼠瘦而耐寒

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G0/G1 switch gene 2 (G0S2) is a protein that was first identified in a search for lymphocyte G0/G1 switch genes. A direct role for G0S2 in cell cycle regulation has proven elusive. Yet, there is prior evidence for G0S2 functioning in tumor suppression, immune regulation and lipolysis. To explore definitively G0S2 functions, mice lacking G0S2 were generated and characterized. G0S2-/- mice were born at a Mendelian ratio and were phenotypically normal, with the exception of a possible lactation defect. G0S2-/- female mice carried viable pups to term, but could not typically sustain them beyond 48 h. G0S2 is shown here to be most highly expressed in adipose tissue. It is also expressed in liver, skeletal muscle, lung, ventricles of the heart, and components of the kidney. G0S2 loss significantly decreased relative body weight gain as compared with wild-type (WT) (G0S2+/+) mice, with a significant decrease in gonadal fat pad weight and a significant increase in serum glycerol levels. This decreased relative body weight gain is not associated with a significant decrease in food intake or increase in activity of G0S2-/- mice. In fact, G0S2 -/- mice were significantly less active at night than G0S2 +/+ mice. When fed with a high fat diet (45% fat diet), G0S2 loss did not prevent diet-induced obesity in mice. Intriguingly, G0S2 loss improved acute cold tolerance, augmenting expression of genes involved in thermogenesis. In summary, in vivo roles for G0S2 were found in lactation, energy balance, and thermogenesis. This study provides a basis for tumor suppressive effects of G0S2 by regulating lipolysis.
机译:G0 / G1转换基因2(G0S2)是一种蛋白质,最初是在寻找淋巴细胞G0 / G1转换基因时发现的。 G0S2在细胞周期调控中的直接作用已被证明难以捉摸。然而,先前的证据表明G0S2在肿瘤抑制,免疫调节和脂解中起作用。为了确定地探索G0S2的功能,生成并表征了缺少G0S2的小鼠。 G0S2-/-小鼠以孟德尔比率出生,表型正常,除了可能的泌乳缺陷。 G0S2-/-雌性小鼠携带有活力的幼仔至足月,但通常不能维持它们超过48小时。 G0S2在这里显示在脂肪组织中最高度表达。它也表达于肝,骨骼肌,肺,心脏的心室和肾脏的成分中。与野生型(WT)(G0S2 + / +)小鼠相比,G0S2损失显着降低了相对体重增加,性腺脂肪垫重量显着降低,血清甘油水平显着提高。相对体重增加的减少与食物摄入量的显着减少或G0S2-/-小鼠活动的增加无关。实际上,G0S2-/-小鼠的夜间活动明显低于G0S2 + / +小鼠。当以高脂肪饮食(45%脂肪饮食)喂养时,G0S2的损失并不能防止小鼠饮食引起的肥胖。有趣的是,G0S2缺失改善了急性耐寒性,增加了与生热有关的基因的表达。总之,在泌乳,能量平衡和生热中发现了G0S2的体内作用。该研究通过调节脂解为G0S2的肿瘤抑制作用提供了基础。

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