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首页> 外文期刊>Human Molecular Genetics >The voltage-gated potassium channel Kv1.3 regulates energy homeostasis and body weight.
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The voltage-gated potassium channel Kv1.3 regulates energy homeostasis and body weight.

机译:电压门控钾通道Kv1.3调节能量稳态和体重。

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Voltage-gated potassium (Kv) channels regulate cell membrane potential and control a variety of cellular processes. Kv1.3 channels are expressed in several tissues and believed to participate in cell volume regulation, apoptosis, T cell activation and renal solute homeostasis. Examination of Kv1.3-deficient mice (Kv1.3(-/-)), generated by gene targeting, revealed a previously unrecognized role for Kv1.3 in body weight regulation. Indeed, Kv1.3(-/-) mice weigh significantly less than control littermates. Moreover, knockout mice are protected from diet-induced obesity and gain significantly less weight than littermate controls when placed on a high-fat diet. While food intake did not differ significantly between Kv1.3(-/-) and controls, basal metabolic rate, measured at rest by indirect calorimetry, was significantly higher in knockout animals. These data indicate that Kv1.3 channels may participate in the pathways that regulate body weight and that channel inhibition increases basal metabolic rate.
机译:电压门控钾(Kv)通道调节细胞膜电位并控制多种细胞过程。 Kv1.3通道在几种组织中表达,并被认为参与细胞体积调节,细胞凋亡,T细胞活化和肾溶质稳态。基因靶向产生的Kv1.3缺陷小鼠(Kv1.3(-/-))的检查揭示了Kv1.3在体重调节中以前未被认识的作用。实际上,Kv1.3(-/-)小鼠的体重明显低于对照组同窝仔。此外,基因敲除的小鼠可以避免饮食引起的肥胖,并且在食用高脂饮食时,其体重显着低于同窝仔对照。尽管Kv1.3(-/-)与对照组之间的食物摄入量没有显着差异,但通过间接量热法测定静止时基础代谢率在剔除动物中明显更高。这些数据表明,Kv1.3通道可能参与调节体重的途径,并且通道抑制作用会增加基础代谢率。

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