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首页> 外文期刊>Scientific reports. >Pharmacological Inhibition of c-Jun N-terminal Kinase Reduces Food Intake and Sensitizes Leptin’s Anorectic Signaling Actions
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Pharmacological Inhibition of c-Jun N-terminal Kinase Reduces Food Intake and Sensitizes Leptin’s Anorectic Signaling Actions

机译:C-JUM N-末端激酶的药理抑制减少了食物摄入并敏感瘦素的肛肠信号传导动作

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The role for c-Jun N-terminal Kinase (JNK) in the control of feeding and energy balance is not well understood. Here, by use of novel and highly selective JNK inhibitors, we investigated the actions of JNK in the control of feeding and body weight homeostasis. In lean mice, intraperitoneal (i.p.) or intracerebroventricular (i.c.v.) administration of SR-3306, a brain-penetrant and selective pan-JNK (JNK1/2/3) inhibitor, reduced food intake and body weight. Moreover, i.p. and i.c.v. administrations of SR11935, a brain-penetrant and JNK2/3 isoform-selective inhibitor, exerted similar anorectic effects as SR3306, which suggests JNK2 or JNK3 mediates aspect of the anorectic effect by pan-JNK inhibition. Furthermore, daily i.p. injection of SR3306 (7 days) prevented the increases in food intake and weight gain in lean mice upon high-fat diet feeding, and this injection paradigm reduced high-fat intake and obesity in diet-induced obese (DIO) mice. In the DIO mice, JNK inhibition sensitized leptin’s anorectic effect, and enhanced leptin-induced STAT3 activation in the hypothalamus. The underlying mechanisms likely involve the downregulation of SOCS3 by JNK inhibition. Collectively, our data suggest that JNK activity promotes positive energy balance, and the therapeutic intervention inhibiting JNK activities represents a promising approach to ameliorate diet-induced obesity and leptin resistance.
机译:C-JUM N-末端激酶(JNK)在控制喂养和能量平衡中的作用并不顺利。这里,通过使用新颖和高选择性的JNK抑制剂,我们研究了JNK在饲养和体重稳态中的作用。在瘦小鼠,腹膜内(I.P.)或脑室(I.C.V.)施用SR-3306,脑渗透和选择性PAN-JNK(JNK1 / 2/3)抑制剂,减少食物摄入和体重。此外,I.P.和i.c.v. SR11935的主导员,脑渗透剂和JNK2 / 3同种型选择性抑制剂,作为SR3306施加了类似的肛肠效应,其表明JNK2或JNK3通过PAN-JNK抑制介绍了肛肠效果的方面。此外,每日I.P.注射SR3306(7天),预防高脂饮食饲料后食物摄入量和体重增加的增加,并且这种注射范式降低了饮食诱导的肥胖(DIO)小鼠的高脂肪摄入和肥胖症。在DIO小鼠中,JNK抑制致敏的瘦素的肛肠效果,并增强了下丘脑中的瘦蛋白诱导的STAT3活化。潜在机制可能涉及通过JNK抑制来下调SOCS3。集体,我们的数据表明JNK活动促进了积极的能量平衡,抑制JNK活动的治疗干预是一种有希望改善饮食诱导的肥胖和瘦素抗性的方法。

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