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首页> 外文期刊>Endocrinology >Feeding and metabolism in mice lacking pituitary adenylate cyclase-activating polypeptide.
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Feeding and metabolism in mice lacking pituitary adenylate cyclase-activating polypeptide.

机译:缺乏垂体腺苷酸环化酶激活多肽的小鼠的进食和代谢。

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Disruption of the pituitary adenylate cyclase-activating polypeptide (PACAP) gene in mice has demonstrated a role for this highly conserved neuropeptide in the regulation of metabolism and temperature control. Localization of PACAP neurons within hypothalamic nuclei that regulate appetite suggest PACAP may affect feeding and thus energy balance. We used PACAP-null mice to address this question, examining both food intake and energy expenditure. PACAP-null mice were leaner than wild-type littermates due to decreased adiposity and displayed increased insulin sensitivity. The lean phenotype in the PACAP-null mice was completely eliminated if animals were fed a high-fat diet or housed near thermoneutrality (28 C). Further metabolic analyses of PACAP-null mice housed at 21 C indicated that the reduced body weight could not be explained by decreased food intake, increased metabolic rate, or increased locomotor activity. The thyroid hormone axis of PACAP-null mice was affected, because mRNA levels of hypothalamic TRH and brown adipose tissue type 2 deiodinase were reduced in PACAP-null mice housed at room temperature, and brain deiodinase activity was lower in PACAP-null mice after an acute cold challenge compared with wild-type controls. These results demonstrate that PACAP is not required for the regulation of food intake yet is necessary to maintain normal energy homeostasis, likely playing a role in central cold-sensing mechanisms.
机译:小鼠垂体腺苷酸环化酶激活多肽(PACAP)基因的破坏已证明这种高度保守的神经肽在代谢和温度控制中起着重要作用。下丘脑核内调节食欲的PACAP神经元的定位表明PACAP可能影响进食并因此影响能量平衡。我们使用无PACAP的小鼠来解决这个问题,同时检查食物摄入量和能量消耗。由于减少了肥胖,PACAP无效的小鼠比野生型同窝小鼠更瘦,并且表现出更高的胰岛素敏感性。如果给动物饲喂高脂饮食或饲养在接近热中性(28℃)的动物,则完全消除了PACAP无效小鼠的瘦型。对在21°C下饲养的无PACAP的小鼠进行的进一步代谢分析表明,体重的减少无法通过减少食物摄入,增加代谢率或增加运动能力来解释。由于在室温下饲养的PACAP无效小鼠中下丘脑TRH和2型棕色脂肪组织脱碘酶的mRNA水平降低,并且在PACAP无效小鼠中脑去碘酶活性较低,因此PACAP无效小鼠的甲状腺激素轴受到影响。与野生型对照相比,急性感冒攻击更为明显。这些结果表明,PACAP不是调节食物摄入量所必需的,而是维持正常能量稳态所必需的,可能在中央冷感机制中起作用。

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