首页> 外文期刊>Endocrinology >Sex Differences in Somatotrope Dependency on Leptin Receptors in Young Mice: Ablation of LEPR Causes Severe Growth Hormone Deficiency and Abdominal Obesity in Males
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Sex Differences in Somatotrope Dependency on Leptin Receptors in Young Mice: Ablation of LEPR Causes Severe Growth Hormone Deficiency and Abdominal Obesity in Males

机译:幼鼠瘦素受体依赖型的性别差异:LEPR消融导致男性严重的生长激素缺乏症和腹部肥胖

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Leptin receptor (LEPR) signaling controls appetite and energy expenditure. Somatotrope-specific deletion of the LEPRb signaling isoform causes GH deficiency and obesity. The present study selectively ablated Lepr exon 1 in somatotropes, which removes the signal peptide, causing the loss of all isoforms of LEPR. Excision of Lepr exon 1 was restricted to the pituitary, and mutant somatotropes failed to respond to leptin. Young(2-3mo) males showed a severe 84% reduction inserum GH levels and more than 60% reduction in immunolabeled GH cells compared with 41%-42% reductions in GH and GH cells in mutant females. Mutant males (35 d) and females (45 d) weighed less than controlsandmaleshadlower lean body mass. Image analysis of adipose tissue by magnetic resonance imaging showed that young males had a 2-fold increase in abdominal fat mass and increased adipose tissue density. Young females had only an overall increase in adipose tissue. Both males and females showed lower energy expenditure and higher respiratory quotient, indicating preferential carbohydrate burning. Young mutant males slept less and were more restless during the dark phase, whereas the opposite was true of females. The effects of a Cre-bearing sire on his non-Cre-recombinase bearing progeny are seen by increased respiratory quotient and reduced litter sizes. These studies elucidate clear sex differences in the extent to which somatotropes are dependent on all isoforms of LEPR. These results, which were not seen with the ablation of Lepr exon 17, highlight the severe consequences of ablation of LEPR in male somatotropes.
机译:瘦素受体(LEPR)信号控制食欲和能量消耗。 LEPRb信号同工型的生长激素特异性缺失导致GH缺乏和肥胖。本研究选择性地消融了促生长素中的Lepr外显子1,从而去除了信号肽,导致LEPR所有同工型的丧失。 Lepr外显子1的切除仅限于垂体,而突变型生长激素对瘦素无反应。年轻人(2-3mo)男性的血清GH水平降低了84%,免疫标记的GH细胞降低了60%以上,而突变女性的GH和GH细胞降低了41%-42%。突变的雄性(35 d)和雌性(45 d)的体重小于对照,而雄性的瘦体重更低。通过磁共振成像对脂肪组织进行的图像分析显示,年轻男性的腹部脂肪量增加了2倍,脂肪组织密度增加了。年轻女性的脂肪组织仅总体增加。男性和女性均显示出较低的能量消耗和较高的呼吸商,表明优先燃烧碳水化合物。在黑暗阶段,年轻的突变雄性的睡眠更少,更不安宁,而雌性则相反。通过增加呼吸商并减少产仔数,可以看出带有Cre的父亲对其非Cre重组酶后代的影响。这些研究阐明了生长激素在取决于LEPR的所有同工型的程度上存在明显的性别差异。这些结果,在Lepr外显子17消融中未见,突出了在男性生长激素中,LEPR消融的严重后果。

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