Atcha Z, Cagampang F R, Stirland J A, Morris I D, Brooks A N, Ebling F J, Klingenspor M, Loudon A S
School of Biological Sciences, University of Manchester, United Kingdom.
Endocrinology. 2000 Nov;141(11):4128-35. doi: 10.1210/endo.141.11.7769.
Leptin may play a role in appetite regulation and metabolism, but its reproductive role is less clear. In photoperiodic Siberian hamsters, seasonal changes in fatness, leptin gene expression, and metabolism occur synchronously with activation or suppression of reproduction, analogous to puberty. Here, we test the hypothesis that seasonal changes in leptin secretion mediate the photoperiodic regulation of reproduction. Mature male and ovariectomized estrogen-treated female Siberian hamsters were kept in long (LD; 16 h of light, 8 h of darkness) or short days (SD; 8 h of light, 16 h of darkness) for 8 weeks, and recombinant murine leptin (15 microg/day) was infused for 2 weeks via osmotic minipumps. SD hamsters exhibited significant weight and fat losses, reduced serum leptin and food intake, and suppressed pituitary LH concentration. Leptin did not suppress food intake over the 2-week treatment on either photoperiod, but significantly reduced fat reserves in SD hamsters. Leptin had no significant effect on pituitary LH concentrations in either sex or photoperiod or on testicular size and testosterone concentrations in males. These results suggest hamsters are more responsive to leptin on SD than on LD and that effects on food intake and fat loss can be dissociated in this species. Our data suggest that leptin does not mediate photoperiodic reproductive changes.
瘦素可能在食欲调节和新陈代谢中发挥作用,但其在生殖方面的作用尚不清楚。在具有光周期反应的西伯利亚仓鼠中,脂肪量、瘦素基因表达和新陈代谢的季节性变化与生殖的激活或抑制同步发生,类似于青春期。在此,我们检验瘦素分泌的季节性变化介导生殖光周期调节这一假说。将成熟雄性和经雌激素处理的去卵巢雌性西伯利亚仓鼠置于长日照(LD;16小时光照,8小时黑暗)或短日照(SD;8小时光照,16小时黑暗)环境中8周,并用渗透微型泵持续输注重组鼠瘦素(15微克/天)2周。短日照仓鼠体重和脂肪显著减少,血清瘦素和食物摄入量降低,垂体促黄体生成素(LH)浓度受到抑制。在两种光周期条件下,瘦素在2周的治疗过程中均未抑制食物摄入,但显著减少了短日照仓鼠的脂肪储备。瘦素对两性或两种光周期条件下的垂体LH浓度均无显著影响,对雄性仓鼠的睾丸大小和睾酮浓度也无显著影响。这些结果表明,仓鼠在短日照条件下比在长日照条件下对瘦素更敏感,且在该物种中,瘦素对食物摄入和脂肪减少的影响可以分开。我们的数据表明,瘦素并不介导光周期引起的生殖变化。