Bates Sarah H, Stearns Walter H, Dundon Trevor A, Schubert Markus, Tso Annette W K, Wang Yongping, Banks Alexander S, Lavery Hugh J, Haq Asma K, Maratos-Flier Eleftheria, Neel Benjamin G, Schwartz Michael W, Myers Martin G
Research Division, Joslin Diabetes Center, Harvard Medical School, 1 Joslin Place, Boston, Massachusetts 02215, USA.
Nature. 2003 Feb 20;421(6925):856-9. doi: 10.1038/nature01388.
Secretion of leptin from adipocytes communicates body energy status to the brain by activating the leptin receptor long form (LRb). LRb regulates energy homeostasis and neuroendocrine function; the absence of LRb in db/db mice results in obesity, impaired growth, infertility and diabetes. Tyr 1138 of LRb mediates activation of the transcription factor STAT3 during leptin action. To investigate the contribution of STAT3 signalling to leptin action in vivo, we replaced the gene encoding the leptin receptor (lepr) in mice with an allele coding for a replacement of Tyr 1138 in LRb with a serine residue (lepr(S1138)) that specifically disrupts the LRb-STAT3 signal. Here we show that, like db/db mice, lepr(S1138) homozygotes (s/s) are hyperphagic and obese. However, whereas db/db mice are infertile, short and diabetic, s/s mice are fertile, long and less hyperglycaemic. Furthermore, hypothalamic expression of neuropeptide Y (NPY) is elevated in db/db mice but not s/s mice, whereas the hypothalamic melanocortin system is suppressed in both db/db and s/s mice. LRb-STAT3 signalling thus mediates the effects of leptin on melanocortin production and body energy homeostasis, whereas distinct LRb signals regulate NPY and the control of fertility, growth and glucose homeostasis.
脂肪细胞分泌的瘦素通过激活长型瘦素受体(LRb)将身体能量状态传递给大脑。LRb调节能量平衡和神经内分泌功能;db/db小鼠缺乏LRb会导致肥胖、生长受损、不育和糖尿病。LRb的酪氨酸1138在瘦素作用过程中介导转录因子STAT3的激活。为了研究STAT3信号在体内对瘦素作用的贡献,我们用一个编码将LRb中的酪氨酸1138替换为丝氨酸残基(lepr(S1138))的等位基因替换了小鼠中编码瘦素受体(lepr)的基因,该替换特异性地破坏了LRb-STAT3信号。我们在此表明,与db/db小鼠一样,lepr(S1138)纯合子(s/s)食欲亢进且肥胖。然而,db/db小鼠不育、体型短小且患有糖尿病,而s/s小鼠可育、体型较长且血糖升高程度较低。此外,db/db小鼠下丘脑神经肽Y(NPY)的表达升高,而s/s小鼠则不然,而db/db和s/s小鼠的下丘脑黑皮质素系统均受到抑制。因此,LRb-STAT3信号介导了瘦素对黑皮质素产生和身体能量平衡的影响,而不同的LRb信号调节NPY以及生育、生长和葡萄糖平衡的控制。