Department of Internal Medicine, University of Michigan, Ann Arbor, Michigan.
Graduate Program in Cellular and Molecular Biology, University of Michigan, Ann Arbor, Michigan.
Endocrinology. 2018 Apr 1;159(4):1860-1872. doi: 10.1210/en.2017-03259.
The adipocyte-derived hormone leptin acts via its receptor (LepRb) on central nervous system neurons to communicate the repletion of long-term energy stores, to decrease food intake, and to promote energy expenditure. We generated mice that express Cre recombinase from the calcitonin receptor (Calcr) locus (Calcrcre mice) to study Calcr-expressing LepRb (LepRbCalcr) neurons, which reside predominantly in the arcuate nucleus (ARC). Calcrcre-mediated ablation of LepRb in LepRbCalcrknockout (KO) mice caused hyperphagic obesity. Because LepRb-mediated transcriptional control plays a crucial role in leptin action, we used translating ribosome affinity purification followed by RNA sequencing to define the transcriptome of hypothalamic Calcr neurons, along with its alteration in LepRbCalcrKO mice. We found that ARC LepRbCalcr cells include neuropeptide Y (NPY)/agouti-related peptide (AgRP)/γ-aminobutyric acid (GABA) ("NAG") cells as well as non-NAG cells that are distinct from pro-opiomelanocortin cells. Furthermore, although LepRbCalcrKO mice exhibited dysregulated expression of several genes involved in energy balance, neither the expression of Agrp and Npy nor the activity of NAG cells was altered in vivo. Thus, although direct leptin action via LepRbCalcr cells plays an important role in leptin action, our data also suggest that leptin indirectly, as well as directly, regulates these cells.
脂肪细胞衍生的激素瘦素通过其受体(LepRb)作用于中枢神经系统神经元,以传达长期能量储存的充盈状态,减少食物摄入,并促进能量消耗。我们生成了在降钙素受体(Calcr)基因座表达 Cre 重组酶的小鼠(Calcrcre 小鼠),以研究主要位于弓状核(ARC)中的 Calcr 表达的 LepRb(LepRbCalcr)神经元。Calcrcre 介导的 LepRb 在 LepRbCalcr 敲除(KO)小鼠中的消融导致了多食性肥胖。因为 LepRb 介导的转录控制在瘦素作用中起着至关重要的作用,我们使用翻译核糖体亲和纯化结合 RNA 测序来定义下丘脑 Calcr 神经元的转录组,以及在 LepRbCalcrKO 小鼠中的改变。我们发现,ARC LepRbCalcr 细胞包括神经肽 Y(NPY)/刺鼠相关肽(AgRP)/γ-氨基丁酸(GABA)(“NAG”)细胞以及与前阿黑皮素原细胞不同的非 NAG 细胞。此外,尽管 LepRbCalcrKO 小鼠表现出参与能量平衡的几个基因的失调表达,但 Agrp 和 Npy 的表达以及 NAG 细胞的活性在体内并未改变。因此,尽管 LepRbCalcr 细胞通过 LepRb 直接作用的瘦素作用在瘦素作用中起着重要作用,但我们的数据还表明,瘦素间接以及直接调节这些细胞。