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RM-493, a melanocortin-4 receptor (MC4R) agonist, increases resting energy expenditure in obese individuals.RM-493是一种促黑素皮质素-4受体(MC4R)激动剂,可增加肥胖个体的静息能量消耗。
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2
G protein-coupled receptor (GPCR) signaling via heterotrimeric G proteins from endosomes.通过内体中的异源三聚体G蛋白进行的G蛋白偶联受体(GPCR)信号传导。
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A small molecule agonist THIQ as a novel pharmacoperone for intracellularly retained melanocortin-4 receptor mutants.一种小分子激动剂THIQ作为细胞内保留的黑皮质素-4受体突变体的新型药效伴侣。
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Endosomal GPCR signaling turned off by negative feedback actions of PKA and v-ATPase.内体 GPCR 信号通过 PKA 和 v-ATPase 的负反馈作用关闭。
Nat Chem Biol. 2014 Sep;10(9):707-9. doi: 10.1038/nchembio.1589. Epub 2014 Jul 27.
5
Mild lipid stress induces profound loss of MC4R protein abundance and function.轻度脂质应激会导致黑皮质素4受体(MC4R)蛋白丰度和功能的显著丧失。
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Proc Natl Acad Sci U S A. 2013 Dec 3;110(49):E4733-42. doi: 10.1073/pnas.1219808110. Epub 2013 Nov 18.
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Melanocortin signaling in the brainstem influences vagal outflow to the stomach.脑桥内的黑色素皮质素信号影响迷走神经对胃的传出。
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Kinetics and dynamics in the G protein-coupled receptor signaling cascade.G蛋白偶联受体信号级联反应中的动力学与动力学过程
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A novel melanocortin-4 receptor mutation MC4R-P272L associated with severe obesity has increased propensity to be ubiquitinated in the ER in the face of correct folding.一种新的黑素皮质素 4 受体突变 MC4R-P272L 与严重肥胖有关,在面对正确折叠时,其在 ER 中被泛素化的倾向增加。
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10
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Diabetes. 2013 Feb;62(2):490-7. doi: 10.2337/db12-0598. Epub 2012 Oct 9.

天然和合成的促黑素细胞激素4受体激动剂对时间性环磷酸腺苷信号传导的选择性

Temporal cAMP Signaling Selectivity by Natural and Synthetic MC4R Agonists.

作者信息

Molden Brent M, Cooney Kimberly A, West Kirk, Van Der Ploeg Lex H T, Baldini Giulia

机构信息

Department of Biochemistry and Molecular Biology (B.M.M., K.A.C., K.W., G.B.), University of Arkansas for Medical Sciences, Little Rock, Arkansas 72205-7199; and Rhythm Pharmaceuticals, Inc (L.H.T.V.D.P.), Boston, Massachusetts 02116.

出版信息

Mol Endocrinol. 2015 Nov;29(11):1619-33. doi: 10.1210/me.2015-1071. Epub 2015 Sep 29.

DOI:10.1210/me.2015-1071
PMID:26418335
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4627605/
Abstract

The melanocortin-4 receptor (MC4R) is a G protein-coupled receptor expressed in the brain, where it controls energy balance through pathways including α-melanocyte-stimulating hormone (α-MSH)-dependent signaling. We have reported that the MC4R can exist in an active conformation that signals constitutively by increasing cAMP levels in the absence of receptor desensitization. We asked whether synthetic MC4R agonists differ in their ability to increase intracellular cAMP over time in Neuro2A cells expressing endogenous MC4R and exogenous, epitope-tagged hemagglutinin-MC4R-green fluorescent protein. By analyzing intracellular cAMP in a temporally resolved Förster resonance energy transfer assay, we show that withdrawal of α-MSH leads to a quick reversal of cAMP induction. By contrast, the synthetic agonist melanotan II (MTII) induces a cAMP signal that persists for at least 1 hour after removal of MTII from the medium and cannot be antagonized by agouti related protein. Similarly, in mHypoE-42 immortalized hypothalamic neurons, MTII, but not α-MSH, induced persistent AMP kinase signal, which occurs downstream of increased cAMP. By using a fluorescence recovery after photobleaching assay, it appears that the receptor exposed to MTII continues to signal after being internalized. Similar to MTII, the synthetic MC4R agonists, THIQ and BIM-22511, but not LY2112688, induced prolonged cAMP signaling after agonist withdrawal. However, agonist-exposed MC4R desensitized to the same extent, regardless of the ligand used and regardless of differences in receptor intracellular retention kinetics. In conclusion, α-MSH and LY2112688, when compared with MTII, THIQ, and BIM-22511, vary in the duration of the acute cAMP response, showing distinct temporal signaling selectivity, possibly linked to specific cell compartments from which cAMP signals may originate.

摘要

黑皮质素-4受体(MC4R)是一种G蛋白偶联受体,在大脑中表达,通过包括α-黑素细胞刺激素(α-MSH)依赖性信号传导在内的途径控制能量平衡。我们曾报道,MC4R可以以一种活性构象存在,在不存在受体脱敏的情况下,通过增加cAMP水平进行组成性信号传导。我们研究了合成的MC4R激动剂在表达内源性MC4R和外源性、表位标记的血凝素-MC4R-绿色荧光蛋白的Neuro2A细胞中随时间增加细胞内cAMP的能力是否存在差异。通过在时间分辨的Förster共振能量转移分析中分析细胞内cAMP,我们发现α-MSH的撤除导致cAMP诱导的快速逆转。相比之下,合成激动剂黑素otan II(MTII)诱导的cAMP信号在从培养基中去除MTII后至少持续1小时,并且不能被刺鼠相关蛋白拮抗。同样,在mHypoE-42永生化下丘脑神经元中,MTII而非α-MSH诱导持续的AMP激酶信号,该信号发生在cAMP增加的下游。通过使用光漂白后荧光恢复分析,似乎暴露于MTII的受体在被内化后继续发出信号。与MTII类似,合成的MC4R激动剂THIQ和BIM-22511,但不是LY2112688,在激动剂撤除后诱导延长的cAMP信号传导。然而,无论使用何种配体以及受体细胞内保留动力学的差异如何,暴露于激动剂的MC4R脱敏程度相同。总之,与MTII、THIQ和BIM-22511相比,α-MSH和LY2112688在急性cAMP反应的持续时间上有所不同,表现出明显的时间信号选择性,这可能与cAMP信号可能起源的特定细胞区室有关。