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本文引用的文献

1
Neuronal expression of the human neuropeptide S receptor NPSR1 identifies NPS-induced calcium signaling pathways.人类神经肽S受体NPSR1的神经元表达确定了神经肽S诱导的钙信号通路。
PLoS One. 2015 Feb 25;10(2):e0117319. doi: 10.1371/journal.pone.0117319. eCollection 2015.
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Delineation of a conserved arrestin-biased signaling repertoire in vivo.体内保守的视紫红质抑制蛋白偏向性信号传导谱的描绘。
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Biased signaling at chemokine receptors.趋化因子受体的偏向性信号传导。
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Bombyx mori prothoracicostatic peptide receptor is allosterically activated via a Gα(i/o)-protein-biased signalling cascade by Drosophila sex peptide.家蚕前胸腺抑制肽受体通过果蝇性肽经由Gα(i/o)蛋白偏向性信号级联反应被变构激活。
Biochem J. 2015 Mar 1;466(2):391-400. doi: 10.1042/BJ20141146.
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Biased signaling regulates the pleiotropic effects of the urotensin II receptor to modulate its cellular behaviors.偏向性信号传导调节尾加压素 II 受体的多效性作用,以调节其细胞行为。
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Biased signaling favoring gi over β-arrestin promoted by an apelin fragment lacking the C-terminal phenylalanine.缺少C端苯丙氨酸的apelin片段促进了偏向Gi而非β-抑制蛋白的信号传导。
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Biased signaling through G-protein-coupled PROKR2 receptors harboring missense mutations.通过携带错义突变的G蛋白偶联PROKR2受体产生的偏向性信号传导。
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Differential effects of the Gβ5-RGS7 complex on muscarinic M3 receptor-induced Ca2+ influx and release.Gβ5-RGS7 复合物对毒蕈碱 M3 受体诱导的 Ca2+内流和释放的差异影响。
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Signal transduction mechanism of biased ligands at histamine H2 receptors.组胺 H2 受体偏倚配体的信号转导机制。
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Quantification of ligand bias for clinically relevant β2-adrenergic receptor ligands: implications for drug taxonomy.定量分析临床相关β2-肾上腺素能受体配体的配体偏向:对药物分类学的影响。
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人神经肽 S 受体通过缺乏 C 末端 10 个残基的人神经肽 S 类似物经由 Gαq 蛋白偏向性信号级联反应被激活。

Human Neuropeptide S Receptor Is Activated via a Gαq Protein-biased Signaling Cascade by a Human Neuropeptide S Analog Lacking the C-terminal 10 Residues.

作者信息

Liao Yuan, Lu Bin, Ma Qiang, Wu Gang, Lai Xiangru, Zang Jiashu, Shi Ying, Liu Dongxiang, Han Feng, Zhou Naiming

机构信息

From the Institute of Biochemistry, College of Life Sciences, and.

the Institute of Pharmacology and Toxicology, College of Pharmaceutical Sciences, Zijingang Campus, Zhejiang University, Hangzhou, Zhejiang 310058, China and.

出版信息

J Biol Chem. 2016 Apr 1;291(14):7505-16. doi: 10.1074/jbc.M115.704122. Epub 2016 Feb 10.

DOI:10.1074/jbc.M115.704122
PMID:26865629
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4817180/
Abstract

Human neuropeptide S (NPS) and its cognate receptor regulate important biological functions in the brain and have emerged as a future therapeutic target for treatment of a variety of neurological and psychiatric diseases. The human NPS (hNPS) receptor has been shown to dually couple to Gαs- and Gαq-dependent signaling pathways. The human NPS analog hNPS-(1-10), lacking 10 residues from the C terminus, has been shown to stimulate Ca(2+)mobilization in a manner comparable with full-length hNPSin vitrobut seems to fail to induce biological activityin vivo Here, results derived from a number of cell-based functional assays, including intracellular cAMP-response element (CRE)-driven luciferase activity, Ca(2+)mobilization, and ERK1/2 phosphorylation, show that hNPS-(1-10) preferentially activates Gαq-dependent Ca(2+)mobilization while exhibiting less activity in triggering Gαs-dependent CRE-driven luciferase activity. We further demonstrate that both Gαq- and Gαs-coupled signaling pathways contribute to full-length hNPS-mediated activation of ERK1/2, whereas hNPS-(1-10)-promoted ERK1/2 activation is completely inhibited by the Gαqinhibitor UBO-QIC but not by the PKA inhibitor H89. Moreover, the results of Ala-scanning mutagenesis of hNPS-(1-13) indicated that residues Lys(11)and Lys(12)are structurally crucial for the hNPS receptor to couple to Gαs-dependent signaling. In conclusion, our findings demonstrate that hNPS-(1-10) is a biased agonist favoring Gαq-dependent signaling. It may represent a valuable chemical probe for further investigation of the therapeutic potential of human NPS receptor-directed signalingin vivo.

摘要

人神经肽S(NPS)及其同源受体调节大脑中的重要生物学功能,并已成为治疗多种神经和精神疾病的未来治疗靶点。人NPS(hNPS)受体已被证明可双重偶联至Gαs和Gαq依赖性信号通路。人NPS类似物hNPS-(1-10),从C末端缺少10个残基,已被证明在体外以与全长hNPS相当的方式刺激Ca(2+)动员,但在体内似乎未能诱导生物学活性。在这里,来自多种基于细胞的功能测定的结果,包括细胞内cAMP反应元件(CRE)驱动的荧光素酶活性、Ca(2+)动员和ERK1/2磷酸化,表明hNPS-(1-10)优先激活Gαq依赖性Ca(2+)动员,而在触发Gαs依赖性CRE驱动的荧光素酶活性方面表现出较低的活性。我们进一步证明,Gαq和Gαs偶联的信号通路都有助于全长hNPS介导的ERK1/2激活,而hNPS-(1-10)促进的ERK1/2激活被Gαq抑制剂UBO-QIC完全抑制,但不被PKA抑制剂H89抑制。此外,hNPS-(1-13)的丙氨酸扫描诱变结果表明,赖氨酸(11)和赖氨酸(12)残基对于hNPS受体偶联至Gαs依赖性信号在结构上至关重要。总之,我们的研究结果表明hNPS-(1-10)是一种偏向于Gαq依赖性信号的激动剂。它可能代表一种有价值的化学探针,用于进一步研究人NPS受体定向信号在体内的治疗潜力。