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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >A functionally coupled mu3-like opiate receptoritric oxide regulatory pathway in human multi-lineage progenitor cells.
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A functionally coupled mu3-like opiate receptoritric oxide regulatory pathway in human multi-lineage progenitor cells.

机译:人多谱系祖细胞中功能性偶联的mu3样鸦片受体/一氧化氮调节途径。

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摘要

Ongoing studies from our group support the existence and biological importance of a distinct cellular signaling pathway involving endogenously synthesized, chemically authentic, l-morphine, its cognate mu(3) opiate receptor subtype, and constitutive NO synthase. Based on prior studies indicating evolutionary conservation and adaptation of morphinergic/NO-coupled signaling to mediate autocrine/paracrine control of cellular functions, our goal was to determine whether a functionally competent mu(3) opiate receptor/NO-coupled regulatory pathway exists in human multilineage progenitor cells (MLPC) prepared from umbilical cord blood. Real-time PCR analysis indicated significant expression of mu(3) opiate receptor-encoding RNA by undifferentiated human MLPC, in the absence of traditional mu(1) opioid receptor-encoding RNA expression. Unpredictably, confirmatory RT-PCR analyses indicated cellular expression of a splice variant of the previously characterized mu(3) opiate receptor-encoding mRNA. Pharmacological analyses provided critical validating evidence of functional mu(3)-like opiate receptor/NO-coupled signaling within primary cultures of undifferentiated human MLPC via morphine-evoke real-time release of NO. Control analyses indicated that morphine-stimulated NO release was markedly inhibited by prior treatment with the opiate antagonist l-naloxone or the constitutive NO synthase inhibitor N(G)-nitro-l-arginine methyl ester and unresponsive to stimulation by the opioid peptide methionine enkephalin. Complementary microarray analysis demonstrated that traditional mu(1), delta, and kappa opioid receptor gene expression is not detected in both undifferentiated and differentiated MLPC. Chemical differentiation of MLPC into neuronal progenitor cells effected significant phenotypic expression of a variety of neurally-associated genes. Our data provide compelling evidence in support of both the evolutionary primacy and primordial regulatory role of mu(3)-like opiate receptor/NO signaling in embryogenesis.
机译:我们小组正在进行的研究支持涉及内源性合成的,化学上可靠的,l-吗啡,其同源的mu(3)阿片受体亚型和组成型NO合酶的独特细胞信号通路的存在和生物学重要性。根据先前的研究表明吗啡能/ NO偶联信号的进化保守性和适应性,以介导细胞功能的自分泌/旁分泌控制,我们的目标是确定人类中是否存在功能上合适的mu(3)阿片受体/ NO偶联调节途径从脐带血制备的多谱系祖细胞(MLPC)。实时PCR分析表明,在没有传统mu(1)阿片受体编码RNA表达的情况下,未分化的人MLPC会显着表达mu(3)阿片受体编码RNA。不可预测的是,确认性RT-PCR分析表明先前表征的mu(3)阿片受体编码mRNA的剪接变体的细胞表达。药理分析提供了关键的验证证据,证明通过吗啡引起的NO实时释放,未分化的人MLPC原代培养物中的功能性mu(3)样鸦片受体/ NO偶联信号传导。对照分析表明,阿片拮抗剂l-纳洛酮或组成型NO合酶抑制剂N(G)-硝基-1-精氨酸甲酯的预先治疗可显着抑制吗啡刺激的NO释放,并且对阿片肽甲硫氨酸脑啡肽的刺激无反应。互补微阵列分析表明,在未分化和分化的MLPC中均未检测到传统的mu(1),δ和κ阿片受体基因表达。 MLPC在神经元祖细胞中的化学分化影响了多种神经相关基因的显着表型表达。我们的数据提供了有力的证据来支持mu(3)-类鸦片受体/ NO信号在胚胎发生中的进化首要性和原始调节作用。

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