首页> 外文期刊>The journal of immunology >Redundancy of a Functional Melanocortin 1 Receptor in the Anti-inflammatory Actions of Melanocortin Peptides: Studies in the Recessive Yellow (e/e) Mouse Suggest an Important Role for Melanocortin 3 Receptor
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Redundancy of a Functional Melanocortin 1 Receptor in the Anti-inflammatory Actions of Melanocortin Peptides: Studies in the Recessive Yellow (e/e) Mouse Suggest an Important Role for Melanocortin 3 Receptor

机译:功能性黑皮质素1受体在黑皮质素肽的抗炎作用中的冗余:在隐性黄色(e / e)小鼠中的研究表明黑皮质素3受体的重要作用。

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The issue of which melanocortin receptor (MC-R) is responsible for the anti-inflammatory effects of melanocortin peptides is still a matter of debate. Here we have addressed this aspect using a dual pharmacological and genetic approach, taking advantage of the recent characterization of more selective agonists/antagonists at MC1 and MC3-R as well as of the existence of a naturally defective MC1-R mouse strain, the recessive yellow (e/e) mouse. RT-PCR and ultrastructural analyses showed the presence of MC3-R mRNA and protein in peritoneal macrophages (Mφ) collected from recessive yellow (e/e) mice and wild-type mice. This receptor was functional as Mφ incubation (30 min) with melanocortin peptides led to accumulation of cAMP, an effect abrogated by the MC3/4-R antagonist SHU9119, but not by the selective MC4-R antagonist HS024. In vitro Mφ activation, determined as release of the CXC chemokine KC and IL-1β, was inhibited by the more selective MC3-R agonist γ2-melanocyte stimulating hormone but not by the selective MC1-R agonist MS05. Systemic treatment of mice with a panel of melanocortin peptides inhibited IL-1β release and PMN accumulation elicited by urate crystals in the murine peritoneal cavity. MS05 failed to inhibit any of the inflammatory parameters either in wild-type or recessive yellow (e/e) mice. SHU9119 prevented the inhibitory actions of γ2-melanocyte stimulating hormone both in vitro and in vivo while HS024 was inactive in vivo. In conclusion, agonism at MC3-R expressed on peritoneal Mφ leads to inhibition of experimental nonimmune peritonitis in both wild-type and recessive yellow (e/e) mice.
机译:哪个黑皮质素受体(MC-R)负责黑皮质素肽的抗炎作用仍然是一个争论的问题。在这里,我们已经利用药理学和遗传学双重方法解决了这一方面,利用了最近在MC1和MC3-R上更具选择性的激动剂/拮抗剂的特性以及存在自然缺陷的MC1-R小鼠品系(隐性黄色(e / e)鼠标。 RT-PCR和超微结构分析表明,从隐性黄色(e / e)小鼠和野生型小鼠收集的腹膜巨噬细胞(Mφ)中存在MC3-R mRNA和蛋白。该受体在与黑皮质素肽进行Mφ孵育(30分钟)时起作用,导致cAMP积累,这种作用被MC3 / 4-R拮抗剂SHU9119废除,但未被选择性MC4-R拮抗剂HS024废除。体外Mφ活化(确定为CXC趋化因子KC和IL-1β的释放)受到选择性更高的MC3-R激动剂γ2-黑素细胞刺激激素的抑制,但不受选择性MC1-R激动剂MS05的抑制。用一组黑皮质素肽对小鼠进行全身性治疗可抑制小鼠腹腔中尿酸盐晶体引起的IL-1β释放和PMN积累。 MS05无法抑制野生型或隐性黄色(e / e)小鼠的任何炎症参数。 SHU9119在体内和体外均抑制了γ2-黑素细胞刺激激素的抑制作用,而HS024在体内则无活性。总之,在腹膜Mφ上表达的MC3-R的激动作用可抑制野生型和隐性黄色(e / e)小鼠的实验性非免疫性腹膜炎。

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