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脂氧素A4稳定类似物是通过G蛋白偶联的脂氧素A4受体刺激人单核细胞和THP-1细胞的强效模拟物。

Lipoxin A4 stable analogs are potent mimetics that stimulate human monocytes and THP-1 cells via a G-protein-linked lipoxin A4 receptor.

作者信息

Maddox J F, Hachicha M, Takano T, Petasis N A, Fokin V V, Serhan C N

机构信息

Center for Experimental Therapeutics and Reperfusion Injury, Department of Anesthesia, Brigham and Women's Hospital and Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

J Biol Chem. 1997 Mar 14;272(11):6972-8. doi: 10.1074/jbc.272.11.6972.

Abstract

Lipoxins (LX) are bioactive eicosanoids that activate human monocytes and inhibit neutrophils. LXA4 is rapidly converted by monocytes to inactive products, and to resist metabolism, synthetic analogs of LXA4 were designed. Here, we examined the bioactivity of several LXA4 analogs in monocytes and found, for chemotaxis, 15(R/S)-methyl-LXA4 and 15-epi-LXA4 were equal in activity, and 16-phenoxy-LXA4 was more potent than native LXA4. Both 15(R/S)-methyl-LXA4 and 16-phenoxy-LXA4 were approximately 1 log molar more potent than LXA4 in stimulating THP-1 cell adherence (EC50 approximately 1 x 10(-10) M). Dimethylamide derivatives of the LXA4 analogs also possessed agonist rather than antagonist properties for monocytes. Neither LXA4 nor 16-phenoxy-LXA4 affected monocyte-mediated cytotoxicity. We cloned an LXA4 receptor from THP-1 cells identical to that found in PMN. Evidence of receptor-mediated function of LXA4 and the stable analogs in monocytes included desensitization of intracellular calcium mobilization to a second challenge by equimolar concentrations of these analogs, but not to LTB4. Increases in [Ca2+]i by LXA4 and the analogs were specifically inhibited by an antipeptide antibody to the LXA4 receptor; and both LXA4- and analog-induced adherence and increments in Ca2+ were sensitive to pertussis toxin. Together, these results indicate that the LXA4 stable analogs are potent monocyte chemoattractants and are more potent than native LXA4 in stimulating THP-1 cell adherence, at subnanomolar concentrations. Moreover, they provide additional evidence that the LXA4 stable analogs retain selective bioactivity in monocytes and are valuable instruments for examining the functions and modes of action of LXA4.

摘要

脂氧素(LX)是一类生物活性类二十烷酸,可激活人类单核细胞并抑制中性粒细胞。LXA4会迅速被单核细胞转化为无活性产物,为了抵抗代谢作用,人们设计了LXA4的合成类似物。在此,我们检测了几种LXA4类似物在单核细胞中的生物活性,发现对于趋化作用,15(R/S)-甲基-LXA4和15-表-LXA4活性相当,而16-苯氧基-LXA4比天然LXA4更有效。在刺激THP-1细胞黏附方面,15(R/S)-甲基-LXA4和16-苯氧基-LXA4的效力均比LXA4高约1个对数摩尔(EC50约为1×10⁻¹⁰ M)。LXA4类似物的二甲酰胺衍生物对单核细胞也具有激动剂而非拮抗剂特性。LXA4和16-苯氧基-LXA4均不影响单核细胞介导的细胞毒性。我们从THP-1细胞中克隆出一种与多形核白细胞中发现的相同的LXA4受体。LXA4及其稳定类似物在单核细胞中受体介导功能的证据包括,细胞内钙动员对这些类似物等摩尔浓度的第二次刺激脱敏,但对LTB4不脱敏。LXA4及其类似物引起的[Ca²⁺]i增加被针对LXA4受体的抗肽抗体特异性抑制;并且LXA4和类似物诱导的黏附以及Ca²⁺增加均对百日咳毒素敏感。总之,这些结果表明,LXA4稳定类似物是有效的单核细胞趋化剂,在刺激THP-1细胞黏附方面,在亚纳摩尔浓度下比天然LXA4更有效。此外,它们提供了更多证据表明LXA4稳定类似物在单核细胞中保留了选择性生物活性,并且是研究LXA4功能和作用方式的有价值工具。

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