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环磷酸腺苷核糖对吞噬细胞趋化性及对甲酰肽受体配体的钙反应具有差异调节作用。

Chemotaxis and calcium responses of phagocytes to formyl peptide receptor ligands is differentially regulated by cyclic ADP ribose.

作者信息

Partida-Sánchez Santiago, Iribarren Pablo, Moreno-García Miguel E, Gao Ji-Liang, Murphy Philip M, Oppenheimer Norman, Wang Ji Ming, Lund Frances E

机构信息

Trudeau Institute, Saranac Lake, NY 12983, USA.

出版信息

J Immunol. 2004 Feb 1;172(3):1896-906. doi: 10.4049/jimmunol.172.3.1896.

Abstract

Cyclic ADP ribose (cADPR) is a calcium-mobilizing metabolite that regulates intracellular calcium release and extracellular calcium influx. Although the role of cADPR in modulating calcium mobilization has been extensively examined, its potential role in regulating immunologic responses is less well understood. We previously reported that cADPR, produced by the ADP-ribosyl cyclase, CD38, controls calcium influx and chemotaxis of murine neutrophils responding to fMLF, a peptide agonist for two chemoattractant receptor subtypes, formyl peptide receptor and formyl peptide receptor-like 1. In this study, we examine whether cADPR is required for chemotaxis of human monocytes and neutrophils to a diverse array of chemoattractants. We found that a cADPR antagonist and a CD38 substrate analogue inhibited the chemotaxis of human phagocytic cells to a number of formyl peptide receptor-like 1-specific ligands but had no effect on the chemotactic response of these cells to ligands selective for formyl peptide receptor. In addition, we show that the cADPR antagonist blocks the chemotaxis of human monocytes to CXCR4, CCR1, and CCR5 ligands. In all cases, we found that cADPR modulates intracellular free calcium levels in cells activated by chemokines that induce extracellular calcium influx in the apparent absence of significant intracellular calcium release. Thus, cADPR regulates calcium signaling of a discrete subset of chemoattractant receptors expressed by human leukocytes. Since many of the chemoattractant receptors regulated by cADPR bind to ligands that are associated with clinical pathology, cADPR and CD38 represent novel drug targets with potential application in chronic inflammatory and neurodegenerative disease.

摘要

环磷酸腺苷核糖(cADPR)是一种可动员钙的代谢产物,它调节细胞内钙释放和细胞外钙内流。尽管cADPR在调节钙动员方面的作用已得到广泛研究,但其在调节免疫反应中的潜在作用却鲜为人知。我们先前报道,由ADP核糖基环化酶CD38产生的cADPR可控制小鼠中性粒细胞对fMLF(一种针对两种趋化因子受体亚型,即甲酰肽受体和甲酰肽受体样1的肽激动剂)的钙内流和趋化性。在本研究中,我们检测了cADPR对于人类单核细胞和中性粒细胞对多种趋化因子的趋化性是否必要。我们发现,一种cADPR拮抗剂和一种CD38底物类似物抑制了人类吞噬细胞对多种甲酰肽受体样1特异性配体的趋化性,但对这些细胞对甲酰肽受体选择性配体的趋化反应没有影响。此外,我们表明cADPR拮抗剂可阻断人类单核细胞对CXCR4、CCR1和CCR5配体的趋化性。在所有情况下,我们发现cADPR可调节由趋化因子激活的细胞内游离钙水平,这些趋化因子在明显没有显著细胞内钙释放的情况下诱导细胞外钙内流。因此,cADPR调节人类白细胞表达的离散趋化因子受体亚群的钙信号传导。由于许多受cADPR调节的趋化因子受体与临床病理学相关的配体结合,cADPR和CD38代表了在慢性炎症和神经退行性疾病中具有潜在应用价值的新型药物靶点。

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