首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >The DC-SIGN of zebrafish: insights into the existence of a CD209 homologue in a lower vertebrate and its involvement in adaptive immunity.
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The DC-SIGN of zebrafish: insights into the existence of a CD209 homologue in a lower vertebrate and its involvement in adaptive immunity.

机译:斑马鱼的DC-SIGN:了解低等脊椎动物中CD209同源物的存在及其对适应性免疫的影响。

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摘要

Dendritic cell-specific ICAM-3-grabbing nonintegrin (DC-SIGN/CD209) has become hot topic in recent studies because of its important roles in immune responses and immune escape. CD209 has been well characterized in humans and several other mammals, but little documentation exists about it in lower vertebrates. This is the first report on the identification and functional characterization of a fish DC-SIGN/CD209 molecule. The zebrafish DC-SIGN/CD209 cDNA translates into 343 aa organized into three domains structurally conserved among vertebrates. An EPN motif essential for interacting with Ca(2+) and for recognizing mannose-containing motifs has been identified. Several conserved motifs crucial for internalization and signal transduction are also present within the cytoplasmic tail. Phylogenetic analysis supports the hypothesis that CD209 family members diverged from a common ancestor. The expression of DC-SIGN/CD209 in immune-related tissues can be significantly up-regulated by exogenous Ags and IL-4. This molecule associates with various APCs, including macrophages, B lymphocytes, and a possible dendritic cell-like (CD83(+)/CD80(+)CD209(+)) population. Functionally, T cell activation, Ab (IgM) production, and bacterial vaccination-elicited immunoprotection can be dramatically inhibited by a CD209 blockade after stimulation with keyhole limpet hemocyanin (KLH) in vivo or challenged with Aeromonas hydrophila, suggesting that DC-SIGN/CD209 in zebrafish is crucial for the initiation and development of adaptive immunity. Phagocytosis analysis showed that DC-SIGN/CD209 does not participate in the uptake of KLH Ag, suggesting that other mechanisms might exist that underlie DC-SIGN/CD209 involvement. We hope that the present study will contribute to a better cross-species understanding of the evolutionary history of the DC-SIGN/CD209 family.
机译:树突状细胞特异性ICAM-3夺取非整联蛋白(DC-SIGN / CD209)已成为最近研究的热点,因为它在免疫应答和免疫逃逸中起重要作用。 CD209在人类和其他几种哺乳动物中都有很好的特征,但是在低等脊椎动物中几乎没有文献记载。这是关于鱼类DC-SIGN / CD209分子鉴定和功能表征的第一份报告。斑马鱼的DC-SIGN / CD209 cDNA转化为343个氨基酸,并组织成三个结构域,在脊椎动物之间结构保守。已经确定了与Ca(2+)相互作用和识别含甘露糖的图案所必需的EPN图案。对于内在化和信号转导至关重要的几个保守基序也存在于细胞质尾巴中。系统发育分析支持CD209家族成员不同于同一祖先的假说。免疫相关组织中DC-SIGN / CD209的表达可被外源Ags和IL-4明显上调。该分子与各种APC,包括巨噬细胞,B淋巴细胞和可能的树突状细胞样(CD83(+)/ CD80(+)CD209(+))种群相关。从功能上讲,在体内用匙孔血蓝蛋白(KLH)刺激或用嗜水气单胞菌刺激后,CD209阻断作用可显着抑制T细胞活化,Ab(IgM)产生和细菌疫苗引起的免疫保护,这提示DC-SIGN / CD209在斑马鱼中的关键是适应性免疫的启动和发展。吞噬作用分析表明DC-SIGN / CD209不参与KLH Ag的摄取,这表明可能存在DC-SIGN / CD209参与的其他机制。我们希望本研究将有助于更好地跨物种了解DC-SIGN / CD209家族的进化史。

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