人类CXCL17结合并激活鱼类GPR25同源物。

IF 3
Wen-Feng Hu, Juan-Juan Wang, Jie Yu, Jun-Jie Yao, Ya-Li Liu, Zeng-Guang Xu, Zhan-Yun Guo
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引用次数: 0

摘要

C-X-C基序趋化因子配体17 (CXCL17)作为一种趋化剂,尽管其受体一直存在争议。最近的独立研究,包括我们自己的研究,发现CXCL17是孤儿G蛋白偶联受体25 (GPR25)的激动剂。虽然在鱼类和哺乳动物中都发现了GPR25同源物,但CXCL17同源物似乎是哺乳动物特异性的,这使得非哺乳动物GPR25同源物的内源性配体未知。本研究意外地发现,人类CXCL17对斑马鱼(Danio rerio)和腔棘鱼(Latimeria chalumnae)的GPR25同源基因表现出高活性。在一项基于NanoLuc Binary Technology (NanoBiT)的β-阻滞蛋白募集实验中,重组人CXCL17有效激活了两种鱼类GPR25同源基因,并在转染的表达鱼类GPR25的人胚胎肾(HEK) 293T细胞中诱导趋化运动。缺乏3个c末端残基的人CXCL17突变体没有这种影响。基于nanobit的结合实验显示,smbit标记的人CXCL17 c端片段特异性结合分泌大NanoLuc片段(sLgBiT)融合的鱼类GPR25同源物。与人GPR25相比,鱼GPR25同源物在转染的HEK293T细胞中的细胞表面表达明显更高,从而提高了β-阻滞蛋白募集实验数据的质量。尽管人类和鱼类之间存在大约4亿年的差异,但人类CXCL17对鱼类GPR25同源基因的高活性表明,尽管非哺乳动物的CXCL17同源基因仍未确定,但CXCL17-GPR25对可能在所有脊椎动物中都是保守的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Human CXCL17 binds and activates fish GPR25 orthologs.

C-X-C motif chemokine ligand 17 (CXCL17) functions as a chemoattractant, though its receptor has been controversial. Recent independent studies, including our own, identified CXCL17 as an agonist for the orphan G protein-coupled receptor 25 (GPR25). While GPR25 orthologs are found across fishes to mammals, CXCL17 orthologs appear to be mammalian-specific, leaving the endogenous ligand for non-mammalian GPR25 orthologs unknown. This study unexpectedly found that human CXCL17 exhibits high activity towards GPR25 orthologs from the zebrafish (Danio rerio) and coelacanth (Latimeria chalumnae). Recombinant human CXCL17 efficiently activated both fish GPR25 orthologs in a NanoLuc Binary Technology (NanoBiT)-based β-arrestin recruitment assay, and induced chemotactic movement in transfected human embryonic kidney (HEK) 293T cells expressing fish GPR25. A human CXCL17 mutant lacking three C-terminal residues showed no such effect. A NanoBiT-based binding assay revealed that a SmBiT-tagged human CXCL17 C-terminal fragment specifically bound to secretory large NanoLuc fragment (sLgBiT)-fused fish GPR25 orthologs. Fish GPR25 orthologs had significantly higher cell surface expression in transfected HEK293T cells compared to human GPR25, improving β-arrestin recruitment assay data quality. Despite approximately 400 million years of divergence between humans and fishes, the high activity of human CXCL17 on fish GPR25 orthologs suggests that the CXCL17-GPR25 pair may be conserved across all vertebrates, even though non-mammalian CXCL17 orthologs remain unidentified.

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