首页> 外文期刊>FEBS Open Bio >Characterization of G protein coupling mediated by the conserved D134^3^.^4^9 of DRY motif, M241^6^.^3^4, and F251^6^.^4^4 residues on human CXCR1
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Characterization of G protein coupling mediated by the conserved D134^3^.^4^9 of DRY motif, M241^6^.^3^4, and F251^6^.^4^4 residues on human CXCR1

机译:DRY基序的保守D134 ^ 3 ^。^ 4 ^ 9,人CXCR1的M241 ^ 6 ^。^ 3 ^ 4和F251 ^ 6 ^。^ 4 ^ 4残基介导的G蛋白偶联的表征

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摘要

CXCR1, a receptor for interleukin-8 (IL-8), plays an important role in defending against pathogen invasion during neutrophil-mediated innate immune response. Human CXCR1 is a G protein-coupled receptor (GPCR) with its characteristic seven transmembrane domains (TMs). Functional and structural analyses of several GPCRs have revealed that conserved residues on TM3 (including the highly conserved Asp-Arg-Tyr (DRY) motif) and TM6 near intracellular loops contain domains critical for G protein coupling as well as GPCR activation. The objective of this study was to elucidate the role of critical amino acid residues on TM3 near intracellular loop 2 (i2) and TM6 near intracellular loop 3 (i3), including S132^3^.^4^7 (Baldwin location), D134^3^.^4^9, M241^6^.^3^4, and F251^6^.^4^4, in G protein coupling and CXCR1 activation. The results demonstrate that mutations of D134^3^.^4^9 at DRY motif of CXCR1 (D134N and D134V) completely abolished the ligand binding and functional response of the receptor. Additionally, point mutations at positions 241 and 251 between TM6 and i3 loop generated mutant receptors with modest constitutive activity via G@a15 signaling activation. Our results show that D134^3^.^4^9 on the highly conserved DRY motif has a distinct role for CXCR1 compared to its homologues (CXCR2 and KSHV-GPCR) in G protein coupling and receptor activation. In addition, M241^6^.^3^4 and F251^6^.^4^4 along with our previously identified V247^6^.^4^0 on TM6 are spatially located in a ''hot spot'' likely essential for CXCR1 activation. Identification of these amino acid residues may be useful for elucidating mechanism of CXCR1 activation and designing specific antagonists for the treatment of CXCR1-mediated diseases.
机译:CXCR1是白介素8(IL-8)的受体,在中性粒细胞介导的先天免疫应答过程中,在防御病原体入侵方面起着重要作用。人CXCR1是一种G蛋白偶联受体(GPCR),具有七个特有的跨膜结构域(TM)。几个GPCR的功能和结构分析表明,TM3上的保守残基(包括高度保守的Asp-Arg-Tyr(DRY)基序)和细胞内环附近的TM6包含对G蛋白偶联以及GPCR激活至关重要的域。这项研究的目的是阐明关键氨基酸残基在胞内环2(i2)附近的TM3和胞内环3(i3)附近的TM6上的作用,包括S132 ^ 3 ^。^ 4 ^ 7(鲍德温位置),D134 G蛋白偶联和CXCR1激活中的^ 3 ^。^ 4 ^ 9,M241 ^ 6 ^。^ 3 ^ 4和F251 ^ 6 ^。^ 4 ^ 4。结果表明,在CXCR1的DRY基序上的D134 ^ 3 ^。^ 4 ^ 9突变(D134N和D134V)完全消除了受体的配体结合和功能反应。另外,TM6和i3环之间241和251位的点突变通过G @ a15信号激活产生具有适度本构活性的突变受体。我们的研究结果表明,在G蛋白偶联和受体激活中,高度保守的DRY基序上的D134 ^ 3 ^。^ 4 ^ 9与CXCR1的同系物(CXCR2和KSHV-GPCR)相比具有独特的作用。此外,M241 ^ 6 ^。^ 3 ^ 4和F251 ^ 6 ^。^ 4 ^ 4以及我们先前在TM6上确定的V247 ^ 6 ^。^ 4 ^ 0可能在空间上位于“热点”对于CXCR1激活至关重要。这些氨基酸残基的鉴定可用于阐明CXCR1激活的机制,并设计特定的拮抗剂来治疗CXCR1介导的疾病。

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