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首页> 外文期刊>Biochemistry >Characterization of Urotensin-II Receptor Structural Domains Involved in the Recognition of U-II,URP,and Urantide
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Characterization of Urotensin-II Receptor Structural Domains Involved in the Recognition of U-II,URP,and Urantide

机译:U-II,URP和Urantide识别中涉及的Urotensin-II受体结构域的表征

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摘要

Urotensin-II(U-II)and urotensin-II-related peptide(URP)are potent vasoconstrictors,and this action is mediated through a G protein-coupled receptor identified as UT.This receptor is expressed abundantly in the mammalian cardiovasculature,and the effects of U-II and URP can be blocked with urantide,a selective antagonist.Thus,we carried out a study with the aim to characterize the conformational arrangement of the three extracellular loops of UT as well as the transmembrane domains III and IV.Secondary structures of the synthetic receptor fragments were determined using circular dichroism(CD)spectroscopy in a variety of solvent and micelle conditions.Spectra showed that all receptor segments but not the extracellular loop I exhibited a propensity for adopting the alpha-helix folding.Furthermore,using surface plasmon resonance(SPR)technology,we measured the binding affinities of the ligands,U-II,URP,and urantide toward the UT extracellular segments.SPR data showed that both U-II and URP bind extracellular loops II and III with similar affinities,whereas none of these two ligands were able to interact with the extracellular loop I.Moreover,the binding of urantide was observed only with the second extracellular loop.These results imply that U-II and URP but not urantide would bind to UT according to a common pattern.Also,the correlation of the CD spectral information with the affinity data suggested that the adoption of a helical geometry in UT,by extracellular loops II and III,might be essential for favoring the binding of ligands.
机译:Urotensin-II(U-II)和Urotensin-II相关肽(URP)是有效的血管收缩剂,其作用是通过G蛋白偶联受体UT介导的。该受体在哺乳动物的心血管系统中大量表达, U-II和URP的作用可以被选择性拮抗剂urantide阻断。因此,我们进行了一项研究,旨在表征UT的三个细胞外环以及跨膜结构域III和IV的构象排列。使用圆二色性(CD)光谱在各种溶剂和胶束条件下确定了合成受体片段的结构。光谱显示,所有受体片段但不是胞外环I均表现出采用α-螺旋折叠的倾向。表面等离子共振(SPR)技术,我们测量了配体,U-II,URP和尿苷酸对UT细胞外区段的结合亲和力。SPR数据显示,U-II和URP以相似的亲和力结合细胞外环II和III,而这两个配体均不能与细胞外环I相互作用。此外,仅在第二个细胞外环上观察到了尿嘧啶的结合。这些结果表明U-II和URP CD光谱信息与亲和力数据之间的相关性表明,通过细胞外环II和III在UT中采用螺旋几何结构可能对促进UT的结合至关重要。配体的结合。

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