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Ligand-induced conformations of extracellular loop 2 of AT1R .

机译:配体诱导的AT1R细胞外环2的构象。

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摘要

Angiotensin II type 1 receptor (AT1R) is a G-protein coupled receptor (GPCR) and an important regulator of blood pressure. It is a target for drug development, because abnormalities in its function are linked to hypertension, cardiac hypertrophy and heart failure. AT1R is composed of seven transmembrane helices connected by three extracellular loops and three intracellular loops. The extracellular loop 2 (ECL2) of AT1R directly interacts with the ligands. This loop is targeted by autoantibodies that activate AT1R in several pathologies such as preeclampsia, malignant hypertension and vascular allograft rejection. Therefore, we proposed that the conformation of ECL2 in AT1R is differentially regulated upon binding to agonists and antagonists.;We determined the conformation of the ECL2 of AT1R by reporter-cysteine accessibility mapping in different receptor states (i.e., empty, agonist-bound and antagonist-bound). We introduced cysteines at each position of ECL2 of a receptor surrogate lacking all non-essential cysteines and measured reaction of these with a cysteine-reactive biotin probe. The ability of biotinylated mutant receptors to react with a streptavidin-HRP-conjugated antibody was used as the basis for examining differences in accessibility.;Two segments of ECL2 were accessible in the empty receptor, indicating an open conformation of ECL2. These segments were inaccessible in the ligand-bound states of the receptor. Using the accessibility constraint, we performed molecular dynamics simulation to predict ECL2 conformation in different states of the receptor. Analysis suggested that a 'lid' conformation of ECL2 was induced upon binding to both agonists and antagonists, but exposing different accessible segments delimited by a highly conserved disulfide bond between ECL2 and TMIII. We propose that the ligand-induced ECL2-lid is coupled to movements of transmembrane helices through the conserved disulfide bond to achieve the transition to the active state of the receptor.;Our study reveals the ability of ECL2 to interact with diffusible ligands and adopt a ligand-specific 'lid' conformation. Distinct conformations induced by the agonist and the antagonist around the conserved disulfide bond suggest an important role for the disulfide bond in producing different functional states of the receptor. Dynamics of ECL2 may regulate the fundamental process of receptor activation and pathophysiological processes involving GPCRs.
机译:血管紧张素II 1型受体(AT1R)是一种G蛋白偶联受体(GPCR),是血压的重要调节剂。它是药物开发的目标,因为其功能异常与高血压,心脏肥大和心力衰竭有关。 AT1R由通过三个细胞外环和三个细胞内环连接的七个跨膜螺旋组成。 AT1R的细胞外环2(ECL2)直接与配体相互作用。该循环的目标是在几种先兆子痫,恶性高血压和同种异体血管排斥反应中激活AT1R的自身抗体。因此,我们提出AT1R中ECL2的构象在与激动剂和拮抗剂结合时受到差异调节。;我们通过报道受体-半胱氨酸可及性图谱在不同受体状态(即空,激动剂结合和受体结合)确定了AT1R中ECL2的构象。拮抗剂结合)。我们在缺少所有非必需半胱氨酸的受体替代物的ECL2的每个位置引入半胱氨酸,并用半胱氨酸反应性生物素探针测量了这些半胱氨酸的反应。生物素化的突变受体与链霉亲和素-HRP偶联抗体反应的能力被用作检查可及性差异的基础。ECL2的两个片段在空受体中可及,表明ECL2是开放构象。这些区段在受体的配体结合状态是不可接近的。使用可访问性约束,我们进行了分子动力学模拟,以预测受体不同状态下的ECL2构象。分析表明,在与激动剂和拮抗剂结合时会诱导ECL2的“盖子”构象,但会暴露由ECL2和TMIII之间高度保守的二硫键所界定的不同可及区段。我们建议配体诱导的ECL2-lid通过保守的二硫键与跨膜螺旋的运动耦合,以实现向受体活性状态的转变。;我们的研究揭示了ECL2与可扩散配体相互作用的能力,并采用了配体特异性“盖”构象。激动剂和拮抗剂在保守的二硫键周围诱导的不同构象表明,二硫键在产生受体的不同功能状态中起重要作用。 ECL2的动力学可能会调节受体激活的基本过程以及涉及GPCR的病理生理过程。

著录项

  • 作者

    Unal, Hamiyet.;

  • 作者单位

    Cleveland State University.;

  • 授予单位 Cleveland State University.;
  • 学科 Biology Molecular.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 191 p.
  • 总页数 191
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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