首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Intracellular activation of vasopressin V2 receptor mutants in nephrogenic diabetes insipidus by nonpeptide agonists
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Intracellular activation of vasopressin V2 receptor mutants in nephrogenic diabetes insipidus by nonpeptide agonists

机译:非肽激动剂对肾性尿崩症中加压素V2受体突变体的细胞内激活

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摘要

Binding of the peptide hormone vasopressin to its type-2 receptor (V2R) in kidney triggers a cAMP-mediated translocation of Aquaporin-2 water channels to the apical membrane, resulting in water reabsorption and thereby preventing dehydration. Mutations in the V2R gene lead to Nephrogenic Diabetes Insipidus (NDI), a disorder in which this process is disturbed, because the encoded, often intrinsically functional mutant V2 receptors are misfolded and retained in the endoplasmic reticulum (ER). Since plasma membrane expression is thought to be essential for V2R activation, cell permeable V2R antagonists have been used to induce maturation and rescue cell surface expression of V2R mutants, after which they need to be displaced by vasopressin for activation. Here, however, we show that 3 novel nonpeptide V2R agonists, but not vasopressin, activate NDI-causing V2R mutants at their intracellular location, without changing their maturation and at a sufficient level to induce the translocation of aquaporin-2 to the apical membrane. Moreover, in contrast to plasma membrane V2R, degradation of intracellular V2R mutants is not increased by their activation. Our data reveal that G protein-coupled receptors (GPCRs) normally active at the plasma membrane can be activated intracellularly and that intracellular activation does not induce their degradation; the data also indicate that nonpeptide agonists constitute highly promising therapeutics for diseases caused by misfolded GPCRs in general, and NDI in particular.
机译:肽激素加压素与其在肾脏中的2型受体(V2R)结合会触发cAMP介导的Aquaporin-2水通道向心尖的移位,从而导致水重吸收并从而防止脱水。 V2R基因中的突变会导致肾病性尿崩症(NDI),该过程被干扰,因为编码的,通常具有内在功能的突变型V2受体被错误折叠并保留在内质网(ER)中。由于人们认为质膜表达对于V2R激活至关重要,因此已经使用细胞可渗透的V2R拮抗剂来诱导V2R突变体成熟并拯救其细胞表面表达,之后需要通过加压素置换它们以进行激活。然而,在这里,我们显示了3种新型非肽V2R激动剂,而不是血管加压素,在其细胞内位置激活了引起NDI的V2R突变体,而没有改变其成熟度并以足够的水平诱导aquaporin-2转运至顶膜。而且,与质膜V2R相反,细胞内V2R突变体的降解不因其活化而增加。我们的数据表明,通常在质膜上有活性的G蛋白偶联受体(GPCR)可以在细胞内被激活,而细胞内的激活不会诱导它们的降解。数据还表明,非肽激动剂构成了针对一般由错误折叠的GPCR(尤其是NDI)引起的疾病的高度有前途的疗法。

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