首页> 外文期刊>Molecular pharmacology. >Ca(2+) requirement for high-affinity gamma-aminobutyric acid (GABA) binding at GABA(B) receptors: involvement of serine 269 of the GABA(B)R1 subunit.
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Ca(2+) requirement for high-affinity gamma-aminobutyric acid (GABA) binding at GABA(B) receptors: involvement of serine 269 of the GABA(B)R1 subunit.

机译:Ca(2+)要求在GABA(B)受体上具有高亲和力的γ-氨基丁酸(GABA):涉及GABA(B)R1亚基的丝氨酸269参与。

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The gamma-aminobutyric acid (GABA) receptor type B (GABA(B)R) is constituted of at least two homologous proteins, GABA(B)R1 and GABA(B)R2. These proteins share sequence and structural similarity with metabotropic glutamate and Ca(2+)-sensing receptors, both of which are sensitive to Ca(2+). Using rat brain membranes, we report here that the affinity of GABA and 3-aminopropylphosphinic acid for the GABA(B)R receptor is decreased by a factor >10 in the absence of Ca(2+). Such a large effect of Ca(2+) is not observed with baclofen or the antagonists CGP64213 and CGP56999A. In contrast to baclofen, the potency of GABA in stimulating GTPgammaS binding in rat brain membranes is also decreased by a factor >10 upon Ca(2+) removal. The potency for Ca(2+) in regulating GABA affinity was 37 microM. In cells expressing GABA(B)R1, the potency of GABA, but not of baclofen, in displacing bound (125)I-CGP64213 was similarly decreased in the absence of Ca(2+). To identify residues that are responsible for the Ca(2+) effect, the pharmacological profile and the Ca(2+) sensitivity of a series of GABA(B)R1 mutants were examined. The mutation of Ser269 into Ala was found to decrease the affinity of GABA, but not of baclofen, and the GABA affinity was found not to be affected upon Ca(2+) removal. Finally, the effect of Ca(2+) on the GABA(B) receptor function is no longer observed in cells coexpressing this GABA(B)R1-S269A mutant and the wild-type GABA(B)R2. Taken together, these results show that Ser269, which is conserved in the GABA(B)R1 protein from Caenorhabditis elegans to mammals, is critical for the Ca(2+)-effect on the heteromeric GABA(B) receptor.
机译:B型γ-氨基丁酸(GABA)受体(GABA(B)R)由至少两种同源蛋白GABA(B)R1和GABA(B)R2组成。这些蛋白质与代谢型谷氨酸和Ca(2+)感应受体共享序列和结构相似性,它们都对Ca(2+)敏感。使用大鼠脑膜,我们在这里报告说,在不存在Ca(2+)的情况下,GABA和3-氨基丙基次膦酸对GABA(B)R受体的亲和力降低了> 10倍。用巴氯芬或拮抗剂CGP64213和CGP56999A未观察到如此大的Ca(2+)作用。与巴氯芬相反,GABA刺激大鼠脑膜中GTPgammaS结合的能力也因Ca(2+)去除而降低了10倍以上。 Ca(2+)调节GABA亲和力的效能为37 microM。在表达GABA(B)R1的细胞中,在不存在Ca(2+)的情况下,取代结合的(125)I-CGP64213的GABA而不是巴氯芬的效价也有所降低。为了识别负责Ca(2+)效应的残基,检查了一系列GABA(B)R1突变体的药理作用和Ca(2+)敏感性。发现Ser269突变为Ala会降低GABA的亲和力,但不会降低巴氯芬的亲和力,而且发现Ca(2+)去除对GABA的亲和力没有影响。最后,在共表达该GABA(B)R1-S269A突变体和野生型GABA(B)R2的细胞中不再观察到Ca(2+)对GABA(B)受体功能的影响。综上所述,这些结果表明,从秀丽隐杆线虫到哺乳动物的GABA(B)R1蛋白中保守的Ser269对于Ca(2+)对异源GABA(B)受体的作用至关重要。

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