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Identification of Acidic Residues in the Extracellular Loops of the Seven-transmembrane Domain of the Human Ca2+ Receptor Critical for Response to Ca2+ and a Positive Allosteric Modulator*

机译:鉴定人Ca2 +受体七跨膜结构域的细胞外环中的酸性残基对Ca2 +和正构构调节剂的响应至关重要*

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摘要

We investigated the role of the eight acidic residues in the extracellular loops (exo-loops) of the seven-transmembrane domain of the human Ca2+ receptor (hCaR) in receptor activation by Ca2+ and in response to a positive allosteric modulator, NPS R-568. Both in the context of the full-length receptor and of a truncated receptor lacking the extracellular domain (Rho-C-hCaR), we mutated each acidic residue to alanine, singly and in combination, and tested the effect on expression of the receptor, on activation by Ca2+, and on NPS R-568 augmentation of sensitivity to Ca2+. Of the eight acidic residues, mutation of any of three in exo-loop 2, Asp758, Glu759, and Glu767, increased the sensitivity of both the full-length hCaR and of Rho-C-hCaR to activation by Ca2+. Mutation of all five acidic residues in exo-loop 2, whether in the full-length receptor or in Rho-C-hCaR, impaired cell surface expression of the mutant receptor and thereby largely abolished response to Ca2+. Mutation of Glu837 in exo-loop 3 to alanine did not alter Ca2+ sensitivity of the full-length receptor, but in both the latter context and in Rho-C-hCaR, alanine substitution of Glu837 drastically reduced sensitivity to NPS R-568. Our data point to a key role of three specific acidic residues in exo-loop 2 in hCaR activation and to Glu837 at the junction between exo-loop 3 and transmembrane helix seven in response to NPS R-568. We speculate on the basis of these results that the three acidic residues we identified in exo-loop 2 help maintain an inactive conformation of the seven-transmembrane domain of the hCaR.
机译:我们研究了人类Ca 2 + 受体(hCaR)的七个跨膜结构域的细胞外环(exo环)中的八个酸性残基在Ca 2激活受体中的作用+ 并响应变构调节剂NPS R-568。在全长受体和缺乏细胞外结构域的截短受体(Rho-C-hCaR)的背景下,我们将每个酸性残基单独或组合突变为丙氨酸,并测试了对受体表达的影响, Ca 2 + 激活后,以及NPS R-568对Ca 2 + 的敏感性增加时。在这8个酸性残基中,exo环2,Asp 758 ,Glu 759 和Glu 767 中的三个突变都增加了全长hCaR和Rho-C-hCaR对Ca 2 + 激活的敏感性exo-loop 2中所有五个酸性残基的突变,无论是在全长受体中还是在Rho-C-hCaR中,均会破坏突变体受体的细胞表面表达,从而大大消除对Ca 2 + 。 exo-loop 3中Glu 837 突变为丙氨酸不会改变全长受体的Ca 2 + 敏感性,但在后者和Rho-C中均如此-hCaR,Glu 837 的丙氨酸取代会大大降低对NPS R-568的敏感性。我们的数据表明,exo-loop 2中的三个特定酸性残基在hCaR激活中起关键作用,并且在exo-loop 3和跨膜螺旋七之间的交界处的Glu 837 响应NPS R-568 。我们根据这些结果推测,我们在exo-loop 2中鉴定出的三个酸性残基有助于维持hCaR的七个跨膜结构域的非活性构象。

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