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鉴定人ETA受体中配体结合和信号转导所需的特定细胞内结构域。

Identification of specific intracellular domains of the human ETA receptor required for ligand binding and signal transduction.

作者信息

Hashido K, Adachi M, Gamou T, Watanabe T, Furuichi Y, Miyamoto C

机构信息

Department of Molecular Genetics, Nippon Roche Research Center, Kamakura, Japan.

出版信息

Cell Mol Biol Res. 1993;39(1):3-12.

PMID:8287069
Abstract

We have investigated the function of the C-terminal and the third intracellular domains of the ETA receptor by expressing truncated and mutated ETA receptors in COS-7 and CHO cells. All the C-terminal truncated ETA receptors were produced at a similar expression level and were detected in the cell membrane using indirect immunostaining. The sizes of the truncated ETA receptors were decreased in proportion to the molecular mass of the truncated amino acid sequence. When the ligand binding activities were determined for various truncated ETA receptors, it was found that more than eight amino acid residues at the proximal cytoplasmic tail of the ETA receptor were required for ET-1 binding. In addition, the deletion of 16 C-terminal amino acid residues from the third intracellular loop severely decreased the ligand binding activity. It seems that deletion of these cytoplasmic domains of the ETA receptor influences the three-dimensional structure of the ligand binding site located in the extracellular domains. The ETA receptor required more than 13 amino acid residues in the proximity of C-terminal cytoplasmic tail and 10 amino acid residues in the C-terminal region of the third intracellular loop to induce the ET-1 dependent increase in intracellular calcium concentration. Both regions are possibly coupled with G-protein to transmit the ET-1 signal.

摘要

我们通过在COS-7和CHO细胞中表达截短和突变的ETA受体,研究了ETA受体C末端和第三个细胞内结构域的功能。所有C末端截短的ETA受体均以相似的表达水平产生,并使用间接免疫染色在细胞膜中检测到。截短的ETA受体的大小与截短氨基酸序列的分子量成比例减小。当测定各种截短的ETA受体的配体结合活性时,发现ETA受体近端细胞质尾上需要超过八个氨基酸残基才能结合ET-1。此外,从第三个细胞内环中删除16个C末端氨基酸残基会严重降低配体结合活性。似乎ETA受体这些细胞质结构域的缺失会影响位于细胞外结构域的配体结合位点的三维结构。ETA受体需要在C末端细胞质尾附近有超过13个氨基酸残基,在第三个细胞内环的C末端区域有10个氨基酸残基,才能诱导ET-1依赖性细胞内钙浓度升高。这两个区域可能都与G蛋白偶联以传递ET-1信号。

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