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参与β2 - 肾上腺素能受体脱敏和隔离的新分子和结构决定因素。利用嵌合β3/β2 - 肾上腺素能受体进行的描述。

New molecular and structural determinants involved in beta 2-adrenergic receptor desensitization and sequestration. Delineation using chimeric beta 3/beta 2-adrenergic receptors.

作者信息

Jockers R, Da Silva A, Strosberg A D, Bouvier M, Marullo S

机构信息

CNRS-UPR 0415 and Universite Paris VII, France.

出版信息

J Biol Chem. 1996 Apr 19;271(16):9355-62. doi: 10.1074/jbc.271.16.9355.

Abstract

As the beta 3-adrenergic receptor (beta3AR) is resistant to short term agonist-promoted desensitization and sequestration, chimeric beta3/beta2 receptors were generated to identify the molecular determinants responsible for these regulatory processes in the beta2AR. By exchanging single or multiple intracellular domains of the beta3AR for the corresponding regions of the beta2AR, we show that specific domains can be identified as additive determinants for desensitization, while sequestration is more dependent on global structural conformation. The carboxyl-terminal tail, the third and the second intracellular loops of the beta2AR provided additive contributions to the desensitization observed upon short term agonist stimulation. The second intracellular loop plays a role which is as important as that of third cytoplasmic loop and carboxyl-terminal tail which had previously been identified as the major determinants of agonist-promoted desensitization. Additive contributions of the cytoplasmic domains of the beta2AR were also observed for agonist-promoted sequestration. The substitution of the first and second intracellular loops and the carboxyl tail were associated with a beta2-like sequestration phenotype. However, in contrast to what is observed for desensitization the co-substitution of the third cytoplasmic loop with any of the other domains completely suppressed sequestration. These results suggest that sequestration depends not only on appropriate interactions of multiple molecular determinants within the cytoplasmic region of the beta2AR but also on conformational determinants that may influence their orientation.

摘要

由于β3 - 肾上腺素能受体(β3AR)对短期激动剂促进的脱敏和隔离具有抗性,因此构建了嵌合β3/β2受体,以确定负责β2AR中这些调节过程的分子决定因素。通过将β3AR的单个或多个细胞内结构域替换为β2AR的相应区域,我们发现特定结构域可被确定为脱敏的累加决定因素,而隔离则更依赖于整体结构构象。β2AR的羧基末端尾巴、第三个和第二个细胞内环对短期激动剂刺激后观察到的脱敏有累加作用。第二个细胞内环发挥的作用与第三个细胞质环和羧基末端尾巴同样重要,而后者先前已被确定为激动剂促进的脱敏的主要决定因素。对于激动剂促进的隔离,也观察到了β2AR细胞质结构域的累加作用。第一个和第二个细胞内环以及羧基尾巴的替换与β2样隔离表型相关。然而,与脱敏情况不同的是,第三个细胞质环与任何其他结构域的共同替换完全抑制了隔离。这些结果表明,隔离不仅取决于β2AR细胞质区域内多个分子决定因素的适当相互作用,还取决于可能影响其方向的构象决定因素。

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