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嗜盐菌中G蛋白偶联受体结构域的过表达:七螺旋膜蛋白中的长程跨膜相互作用

G-protein-coupled receptor domain overexpression in Halobacterium salinarum: long-range transmembrane interactions in heptahelical membrane proteins.

作者信息

Jaakola Veli-Pekka, Rehn Maria, Moeller Martina, Alexiev Ulrike, Goldman Adrian, Turner George J

机构信息

Structural Biology and Biophysics, Institute of Biotechnology, University of Helsinki, Helsinki, Finland.

出版信息

Proteins. 2005 Aug 15;60(3):412-23. doi: 10.1002/prot.20498.

Abstract

The aminergic alpha(2b)-adrenergic receptor (alpha(2b)-AR) third intracellular loop (alpha(2b)-AR 3i) mediates receptor subcellular compartmentalization and signal transduction processes via ligand-dependent interaction with G(i)- and G(o)- proteins. To understand the structural origins of these processes we engineered several lengths of alpha(2b)-AR 3i into the third intracellular loop of the proton pump bacteriorhodopsin (bR) and produced the fusion proteins in quantities suitable for physical studies. The fusion proteins were expressed in the Archaeon Halobacterium salinarum and purified. A highly expressed fusion protein was crystallized from bicelles and diffracted to low resolution on an in-house diffractometer. The bR-alpha(2b)-AR 3i(203-292) protein possessed a photocycle slightly perturbed from that of the wild-type bR. The first half of the fusion protein photocycle, correlated with proton release, is accelerated by a factor of 3, whereas the second half, correlated with proton uptake, is slightly slower than wild-type bR. In addition, there is a large decrease in the pK(a), (from 9.6 to 8.3) of the terminal proton release group in the unphotolyzed state of bR-alpha(2b)-AR 3i as deduced from the pH-dependence of the M-formation. Perturbation of a cytoplasmic loop has thus resulted in the perturbation of proton release at the extracellular surface. The current work indicates that long-range and highly coupled intramolecular interactions exist that are capable of "transducing" structural perturbations (e.g., signals) across the cellular membrane. This gene fusion approach may have general applicability for physical studies of G-protein-coupled receptor domains in the context of the bR structural scaffold.

摘要

胺能α(2b)-肾上腺素能受体(α(2b)-AR)的第三细胞内环(α(2b)-AR 3i)通过与G(i)和G(o)蛋白的配体依赖性相互作用介导受体亚细胞区室化和信号转导过程。为了理解这些过程的结构起源,我们将几种长度的α(2b)-AR 3i构建到质子泵细菌视紫红质(bR)的第三细胞内环中,并制备了适合进行物理研究的融合蛋白量。融合蛋白在古菌盐生盐杆菌中表达并纯化。一种高表达的融合蛋白从双分子层中结晶出来,并在内部衍射仪上衍射到低分辨率。bR-α(2b)-AR 3i(203 - 292)蛋白的光循环与野生型bR相比略有扰动。融合蛋白光循环的前半部分与质子释放相关,加速了3倍,而后半部分与质子摄取相关,比野生型bR略慢。此外,从未光解状态的bR-α(2b)-AR 3i的M形成的pH依赖性推断,末端质子释放基团的pK(a)大幅下降(从9.6降至8.3)。因此,细胞质环的扰动导致了细胞外表面质子释放的扰动。目前的工作表明存在长程且高度耦合的分子内相互作用,能够在细胞膜上“转导”结构扰动(例如信号)。这种基因融合方法可能在bR结构支架的背景下对G蛋白偶联受体结构域的物理研究具有普遍适用性。

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