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A transmembrane helix-bundle from G-protein coupled receptor CB2: Biosynthesis, purification, and NMR characterization

机译:来自G蛋白偶联受体CB2的跨膜螺旋束:生物合成,纯化和NMR表征

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摘要

The cannabinoid receptor subtype 2 (CB2) is a member of the G-protein coupled receptor (GPCR) superfamily. As the relationship between structure and function for this receptor remains poorly understood, the present study was undertaken to characterize the structure of a segment including the first and second transmembrane helix (TM1 and TM2) domains of CB2. To accomplish this, a transmembrane double-helix bundle from this region was expressed, purified, and characterized by NMR. Milligrams of this hydrophobic fragment of the receptor were biosynthesized using a fusion protein overexpression strategy and purified by affinity chromatography combined with reverse phase HPLC. Chemical and enzymatic cleavage methods were implemented to remove the fusion tag. The resultant recombinant protein samples were analyzed and confirmed by HPLC, mass spectrometry, and circular dichroism (CD). The CD analyses of HPLC-purified protein in solution and in DPC micelle preparations suggested predominant alpha-helical structures under both conditions. The (ClN)-Cl-13-N-15 double-labeled protein CB2(27-101) was further verified and analyzed by NMR spectroscopy. Sequential assignment was accomplished for more than 80% of residues. The N-15 HSQC NMR results show a clear chemical shift dispersion of the amide nitrogen-proton correlation indicative of a pure double-labeled polypeptide molecule. The results suggest that this method is capable of generating transmembrane helical bundles from GPCRs in quantity and purity sufficient for NMR and other biophysical studies. Therefore, the biosynthesis of GPCR transmembrane helix bundles represents a satisfactory alternative strategy to obtain and assemble NMR structures from recombinant "building blocks." (c) 2006 Wiley Periodicals, Inc.
机译:大麻素受体亚型2(CB2)是G蛋白偶联受体(GPCR)超家族的成员。由于对该受体的结构和功能之间的关系仍然知之甚少,因此进行本研究以表征包括CB2的第一和第二跨膜螺旋(TM1和TM2)结构域的节段的结构。为此,表达,纯化并通过NMR表征了来自该区域的跨膜双螺旋束。使用融合蛋白过表达策略生物合成毫克数的受体疏水片段,并通过亲和色谱和反相HPLC进行纯化。实施化学和酶切方法以去除融合标签。分析所得重组蛋白样品,并通过HPLC,质谱和圆二色性(CD)进行确认。溶液和DPC胶束制剂中HPLC纯化蛋白的CD分析表明,在两种条件下,α-螺旋结构均占优势。进一步验证了(ClN)-Cl-13-N-15双标记蛋白CB2(27-101),并通过NMR光谱分析。超过80%的残基完成了顺序分配。 N-15 HSQC NMR结果显示酰胺氮-质子相关性的清晰化学位移分散,表明纯双标记的多肽分子。结果表明,该方法能够从GPCR产生数量和纯度足以用于NMR和其他生物物理研究的跨膜螺旋束。因此,GPCR跨膜螺旋束的生物合成代表了一种令人满意的替代策略,可从重组“构件”获得并组装NMR结构。 (c)2006年Wiley Periodicals,Inc.

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