Zhang Xi
Independent Researcher, Montreal, QC, H2Y 1H3, Canada.
F1000Res. 2017 Jan 30;6:89. doi: 10.12688/f1000research.10667.1. eCollection 2017.
Recent research shows surging interest to visualize human G protein-coupled receptor (GPCR) dynamic structures using the bottom-up H/D-exchange (HDX) proteomics technology. This opinion article clarifies critical technical nuances and logical thinking behind the GPCR HDX proteomics method, to help scientists overcome cross-discipline pitfalls, and understand and reproduce the protocol at high quality. The 2010 89% HDX structural coverage of GPCR was achieved with both structural and analytical rigor. This article emphasizes systematically considering membrane protein structure stability and compatibility with chromatography and mass spectrometry (MS) throughout the pipeline, including the effects of metal ions, zero-detergent shock, and freeze-thaws on HDX result rigor. This article proposes to view bottom-up HDX as two steps to guide choices of detergent buffers and chromatography settings: (I) protein HDX labeling in native buffers, and (II) peptide-centric analysis of HDX labels, which applies (a) bottom-up MS/MS to construct peptide matrix and (b) HDX MS to locate and quantify H/D labels. The detergent-low-TCEP digestion method demystified the challenge of HDX-grade GPCR digestion. GPCR HDX proteomics is a structural approach, thus its choice of experimental conditions should let structure lead and digestion follow, not the opposite.
最近的研究表明,人们对使用自下而上的氢/氘交换(H/D-exchange,HDX)蛋白质组学技术来可视化人类G蛋白偶联受体(GPCR)动态结构的兴趣激增。这篇观点文章阐明了GPCR HDX蛋白质组学方法背后的关键技术细节和逻辑思路,以帮助科学家克服跨学科陷阱,并高质量地理解和重现该实验方案。2010年对GPCR实现了89%的HDX结构覆盖率,且在结构和分析上都很严谨。本文强调在整个流程中系统地考虑膜蛋白结构稳定性以及与色谱和质谱(MS)的兼容性,包括金属离子、零去污剂冲击以及冻融对HDX结果严谨性的影响。本文建议将自下而上的HDX视为两个步骤,以指导去污剂缓冲液和色谱设置的选择:(I)在天然缓冲液中进行蛋白质HDX标记,以及(II)以肽为中心分析HDX标记,这应用了(a)自下而上的MS/MS来构建肽矩阵,以及(b)HDX MS来定位和定量H/D标记。低去污剂-三(2-羧乙基)膦消化方法揭开了HDX级GPCR消化挑战的神秘面纱。GPCR HDX蛋白质组学是一种结构方法,因此其实验条件的选择应该结构先行、消化随后,而不是相反。