Structural studies of the human α1 glycine receptor via site-specific chemical cross-linking coupled with mass spectrometry.

IF 2.4 Q3 BIOPHYSICS
Rathna J Veeramachaneni, Chelsee A Donelan, Kayce A Tomcho, Shaili Aggarwal, David J Lapinsky, Michael Cascio
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引用次数: 0

Abstract

By identifying distance constraints, chemical cross-linking coupled with mass spectrometry (CX-MS) can be a powerful complementary technique to other structural methods by interrogating macromolecular protein complexes under native-like conditions. In this study, we developed a CX-MS approach to identify the sites of chemical cross-linking from a single targeted location within the human α1 glycine receptor (α1 GlyR) in its apo state. The human α1 GlyR belongs to the family of pentameric ligand-gated ion channel receptors that function in fast neurotransmission. A single chemically reactive cysteine was reintroduced into a Cys null α1 GlyR construct at position 41 within the extracellular domain of human α1 homomeric GlyR overexpressed in a baculoviral system. After purification and reconstitution into vesicles, methanethiosulfonate-benzophenone-alkyne, a heterotrifunctional cross-linker, was site specifically attached to Cys41 via disulfide bond formation. The resting receptor was then subjected to UV photocross-linking. Afterward, monomeric and oligomeric α1 GlyR bands from SDS-PAGE gels were trypsinized and analyzed by tandem MS in bottom-up studies. Dozens of intrasubunit and intersubunit sites of α1 GlyR cross-linking were differentiated and identified from single gel bands of purified protein, showing the utility of this experimental approach to identify a diverse array of distance constraints of the α1 GlyR in its resting state. These studies highlight CX-MS as an experimental approach to identify chemical cross-links within full-length integral membrane protein assemblies in a native-like lipid environment.

通过位点特异性化学交联与质谱联用技术对人类 α1 甘氨酸受体进行结构研究
化学交联与质谱联用(CX-MS)通过识别距离限制,可以在类似原生条件下检测大分子蛋白质复合物,是对其他结构方法的有力补充。在这项研究中,我们开发了一种 CX-MS 方法,以确定人α1 甘氨酸受体(α1 GlyR)在其apo 状态下单个目标位置的化学交联位点。人类 α1 GlyR 属于五聚体配体门控离子通道受体(pLGIC)家族,在快速神经传递中发挥作用。在双螺旋病毒系统中过表达的人类α1同源GlyR胞外结构域的第41位,一个单一的化学反应半胱氨酸被重新导入到Cys缺失的α1 GlyR构建体中。纯化并重组为囊泡后,通过二硫键的形成,将异源交联剂甲硫磺酸-苯甲酮-炔与 Cys41 特异性连接。然后对静止的受体进行紫外光交联。随后,将 SDS-PAGE 凝胶中的α1 GlyR 单体和寡聚体条带胰蛋白酶化,并通过串联质谱进行自下而上的研究分析。从纯化蛋白质的单个凝胶条带中区分并鉴定出了数十个 α1 GlyR 交联的亚基内和亚基间位点,显示了这种实验方法在鉴定静止状态下 α1 GlyR 的各种距离限制方面的实用性。这些研究突出表明,CX-MS 是一种实验方法,可用于鉴别全长完整膜蛋白集合体在类似原生脂质环境中的化学交联。
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来源期刊
Biophysical reports
Biophysical reports Biophysics
CiteScore
2.40
自引率
0.00%
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0
审稿时长
75 days
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