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Cross-Linking-Mass Spectrometry Studies of Cholesterol Interactions with Human α1 Glycine Receptor

机译:与人α1甘氨酸受体胆固醇相互作用的交联质谱研究

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摘要

The glycine receptor (GlyR) belongs to a superfamily of pentameric ligand-gated ion channels (pLGICs) that mediate fast neurotransmission. GlyR typically modulates inhibitory transmission by antagonizing membrane depolarization through anion influx. Allosteric interactions between the receptor and its lipid surroundings affect receptor function, and cholesterol is essential for pLGIC activity. Cholesterol at compositions below ?33 mol percent has been shown to have negligible chemical activity, suggesting that specific interactions between membrane proteins and cholesterol become significant only at concentrations above this stoichiometric threshold. Human α1 GlyR was purified from baculovirus infected insect cells and reconstituted in unilamellar vesicles at cholesterol/lipid ratios above and below the cholesterol activity threshold with equivalent aliquots of azi-cholesterol, a photoactivatable nonspecific cross-linker. After photoactivation, cross-linked cholesterol-GlyR was trypsinized and mass fingerprinted. Mass shifted peptides containing cholesterol were identified by electrospray ionization quadrupole time-of-flight mass spectrometry (ESI-Q-TOF MS), and sites of direct covalent attachment to peptides were refined by targeted MS/MS. Differential patterns of dozens of cholesterol-GlyR cross-links were identified in these comparative studies, with sites of cross-linking found primarily in the fourth transmembrane helix and extramembranous connecting loops and mapping the lipid-accessible surface of the receptor. Unique cross-linking observed in both reduced and elevated cholesterol composition suggests different apo-state structural conformations of GlyR as a function of cholesterol concentration and, in the latter studies, identified potential specific binding sites for cholesterol in the receptor.
机译:甘氨酸受体(GLYR)属于介导快神经递质的五聚体配体门通道(PLGICS)的超家族。 GLYR通常通过阴离子流入拮抗膜去氧来调节抑制率。受体与其脂质周围环境之间的变构相互作用影响受体功能,胆固醇对综合体活性至关重要。胆固醇在以下组合物中α33摩尔百分比具有可忽略的化学活性,表明膜蛋白和胆固醇之间的特异性相互作用仅以高于该化学计量阈值的浓度显着。从Baculovirus感染的昆虫细胞纯化人α1glyr,并在胆固醇/脂质比的胆固醇活性阈值下与胆固醇活性阈值重构,其等分试样的Azi-胆固醇,一种可光活化的非特异性交联剂。光活化后,交联胆固醇 - GLYR是胰蛋白酶化和质量指纹纹理。通过电喷雾电离四极其飞行时间质谱(ESI-Q-TOF MS)鉴定含有胆固醇的质量偏移肽,并通过靶向MS / MS改进与肽的直接共价附着的位点。在这些比较研究中鉴定了数十种胆固醇 - GLYR交联的差异模式,其具有主要在第四跨膜螺旋和含氮杂化连接环中的交联位点,并将受体的脂质可接近的表面映射。在减少和升高的胆固醇组合物中观察到的独特交联表明GLYR的不同APO状态结构构象作为胆固醇浓度的函数,并且在后一种研究中,鉴定了受体中胆固醇的潜在特异性结合位点。

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  • 来源
    《Analytical chemistry》 |2018年第4期|共9页
  • 作者单位

    Department of Chemistry and Biochemistry Duquesne University 600 Forbes Avenue Pittsburgh Pennsylvania 15282 United States;

    Department of Chemistry and Biochemistry Duquesne University 600 Forbes Avenue Pittsburgh Pennsylvania 15282 United States;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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