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Mapping peptide thiol accessibility in membranes using a quaternary ammonium isotope-coded mass tag (ICMT)

机译:使用季铵同位素编码质量标签(ICMT)绘制膜中肽硫醇的可及性

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摘要

The plasma membrane contains a diverse array of proteins, including receptors, channels, and signaling complexes, that serve as decision-making centers. Investigation of membrane protein topology is important for understanding the function of these types of protein. Here, we report a method to determine protein topology in the membrane that utilizes labeling of cysteine with isotope-coded mass tags. The mass tags contain a thiol reactive moiety, linker, and a quaternary ammonium group to aid ionization in the mass spectrometer and were synthesizes as both light and heavy (deuterated) forms. The probes were found to be membrane impermeable when applied to lipid vesicles. To assess the utility of the probes for mapping peptide thiol topology, we employed a two-step labeling procedure. Vesicles containing α-helical transmembrane peptides were labeled with heavy (or light) probe, solubilized by detergent, and then labeled by an excess of the complementary probe. Peptide for which the cysteine was oriented in the center of the lipid bilayer was not labeled until the lipid vesicles were lysed with detergent, consistent with the membrane impermeability of the probes and reduced ionization of the thiol in the hydrophobic membrane. Peptide for which the cysteine was positioned in the head group zone of the lipid bilayer was labeled rapidly. Peptide for which the cysteine was positioned below the head group abutting the hydrocarbon region was labeled at a reduced rate compared to the fully accessible cysteine. Moreover, the effect of lipid bilayer structure on the kinetics of peptide and lipid flipping in the bilayer was readily measured with our two-step labeling method. The small sample size required, the ease and rapidity of sample preparation, and the amenability of MALDI-TOF mass spectral to analysis in the presence of lipids will enable future facile investigation of membrane proteins in a cellular context.
机译:质膜包含各种各样的蛋白质,包括受体,通道和信号复合物,可作为决策中心。膜蛋白拓扑的研究对于理解这些类型的蛋白的功能很重要。在这里,我们报告一种确定膜中蛋白质拓扑结构的方法,该方法利用了具有同位素编码质量标签的半胱氨酸标记。质量标签包含一个巯基反应性部分,一个连接基和一个季铵基团,以帮助质谱仪中的电离,并以轻和重(氘代)形式合成。发现当将探针应用于脂质囊泡时它们是膜不可渗透的。为了评估探针用于定位肽硫醇拓扑的实用性,我们采用了两步标记程序。用重(或轻)探针标记含有α-螺旋跨膜肽的囊泡,用去污剂溶解,然后用过量的互补探针标记。半胱氨酸在脂质双层中心定位的肽直到用清洁剂溶解脂质囊泡才被标记,这与探针的膜不渗透性和疏水膜中硫醇的离子化减少一致。快速标记半胱氨酸位于脂质双层的头部区域的肽。与完全可接近的半胱氨酸相比,半胱氨酸位于与烃区域邻接的头部基团下方的肽的标记率降低了。此外,脂质两层结构对肽动力学和双层中脂质翻转的影响很容易用我们的两步标记方法测量。所需的小样本量,样品制备的简便性和快速性以及MALDI-TOF质谱在存在脂质的情况下进行分析的能力,将使将来在细胞范围内对膜蛋白的研究变得容易。

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