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使用无标记方法对小鼠前脑和后脑的膜蛋白进行差异分析。

Differential analysis of membrane proteins in mouse fore- and hindbrain using a label-free approach.

作者信息

Le Bihan Thierry, Goh Theo, Stewart Ian I, Salter Anne Marie, Bukhman Yury V, Dharsee Moyez, Ewing Rob, Wiśniewski Jacek R

机构信息

Protana, Inc., Toronto, Ontario, Canada.

出版信息

J Proteome Res. 2006 Oct;5(10):2701-10. doi: 10.1021/pr060190y.

Abstract

The ability to quantitatively compare protein levels across different regions of the brain to identify disease mechanisms remains a fundamental research challenge. It requires both a robust method to efficiently isolate proteins from small amounts of tissue and a differential technique that provides a sensitive and comprehensive analysis of these proteins. Here, we describe a proteomic approach for the quantitative mapping of membrane proteins between mouse fore- and hindbrain regions. The approach focuses primarily on a recently developed method for the fractionation of membranes and on-membrane protein digestion, but incorporates off-line SCX-fractionation of the peptide mixture and nano-LC-MS/MS analysis using an LTQ-FT-ICR instrument as part of the analytical method. Comparison of mass spectral peak intensities between samples, mapping of peaks to peptides and protein sequences, and statistical analysis were performed using in-house differential analysis software (DAS). In total, 1213 proteins were identified and 967 were quantified; 81% of the identified proteins were known membrane proteins and 38% of the protein sequences were predicted to contain transmembrane helices. Although this paper focuses primarily on characterizing the efficiency of this purification method from a typical sample set, for many of the quantified proteins such as glutamate receptors, GABA receptors, calcium channel subunits, and ATPases, the observed ratios of protein abundance were in good agreement with the known mRNA expression levels and/or intensities of immunostaining in rostral and caudal regions of murine brain. This suggests that the approach would be well-suited for incorporation in more rigorous, larger scale quantitative analysis designed to achieve biological significance.

摘要

在不同脑区之间对蛋白质水平进行定量比较以确定疾病机制的能力,仍然是一项基础性的研究挑战。这既需要一种强大的方法来从少量组织中高效分离蛋白质,也需要一种差异分析技术,能够对这些蛋白质进行灵敏且全面的分析。在此,我们描述了一种蛋白质组学方法,用于对小鼠前脑和后脑区域之间的膜蛋白进行定量图谱分析。该方法主要聚焦于一种最近开发的膜分离和膜上蛋白质消化方法,但将肽混合物的离线强阳离子交换(SCX)分离以及使用LTQ-FT-ICR仪器的纳升液相色谱-串联质谱(nano-LC-MS/MS)分析纳入分析方法。使用内部差异分析软件(DAS)对样品之间的质谱峰强度进行比较、将峰映射到肽段和蛋白质序列,并进行统计分析。总共鉴定出1213种蛋白质,其中967种被定量;鉴定出的蛋白质中81%是已知的膜蛋白,38%的蛋白质序列预计含有跨膜螺旋。尽管本文主要关注从典型样本集表征这种纯化方法的效率,但对于许多定量的蛋白质,如谷氨酸受体、γ-氨基丁酸(GABA)受体、钙通道亚基和ATP酶,观察到的蛋白质丰度比值与小鼠脑前后区域已知的mRNA表达水平和/或免疫染色强度高度一致。这表明该方法非常适合纳入更严格、更大规模的定量分析,以实现生物学意义。

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