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基于靶向质谱法的突触后致密区(PSD)富集蛋白定量方法的开发。

Development of Targeted Mass Spectrometry-Based Approaches for Quantitation of Proteins Enriched in the Postsynaptic Density (PSD).

作者信息

Wilson Rashaun S, Rauniyar Navin, Sakaue Fumika, Lam TuKiet T, Williams Kenneth R, Nairn Angus C

机构信息

Yale/NIDA Neuroproteomics Center, New Haven, CT 06511, USA.

W.M Keck Biotechnology Resource Laboratory, Yale University School of Medicine, New Haven, CT 06511, USA.

出版信息

Proteomes. 2019 Apr 2;7(2):12. doi: 10.3390/proteomes7020012.

Abstract

The postsynaptic density (PSD) is a structural, electron-dense region of excitatory glutamatergic synapses, which is involved in a variety of cellular and signaling processes in neurons. The PSD is comprised of a large network of proteins, many of which have been implicated in a wide variety of neuropsychiatric disorders. Biochemical fractionation combined with mass spectrometry analyses have enabled an in-depth understanding of the protein composition of the PSD. However, the PSD composition may change rapidly in response to stimuli, and robust and reproducible methods to thoroughly quantify changes in protein abundance are warranted. Here, we report on the development of two types of targeted mass spectrometry-based assays for quantitation of PSD-enriched proteins. In total, we quantified 50 PSD proteins in a targeted, parallel reaction monitoring (PRM) assay using heavy-labeled, synthetic internal peptide standards and identified and quantified over 2100 proteins through a pre-determined spectral library using a data-independent acquisition (DIA) approach in PSD fractions isolated from mouse cortical brain tissue.

摘要

突触后致密区(PSD)是兴奋性谷氨酸能突触的一个结构致密、电子密度高的区域,它参与神经元中的多种细胞和信号传导过程。PSD由一个庞大的蛋白质网络组成,其中许多蛋白质与多种神经精神疾病有关。生化分级分离结合质谱分析能够深入了解PSD的蛋白质组成。然而,PSD的组成可能会因刺激而迅速变化,因此需要可靠且可重复的方法来全面量化蛋白质丰度的变化。在此,我们报告了两种基于靶向质谱的检测方法的开发,用于定量富集于PSD的蛋白质。我们总共使用重标记的合成内肽标准品,通过靶向平行反应监测(PRM)检测法定量了50种PSD蛋白,并通过数据非依赖采集(DIA)方法,利用预先确定的光谱库,在从小鼠大脑皮质组织分离的PSD组分中鉴定并定量了2100多种蛋白质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d4a6/6630806/87b408f61952/proteomes-07-00012-g001.jpg

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