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细胞和小鼠中基于中子编码稳定同位素标记的多重蛋白质组分析。

Multiplexed proteome analysis with neutron-encoded stable isotope labeling in cells and mice.

机构信息

Genome Center, University of Wisconsin-Madison, Madison, Wisconsin, USA.

Morgridge Institute for Research, Madison, Wisconsin, USA.

出版信息

Nat Protoc. 2018 Jan;13(1):293-306. doi: 10.1038/nprot.2017.121. Epub 2018 Jan 11.

Abstract

We describe a protocol for multiplexed proteomic analysis using neutron-encoded (NeuCode) stable isotope labeling of amino acids in cells (SILAC) or mice (SILAM). This method currently enables simultaneous comparison of up to nine treatment and control proteomes. Another important advantage over traditional SILAC/SILAM is that shorter labeling times are required. Exploiting the small mass differences that correspond to subtle differences in the neutron-binding energies of different isotopes, the amino acids used in NeuCode SILAC/SILAM differ in mass by just a few milliDaltons. Isotopologs of lysine are introduced into cells or mammals, via the culture medium or diet, respectively, to metabolically label the proteome. Labeling time is ∼2 weeks for cultured cells and 3-4 weeks for mammals. The proteins are then extracted, relevant samples are combined, and these are enzymatically digested with lysyl endopeptidase (Lys-C). The resultant peptides are chromatographically separated and then mass analyzed. During mass spectrometry (MS) data acquisition, high-resolution MS spectra (≥240,000 resolving power at m/z = 400) reveal the embedded isotopic signatures, enabling relative quantification, while tandem mass spectra, collected at lower resolutions, provide peptide identities. Both types of spectra are processed using NeuCode-enabled MaxQuant software. In total, the approximate completion time for the protocol is 3-5 weeks.

摘要

我们描述了一种使用中子编码(NeuCode)稳定同位素标记细胞(SILAC)或小鼠(SILAM)中的氨基酸进行多重蛋白质组分析的方案。该方法目前可同时比较多达 9 种处理组和对照组的蛋白质组。与传统的 SILAC/SILAM 相比,另一个重要优势是需要更短的标记时间。利用对应于不同同位素中子结合能细微差异的微小质量差异,NeuCode SILAC/SILAM 中使用的氨基酸在质量上仅相差几个毫道尔顿。赖氨酸的同位素通过培养基或饮食分别被引入细胞或哺乳动物中,以代谢标记蛋白质组。培养细胞的标记时间约为 2 周,哺乳动物的标记时间为 3-4 周。然后提取蛋白质,将相关样品组合,并使用赖氨酰内肽酶(Lys-C)对其进行酶消化。所得肽段通过色谱法分离,然后进行质量分析。在质谱(MS)数据采集过程中,高分辨率 MS 谱(在 m/z = 400 时≥240,000 的分辨率)揭示了嵌入式同位素特征,从而实现相对定量,而在较低分辨率下收集的串联质谱则提供了肽的鉴定。这两种类型的光谱都使用支持 NeuCode 的 MaxQuant 软件进行处理。总的来说,该方案的大约完成时间为 3-5 周。

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