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扩展范围蛋白质组学分析(ERPA):一种新型且灵敏的液相色谱-质谱平台,用于对具有广泛翻译后修饰的复杂蛋白质进行高序列覆盖——β-酪蛋白和表皮生长因子受体(EGFR)的综合分析。

Extended Range Proteomic Analysis (ERPA): a new and sensitive LC-MS platform for high sequence coverage of complex proteins with extensive post-translational modifications-comprehensive analysis of beta-casein and epidermal growth factor receptor (EGFR).

作者信息

Wu Shiaw-Lin, Kim Jeongkwon, Hancock William S, Karger Barry

机构信息

Barnett Institute and Department of Chemistry, Northeastern University, Boston, MA 02115, USA.

出版信息

J Proteome Res. 2005 Jul-Aug;4(4):1155-70. doi: 10.1021/pr050113n.

Abstract

We have developed a new and sensitive LC-MS platform, Extended Range Proteomic Analysis (ERPA), which is able to achieve very high sequence coverage and comprehensive characterization of post-translational modifications in complex proteins. This new platform provides advantages of both the top-down and bottom-up proteomic approaches by combining (i) digestion of the protein with an enzyme, such as Lys-C, which cuts less frequently than trypsin, leading to on average a higher molecular weight peptide size, (ii) high-performance LC separation of the resulting fragments, (iii) a new data acquisition strategy using the LTQ-FTMS, a hybrid mass spectrometer that couples a linear ion trap with a Fourier transform ion cyclotron resonance (FTICR) cell, for analysis of peptides in the range of 0.5 to 10 kDa, and (iv) new data analysis methods for assigning large peptide structures and determining the site of attachment of post-translational modifications as well as structural features from the accurate precursor mass together with MS(2) and MS(3) fragmentations. The LC retention of the Lys-C fragments is increased, relative to a tryptic digest, due to the generally greater hydrophobicity of the larger peptides, a result that is particularly important for peptides containing hydrophilic modifications such as glycosylation and phosphorylation. Furthermore, additional positively charged arginine and lysine residues in the Lys-C fragments enhance the sensitivity of the post-translationally modified phospho- and glycopeptides by at least 10-fold relative to tryptic fragments. In typical operation, the FTICR cell provides a survey scan with the high mass resolution (> 100 000) and accurate mass (<2 ppm) to characterize the higher charge-state precursor ions of the larger peptides. In parallel, the linear ion trap provides MS(2) and MS(3) fragmentation spectra, with a scan speed sufficiently fast for on-line LC-MS. Together, these data provide multiple means to determine or enhance the confidence of assignment of large or complicated peptide. Using ERPA, we demonstrate >95% sequence coverage in the analysis of two heavily phosphorylated and glycosylated proteins, beta-casein at the 50 fmole level and the epidermal growth factor receptor (EGFR) at the 1 pmole level. In summary, the combination of digestion strategy, high-performance separation, and the hybrid LTQ-FTMS instrument enables comprehensive characterization of large proteins, including posttranslational modifications.

摘要

我们开发了一种新型且灵敏的液相色谱-质谱平台,即扩展范围蛋白质组分析(ERPA),它能够实现非常高的序列覆盖率,并对复杂蛋白质中的翻译后修饰进行全面表征。这个新平台结合了以下几点,兼具自上而下和自下而上蛋白质组学方法的优点:(i)用一种酶(如Lys-C)消化蛋白质,Lys-C的切割频率低于胰蛋白酶,平均可产生分子量更高的肽段;(ii)对所得片段进行高效液相色谱分离;(iii)采用一种新的数据采集策略,使用LTQ-FTMS,这是一种将线性离子阱与傅里叶变换离子回旋共振(FTICR)单元相结合的混合质谱仪,用于分析0.5至10 kDa范围内的肽段;(iv)采用新的数据分析方法,从精确的前体质量以及MS(2)和MS(3)碎片中确定大肽段的结构、翻译后修饰的连接位点以及结构特征。相对于胰蛋白酶消化,Lys-C片段的液相色谱保留时间增加,这是因为较大肽段通常具有更强的疏水性,对于含有糖基化和磷酸化等亲水性修饰的肽段而言,这一结果尤为重要。此外,Lys-C片段中额外的带正电荷的精氨酸和赖氨酸残基,使翻译后修饰的磷酸化和糖基化肽段的灵敏度相对于胰蛋白酶片段提高了至少10倍。在典型操作中,FTICR单元提供具有高质量分辨率(>100 000)和精确质量(<2 ppm)的全扫描,以表征较大肽段的高电荷态前体离子。同时,线性离子阱提供MS(2)和MS(3)碎片谱,扫描速度足够快,可用于在线液相色谱-质谱分析。这些数据共同提供了多种方法来确定或增强对大肽段或复杂肽段归属的信心。使用ERPA,我们在分析两种高度磷酸化和糖基化的蛋白质时,实现了>95%的序列覆盖率,其中一种是50飞摩尔水平的β-酪蛋白,另一种是1皮摩尔水平的表皮生长因子受体(EGFR)。总之,消化策略、高效分离以及混合LTQ-FTMS仪器的结合,能够对大蛋白质进行全面表征,包括翻译后修饰。

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