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Direct mass spectrometric analysis of intact proteins of the yeast large ribosomal subunit using capillary LC/FTICR

机译:使用毛细管LC / FTICR直接质谱分析酵母大核糖体亚基的完整蛋白

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摘要

Electrospray ionization Fourier transform ion cyclotron resonance mass spectrometry coupled with capillary reverse-phase liquid chromatography was used to characterize intact proteins from the large subunit of the yeast ribosome. High mass measurement accuracy, achieved by “mass locking” with an internal standard from a dual electrospray ionization source, allowed identification of ribosomal proteins. Analyses of the intact proteins revealed information on cotranslational and posttranslational modifications of the ribosomal proteins that included loss of the initiating methionine, acetylation, methylation, and proteolytic maturation. High-resolution separations permitted differentiation of protein isoforms having high structural similarity as well as proteins from their modified forms, facilitating unequivocal assignments. The study identified 42 of the 43 core large ribosomal subunit proteins and 58 (of 64 possible) core large subunit protein isoforms having unique masses in a single analysis. These results demonstrate the basis for the high-throughput analyses of complex mixtures of intact proteins, which we believe will be an important complement to other approaches for defining protein modifications and their changes resulting from physiological processes or environmental perturbations.
机译:电喷雾电离傅立叶变换离子回旋共振质谱联用毛细管反相液相色谱法来表征来自酵母核糖体大亚基的完整蛋白。通过使用双重电喷雾电离源的内标物进行“质量锁定”,可以实现高质量的测量,从而可以鉴定核糖体蛋白。完整蛋白的分析揭示了核糖体蛋白共翻译和翻译后修饰的信息,包括起始甲硫氨酸的丢失,乙酰化,甲基化和蛋白水解成熟。高分辨率分离可区分具有高度结构相似性的蛋白质同工型以及其修饰形式的蛋白质,从而有助于明确分配。该研究在一次分析中鉴定了43种核心大核糖体亚基蛋白中的42种和58种(可能的64种)核心大亚基蛋白同工型。这些结果证明了完整蛋白质复杂混合物高通量分析的基础,我们认为这将是定义蛋白质修饰及其因生理过程或环境扰动而引起的变化的其他方法的重要补充。

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