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使用多重MRM分析对梭菌糖基化毒素介导的小GTP酶糖基化进行定量分析。

Quantification of small GTPase glucosylation by clostridial glucosylating toxins using multiplexed MRM analysis.

作者信息

Junemann Johannes, Lämmerhirt Chantal M, Polten Felix, Just Ingo, Gerhard Ralf, Genth Harald, Pich Andreas

机构信息

Hannover Medical School, Institute for Toxicology, Hannover, Germany.

出版信息

Proteomics. 2017 May;17(9). doi: 10.1002/pmic.201700016.

Abstract

Large clostridial toxins mono-O-glucosylate small GTPases of the Rho and Ras subfamily. As a result of glucosylation, the GTPases are inhibited and thereby corresponding downstream signaling pathways are disturbed. Current methods for quantifying the extent of glucosylation include sequential [ C]glucosylation, sequential [ P]ADP-ribosylation, and Western Blot detection of nonglucosylated GTPases, with neither method allowing the quantification of the extent of glucosylation of an individual GTPase. Here, we describe a novel MS-based multiplexed MRM assay to specifically quantify the glucosylation degree of small GTPases. This targeted proteomics approach achieves a high selectivity and reproducibility, which allows determination of the in vivo substrate pattern of glucosylating toxins. As proof of principle, GTPase glucosylation was analyzed in CaCo-2 cells treated with TcdA, and glucosylation kinetics were determined for RhoA/B, RhoC, RhoG, Ral, Rap1, Rap2, (H/K/N)Ras, and R-Ras2.

摘要

大型梭菌毒素对Rho和Ras亚家族的小GTP酶进行单O-糖基化修饰。糖基化修饰的结果是,GTP酶受到抑制,相应的下游信号通路也因此受到干扰。目前用于量化糖基化程度的方法包括顺序[C]糖基化、顺序[P]ADP-核糖基化以及对未糖基化GTP酶的蛋白质印迹检测,但这些方法都无法对单个GTP酶的糖基化程度进行量化。在此,我们描述了一种基于质谱的新型多重MRM分析方法,用于特异性量化小GTP酶的糖基化程度。这种靶向蛋白质组学方法具有高选择性和可重复性,能够确定糖基化毒素在体内的底物模式。作为原理验证,我们分析了用TcdA处理的CaCo-2细胞中的GTP酶糖基化情况,并确定了RhoA/B、RhoC、RhoG、Ral、Rap1、Rap2、(H/K/N)Ras和R-Ras2的糖基化动力学。

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