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在S-Traps上对复杂样品进行同时N-去糖基化和消化可实现高效的糖基化位点假设生成。

Simultaneous N-Deglycosylation and Digestion of Complex Samples on S-Traps Enables Efficient Glycosite Hypothesis Generation.

作者信息

DeRosa Christine M, Weaver Simon D, Wang Chien-Wei, Schuster-Little Naviya, Whelan Rebecca J

机构信息

Department of Chemistry and Biochemistry, University of Notre Dame, Notre Dame, Indiana 46556, United States.

Integrated Biomedical Sciences Graduate Program, University of Notre Dame, Notre Dame, Indiana 46656, United States.

出版信息

ACS Omega. 2023 Jan 20;8(4):4410-4418. doi: 10.1021/acsomega.2c08071. eCollection 2023 Jan 31.

Abstract

N-linked glycosylation is an important post-translational modification that is difficult to identify and quantify in traditional bottom-up proteomics experiments. Enzymatic deglycosylation of proteins by peptide:-glycosidase F (PNGase F) prior to digestion and subsequent mass spectrometry analysis has been shown to improve coverage of various N-linked glycopeptides, but the inclusion of this step may add up to a day to an already lengthy sample preparation process. An efficient way to integrate deglycosylation with bottom-up proteomics would be a valuable contribution to the glycoproteomics field. Here, we demonstrate a proteomics workflow in which deglycosylation and proteolytic digestion of samples occur simultaneously using suspension trapping (S-Trap). This approach adds no time to standard digestion protocols. Applying this sample preparation strategy to a human serum sample, we demonstrate improved identification of potential N-glycosylated peptides in deglycosylated samples compared with non-deglycosylated samples, identifying 156 unique peptides that contain the N-glycosylation motif (asparagine-X-serine/threonine), the deamidation modification characteristic of PNGase F, and an increase in peptide intensity over a control sample. We expect that this rapid sample preparation strategy will assist in the identification and quantification of both known and potential glycoproteins. Data are available via ProteomeXchange with the identifier PXD037921.

摘要

N-连接糖基化是一种重要的翻译后修饰,在传统的自下而上蛋白质组学实验中难以识别和定量。在消化和随后的质谱分析之前,通过肽:N-糖苷酶F(PNGase F)对蛋白质进行酶促去糖基化已被证明可以提高各种N-连接糖肽的覆盖率,但加入这一步骤可能会使本就漫长的样品制备过程增加长达一天的时间。将去糖基化与自下而上蛋白质组学相结合的有效方法将是对糖蛋白质组学领域的宝贵贡献。在这里,我们展示了一种蛋白质组学工作流程,其中使用悬浮捕获(S-Trap)同时对样品进行去糖基化和蛋白水解消化。这种方法不会增加标准消化方案的时间。将这种样品制备策略应用于人类血清样品,我们证明与未去糖基化的样品相比,去糖基化样品中潜在的N-糖基化肽的鉴定得到了改善,鉴定出156种含有N-糖基化基序(天冬酰胺-X-丝氨酸/苏氨酸)、PNGase F特有的脱酰胺修饰且肽强度高于对照样品的独特肽段。我们预计这种快速样品制备策略将有助于已知和潜在糖蛋白的鉴定和定量。数据可通过ProteomeXchange获得,标识符为PXD037921。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fbb/9893465/e77c5b503f86/ao2c08071_0002.jpg

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