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利用酰肼化学和质谱法绘制黑曲霉 secretome 和 whole cells 中的 N-连接糖基化位点图谱。

Mapping N-linked glycosylation sites in the secretome and whole cells of Aspergillus niger using hydrazide chemistry and mass spectrometry.

机构信息

Biological Science Division, Pacific Northwest National Laboratory, Richland, Washington 99352, United States.

出版信息

J Proteome Res. 2012 Jan 1;11(1):143-56. doi: 10.1021/pr200916k. Epub 2011 Dec 2.

Abstract

Protein glycosylation (e.g., N-linked glycosylation) is known to play an essential role in both cellular functions and secretory pathways; however, our knowledge of in vivo N-glycosylated sites is very limited for the majority of fungal organisms including Aspergillus niger. Herein, we present the first extensive mapping of N-glycosylated sites in A. niger by applying an optimized solid phase glycopeptide enrichment protocol using hydrazide-modified magnetic beads. The enrichment protocol was initially optimized using both mouse blood plasma and A. niger secretome samples, and it was demonstrated that the protein-level enrichment protocol offered superior performance over the peptide-level protocol. The optimized protocol was then applied to profile N-glycosylated sites from both the secretome and whole cell lysates of A. niger. A total of 847 N-glycosylated sites from 330 N-glycoproteins (156 proteins from the secretome and 279 proteins from whole cells) were confidently identified by LC-MS/MS. The identified N-glycoproteins in the whole cell lysate were primarily localized in the plasma membrane, endoplasmic reticulum, Golgi apparatus, lysosome, and storage vacuoles, supporting the important role of N-glycosylation in the secretory pathways. In addition, these glycoproteins are involved in many biological processes including gene regulation, signal transduction, protein folding and assembly, protein modification, and carbohydrate metabolism. The extensive coverage of N-glycosylated sites and the observation of partial glycan occupancy on specific sites in a number of enzymes provide important initial information for functional studies of N-linked glycosylation and their biotechnological applications in A. niger.

摘要

蛋白质糖基化(例如 N 连接糖基化)在细胞功能和分泌途径中都起着至关重要的作用;然而,我们对包括黑曲霉在内的大多数真菌生物体内的 N 糖基化位点的了解非常有限。在此,我们通过应用优化的基于肼修饰的磁性珠的固相糖肽富集方案,首次对黑曲霉中的 N-糖基化位点进行了广泛的绘图。该富集方案最初使用鼠血浆和黑曲霉分泌组样本进行了优化,并且证明蛋白质水平的富集方案比肽水平的方案具有更好的性能。然后,我们将优化后的方案应用于黑曲霉分泌组和全细胞裂解物中的 N-糖基化位点的分析。通过 LC-MS/MS 共鉴定到来自 330 种 N-糖蛋白的 847 个 N-糖基化位点(来自分泌组的 156 种蛋白和来自全细胞的 279 种蛋白)。全细胞裂解物中鉴定到的 N-糖蛋白主要定位于质膜、内质网、高尔基体、溶酶体和贮藏液泡中,支持 N-糖基化在分泌途径中的重要作用。此外,这些糖蛋白参与了许多生物学过程,包括基因调控、信号转导、蛋白质折叠和组装、蛋白质修饰和碳水化合物代谢。广泛的 N-糖基化位点覆盖范围以及在许多酶中的特定位点上观察到的部分糖基化占据,为 N 连接糖基化的功能研究及其在黑曲霉中的生物技术应用提供了重要的初始信息。

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