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双功能钛(IV)固载金属亲和层析法实现大规模蛋白质甘露糖-6-磷酸糖基化谱分析及揭示其主要底物

Dual-Functional Titanium(IV) Immobilized Metal Affinity Chromatography Approach for Enabling Large-Scale Profiling of Protein Mannose-6-Phosphate Glycosylation and Revealing Its Predominant Substrates.

机构信息

CAS Key Laboratory of Separation Sciences for Analytical Chemistry, National Chromatographic R&A Center , Dalian Institute of Chemical Physics, Chinese Academy of Sciences , Dalian 116023 , China.

School of Life Sciences , Tianjin University , Tianjin 300072 , China.

出版信息

Anal Chem. 2019 Sep 17;91(18):11589-11597. doi: 10.1021/acs.analchem.9b01698. Epub 2019 Aug 22.

Abstract

Mannose-6-phosphate (M6P) glycosylation is an important post-translational modification (PTM) and plays a crucial role in transferring lysosomal hydrolases to lysosome, and is involved in several other biological processes. Aberrant M6P modifications have been implicated in lysosomal storage diseases and numerous other disorders including Alzheimer's disease and cancer. Research on profiling of intact M6P glycopeptides remains challenging due to its extremely low stoichiometry. Here we propose a dual-mode affinity approach to enrich M6P glycopeptides by dual-functional titanium(IV) immobilized metal affinity chromatography [Ti(IV)-IMAC] materials. In combination with state-of-the-art mass spectrometry and database search engine, we profiled 237 intact M6P glycopeptides corresponding to 81 M6P glycoproteins in five types of tissues in mouse, representing the first large-scale profiling of M6P glycosylation in mouse samples. The analysis of M6P glycoforms revealed the predominant glycan substrates of this PTM. Gene ontology analysis showed that overrepresented M6P glycoproteins were lysosomal-associated proteins. However, there were still substantial M6P glycoproteins that possessed different subcellular locations and molecular functions. Deep mining of their roles implicated in lysosomal and nonlysosomal function can provide new insights into functional roles of this important yet poorly studied modification.

摘要

甘露糖-6-磷酸(M6P)糖基化是一种重要的翻译后修饰(PTM),在将溶酶体水解酶转移到溶酶体中起着关键作用,并参与了其他几个生物学过程。异常的 M6P 修饰与溶酶体贮积病和包括阿尔茨海默病和癌症在内的许多其他疾病有关。由于其极低的化学计量,完整的 M6P 糖肽的分析研究仍然具有挑战性。在这里,我们提出了一种双重模式亲和方法,通过双功能钛(IV)固定金属亲和层析[Ti(IV)-IMAC]材料来富集 M6P 糖肽。结合最先进的质谱和数据库搜索引擎,我们在五种类型的小鼠组织中对 237 个完整的 M6P 糖肽进行了分析,这些糖肽对应于 81 种 M6P 糖蛋白,这是在小鼠样本中对 M6P 糖基化的首次大规模分析。M6P 糖型的分析揭示了这种 PTM 的主要糖基化底物。GO 分析表明,M6P 糖蛋白的丰度增加与溶酶体相关蛋白有关。然而,仍然存在大量具有不同亚细胞位置和分子功能的 M6P 糖蛋白。对它们在溶酶体和非溶酶体功能中的作用的深入挖掘,可以为这一重要但研究甚少的修饰提供新的见解。

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