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Global site-specific analysis of glycoprotein N-glycan processing.

机译:糖蛋白N-聚糖加工的全局特异性分析。

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摘要

N-glycans contribute to the folding, stability and functions of the proteins they decorate. They are produced by transfer of the glycan precursor to the sequon Asn-X-Thr/Ser, followed by enzymatic trimming to a high-mannose-type core and sequential addition of monosaccharides to generate complex-type and hybrid glycans. This process, mediated by the concerted action of multiple enzymes, produces a mixture of related glycoforms at each glycosite, making analysis of glycosylation difficult. To address this analytical challenge, we developed a robust semiquantitative mass spectrometry (MS)-based method that determines the degree of glycan occupancy at each glycosite and the proportion of N-glycans processed from high-mannose type to complex type. It is applicable to virtually any glycoprotein, and a complete analysis can be conducted with 30 μg of protein. Here, we provide a detailed description of the method that includes procedures for (i) proteolytic digestion of glycoprotein(s) with specific and nonspecific proteases; (ii) denaturation of proteases by heating; (iii) sequential treatment of the glycopeptide mixture with two endoglycosidases, Endo H and PNGase F, to create unique mass signatures for the three glycosylation states; (iv) LC-MS/MS analysis; and (v) data analysis for identification and quantitation of peptides for the three glycosylation states. Full coverage of site-specific glycosylation of glycoproteins is achieved, with up to thousands of high-confidence spectra hits for each glycosite. The protocol can be performed by an experienced technician or student/postdoc with basic skills for proteomics experiments and takes ~7 d to complete.
机译:N-Glycans有助于它们装饰的蛋白质的折叠,稳定性和功能。它们是通过将聚糖前体转移到精选Asn-X-Thr / Ser中产生的,然后酶促修剪至高甘露糖型核心并顺序添加单糖以产生复合型和杂交聚糖。通过多种酶的齐齐作用介导的该方法在每种糖化物中产生相关糖族的混合物,取得糖基化的分析。为了解决这一分析挑战,我们开发了一种稳健的半定量质谱(MS)基础的方法,用于确定每种糖类的聚糖占用度以及从高甘露糖类型加工的N-聚糖的比例。它适用于几乎任何糖蛋白,并且可以用30μg蛋白质进行完整的分析。在这里,我们提供了本方法的详细描述,该方法包括具有特异性和非特异性蛋白酶的(i)蛋白水解消化的方法的方法; (ii)通过加热变性蛋白酶; (iii)用两种内糖苷酶,engo h和pngase f的糖肽混合物顺序处理,为三种糖基化状态产生独特的质量签名; (iv)LC-MS / MS分析; (v)用于鉴定和定量三种糖基化状态的肽的数据分析。实现了糖蛋白的特异性特异性糖基化的全面覆盖,每种综合材料高达数千次高频谱光谱。该协议可以由经验丰富的技术人员或学生/邮编以蛋白质组学实验的基本技能进行,并且需要〜7天完成。

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    Department of Molecular Medicine The Scripps Research Institute La Jolla California USA;

    Department of Molecular Medicine The Scripps Research Institute La Jolla California USA;

    Department of Molecular Medicine The Scripps Research Institute La Jolla California USA;

    Department of Biochemistry and Cell Biology Geisel School of Medicine at Dartmouth Hanover New Hampshire USA;

    Center for HIV/AIDS Vaccine Immunology and Immunogen Discovery and IAVI Neutralizing Antibody Center Department of Immunology and Microbiology The Scripps Research Institute La Jolla California USA;

    Department of Molecular Medicine The Scripps Research Institute La Jolla California USA;

    Department of Molecular Medicine The Scripps Research Institute La Jolla California USA;

    Department of Biochemistry and Cell Biology Geisel School of Medicine at Dartmouth Hanover New Hampshire USA;

    Center for HIV/AIDS Vaccine Immunology and Immunogen Discovery and IAVI Neutralizing Antibody Center Department of Immunology and Microbiology The Scripps Research Institute La Jolla California USA;

    Department of Molecular Medicine The Scripps Research Institute La Jolla California USA;

    Department of Molecular Medicine The Scripps Research Institute La Jolla California USA;

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  • 正文语种 eng
  • 中图分类 生物科学;
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