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Complementary LC-MS/MS-based N-glycan, N-glycopeptide, and intact N-glycoprotein profiling reveals unconventional Asn71-glycosylation of human neutrophil cathepsin G

机译:互补的基于LC-MS / MS的N-聚糖,N-糖肽和完整的N-糖蛋白谱图揭示了人类嗜中性组织蛋白酶G的非常规Asn71-糖基化

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摘要

Neutrophil cathepsin G (nCG) is a central serine protease in the human innate immune system, but the importance of its N-glycosylation remains largely undescribed. To facilitate such investigations, we here use complementary LC-MS/MS-based N-glycan, N-glycopeptide, and intact glycoprotein profiling to accurately establish the micro- and macro-heterogeneity of nCG from healthy individuals. The fully occupied Asn71 carried unconventional N-glycosylation consisting of truncated chitobiose core (GlcNAcβ: 55.2%; Fucα1,6GlcNAcβ: 22.7%), paucimannosidic N-glycans (Manβ1,4GlcNAcβ1,4GlcNAcβ: 10.6%; Manβ1,4GlcNAcβ1,4(Fucα1,6)GlcNAcβ: 7.9%; Manα1,6Manβ1,4GlcNAcβ1,4GlcNAcβ: 3.7%, trace level of Manα1,6Manβ1,4GlcNAcβ1,4(Fucα1,6)GlcNAcβ), and trace levels of monoantennary α2,6- and α2,3-sialylated complex N-glycans. High-resolution/mass accuracy LC-MS profiling of intact nCG confirmed the Asn71-glycoprofile and identified two C-terminal truncation variants at Arg243 (57.8%) and Ser244 (42.2%), both displaying oxidation of solvent-accessible Met152. Asn71 appeared proximal (~19 Å) to the active site of nCG, but due to the truncated nature of Asn71-glycans (~5–17 Å) we questioned their direct modulation of the proteolytic activity of the protein. This work highlights the continued requirement of using complementary technologies to accurately profile even relatively simple glycoproteins and illustrates important challenges associated with the analysis of unconventional protein N-glycosylation. Importantly, this study now facilitates investigation of the functional role of nCG Asn71-glycosylation.
机译:中性粒细胞组织蛋白酶G(nCG)是人类先天免疫系统中的一种中央丝氨酸蛋白酶,但其N-糖基化的重要性仍未得到充分描述。为了促进此类研究,我们在这里使用基于LC-MS / MS的互补N-聚糖,N-糖肽和完整糖蛋白谱,以准确地建立健康个体nCG的微观和宏观异质性。完全被占据的Asn71携带非常规的N-糖基化,包括截短的壳二糖核心(GlcNAcβ:55.2%;Fucα1,6GlcNAcβ:22.7%),古甘露糖苷N-聚糖(Manβ1,4GlcNAcβ1,4GlcNAcβ:10.6%;Manβ1,4,4GlcNcβ 6)GlcNAcβ:7.9%;Manα1,6Manβ1,4GlcNAcβ1,4GlcNAcβ:3.7%,痕量Manα1,6Manβ1,4GlcNAcβ1,4(Fucα1,6)GlcNAcβ)的痕量,以及单天线α2,6-和α2,3-的痕量唾液酸化复合物N-聚糖。完整nCG的高分辨率/质谱精度LC-MS分析证实了Asn71糖基曲线,并在Arg243(57.8%)和Ser244(42.2%)处鉴定出两个C端截短变体,均显示出可接触溶剂的Met152发生氧化。 Asn71出现在nCG活性位点的近端(〜19Å),但是由于Asn71-聚糖(〜5-17Å)的截短性质,我们质疑它们对蛋白质蛋白水解活性的直接调节。这项工作突出了对使用互补技术来准确分析甚至相对简单的糖蛋白的持续需求,并说明了与非常规蛋白N-糖基化分析相关的重要挑战。重要的是,这项研究现在有助于调查nCG Asn71-糖基化的功能作用。

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