Protein Paucimannosylation Is an Enriched N ‐Glycosylation Signature of Human Cancers

糖组学 癌变 癌症 生物 糖组 癌症研究 卵巢癌 糖基化 蛋白质组学 转移 癌细胞 前列腺癌 结直肠癌 糖蛋白 聚糖 分子生物学 基因 遗传学
作者
Sayantani Chatterjee,Ling Y. Lee,Rebeca Kawahara,Jodie L. Abrahams,B Adamczyk,Merrina Anugraham,Christopher Ashwood,Zeynep Sumer‐Bayraktar,Matthew T. Briggs,Jenny Chik,Arun Everest‐Dass,Sarah Förster,Hannes Hinneburg,Kátia Ramos Moreira Leite,Ian Loke,Uwe Möginger,Edward S. X. Moh,Miyako Nakano,Saulo Recuero,Manveen K. Sethi
出处
期刊:Proteomics [Wiley]
卷期号:19 (21-22): e1900010-e1900010 被引量:82
标识
DOI:10.1002/pmic.201900010
摘要

Abstract While aberrant protein glycosylation is a recognized characteristic of human cancers, advances in glycoanalytics continue to discover new associations between glycoproteins and tumorigenesis. This glycomics‐centric study investigates a possible link between protein paucimannosylation, an under‐studied class of human N ‐glycosylation [Man 1‐3 GlcNAc 2 Fuc 0‐1 ], and cancer. The paucimannosidic glycans (PMGs) of 34 cancer cell lines and 133 tissue samples spanning 11 cancer types and matching non‐cancerous specimens are profiled from 467 published and unpublished PGC‐LC‐MS/MS N ‐glycome datasets collected over a decade. PMGs, particularly Man 2‐3 GlcNAc 2 Fuc 1 , are prominent features of 29 cancer cell lines, but the PMG level varies dramatically across and within the cancer types (1.0–50.2%). Analyses of paired (tumor/non‐tumor) and stage‐stratified tissues demonstrate that PMGs are significantly enriched in tumor tissues from several cancer types including liver cancer ( p = 0.0033) and colorectal cancer ( p = 0.0017) and is elevated as a result of prostate cancer and chronic lymphocytic leukaemia progression ( p < 0.05). Surface expression of paucimannosidic epitopes is demonstrated on human glioblastoma cells using immunofluorescence while biosynthetic involvement of N ‐acetyl‐β‐hexosaminidase is indicated by quantitative proteomics. This intriguing association between protein paucimannosylation and human cancers warrants further exploration to detail the biosynthesis, cellular location(s), protein carriers, and functions of paucimannosylation in tumorigenesis and metastasis.
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