Mass Spectrometric Analysis of Urinary N-Glycosylation Changes in Patients with Parkinson’s Disease

糖基化 尿 糖蛋白组学 聚糖 糖组学 生物标志物 糖蛋白 化学 N-连接糖基化 生物标志物发现 生物化学 蛋白质组学 基因
作者
Mingming Xu,Hong Jin,Wei Ge,Lingbo Zhao,Zhaoliang Liu,Zeyu Guo,Zhenhua Wu,Jing Chen,Cheng‐Jie Mao,Xumin Zhang,Chun‐Feng Liu,Shuang Yang
出处
期刊:ACS Chemical Neuroscience [American Chemical Society]
卷期号:14 (18): 3507-3517 被引量:5
标识
DOI:10.1021/acschemneuro.3c00404
摘要

Urine is thought to provide earlier and more sensitive molecular changes for biomarker discovery than blood. Numerous glycoproteins, peptides, and free glycans are present in urine through glomerular filtration of plasma, cell shedding, apoptosis, proteolytic cleavage, and exosome secretion. Urine biomarkers have enormous diagnostic potential, and the use of these biomarkers is a long-standing practice. The discovery of non-urological disease biomarkers from urine is also gaining attention due to its non-invasive sample collection and ease of analysis. Abnormal protein glycosylation in plasma or cerebrospinal fluid has been associated with Parkinson's disease, however, whether urine with Parkinson's disease has characteristic glycosylation remains to be explored. Here, we use mass spectrometry-based glycomics and glycoproteomics approaches to analyze urine samples for glycans, glycosites, and intact glycopeptides of urine samples. Reduced abundance of N-glycans was detected at the level of total glycans as well as specific glycosites of glycopeptides. The most abundant N-glycan in urine is S(6)1H5N4F1; S(6)2H5N4 and N4H4F1 are highly present in serum and urine, and 10 biantennary galactosylated N-glycans in the urine of PD patients were significantly decreased. The downregulation of sialylation may be due to the reduction of ST3GAL2. Site-specific N-glycosylation analysis revealed that AMBP, UMOD, and RNase1 have PD-specific N-glycosylation sites. GO and KEGG analysis revealed that N-glycosylation changes may provide clues to identify disease-specific glycosylation biomarkers in Parkinson's disease.
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