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岩藻糖基化 AGP 糖肽作为 HNF1A-MODY(青年发病的成年型糖尿病)的生物标志物。

Fucosylated AGP glycopeptides as biomarkers of HNF1A-Maturity onset diabetes of the young.

机构信息

Faculty of Pharmacy and Biochemistry, University of Zagreb, Zagreb, Croatia.

Genos Glycoscience Research Laboratory, Zagreb, Croatia.

出版信息

Diabetes Res Clin Pract. 2022 Mar;185:109226. doi: 10.1016/j.diabres.2022.109226. Epub 2022 Feb 2.

Abstract

AIMS

We previously demonstrated that antennary fucosylated N-glycans on plasma proteins are regulated by HNF1A and can identify cases of Maturity-Onset Diabetes of the Young caused by HNF1A variants (HNF1A-MODY). Based on literature data, we further postulated that N-glycans with best diagnostic value mostly originate from alpha-1-acid glycoprotein (AGP). In this study we analyzed fucosylation of AGP in subjects with HNF1A-MODY and other types of diabetes aiming to evaluate its diagnostic potential.

METHODS

A recently developed LC-MS method for AGP N-glycopeptide analysis was utilized in two independent cohorts: a) 466 subjects with different diabetes subtypes to test the fucosylation differences, b) 98 selected individuals to test the discriminative potential for pathogenic HNF1A variants.

RESULTS

Our results showed significant reduction in AGP fucosylation associated to HNF1A-MODY when compared to other diabetes subtypes. Additionally, ROC curve analysis confirmed significant discriminatory potential of individual fucosylated AGP glycopeptides, where the best performing glycopeptide had an AUC of 0.94 (95% CI 0.90-0.99).

CONCLUSIONS

A glycopeptide based diagnostic tool would be beneficial for patient stratification by providing information about the functionality of HNF1A. It could assist the interpretation of DNA sequencing results and be a useful addition to the differential diagnostic process.

摘要

目的

我们之前证明了,血浆蛋白上触角状岩藻糖基化 N-糖链受 HNF1A 调控,可以识别由 HNF1A 变异引起的青少年发病的成年型糖尿病(HNF1A-MODY)病例。基于文献数据,我们进一步推测,具有最佳诊断价值的 N-糖链主要来源于α-1-酸性糖蛋白(AGP)。本研究旨在评估其诊断潜力,分析了 HNF1A-MODY 及其他类型糖尿病患者中 AGP 的岩藻糖基化。

方法

我们使用一种新开发的 LC-MS 方法分析了两个独立队列中 AGP N-糖肽的岩藻糖基化:a)466 例不同糖尿病亚型的患者,用于检测岩藻糖基化差异;b)98 例经选择的个体,用于检测致病性 HNF1A 变异的鉴别潜力。

结果

与其他糖尿病亚型相比,HNF1A-MODY 患者的 AGP 岩藻糖基化明显减少。此外,ROC 曲线分析证实了单个岩藻糖基化 AGP 糖肽的显著鉴别潜力,其中表现最佳的糖肽 AUC 为 0.94(95%CI 0.90-0.99)。

结论

基于糖肽的诊断工具将有助于通过提供 HNF1A 功能信息对患者进行分层,有助于 DNA 测序结果的解读,并成为鉴别诊断过程的有益补充。

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