Lebredonchel Elodie, Duvet Sandrine, Douillard Claire, Foulquier François, Klein André
UGSF-Unité de Glycobiologie Structurale et Fonctionnelle, UMR 8576 Université de Lille, CNRS Lille France.
Pôle Biologie Pathologie Génétique, Institut de Biochimie et de Biologie Moléculaire, UAM de Glycopathologies Université de Lille, CHU Lille Lille France.
JIMD Rep. 2021 Sep 17;62(1):22-29. doi: 10.1002/jmd2.12247. eCollection 2021 Nov.
For the first time the glycosylation of a patient with a MPI-CDG during pregnancy is monitored. MPI-CDG, is characterised by a deficiency in mannose-6-phosphate isomerase (MPI) leading to a reduced pool of glycosylation precursors, impairing the biosynthesis of -glycans leading to -glycosylation defects. The abnormal -glycosylation profile with an elevation of asialotransferrin and disialotransferrin, typical of CDG type I, is assessable by transferrin isoelectrofocusing. Oral D-mannose supplementation for MPI-CDG patients has been widely used and improves clinical manifestations. The glycosylation of a MPI-CDG patient during pregnancy without mannose supplementation was studied using carbohydrate deficient transferrin (CDT) assay, transferrin isoelectrofocusing (IEF) and mass spectrometry of total serum -glycans. A general improvement of the glycosylation profile of the patient due to a better transfer of the glycan precursors as well as an increase of the triantennary glycans (and sialylation) was observed. In conclusion, in the absence of mannose supplementation, the previously observed glycosylation abnormality of the MPI-CDG patient was corrected. The molecular mechanism underlying this -glycosylation rescue during MPI-CDG pregnancy further needs to be investigated.
首次对一名患有MPI-CDG的患者在孕期的糖基化情况进行了监测。MPI-CDG的特征是磷酸甘露糖异构酶(MPI)缺乏,导致糖基化前体池减少,损害了聚糖的生物合成,进而导致O-糖基化缺陷。转铁蛋白等电聚焦可评估典型I型CDG中异常的O-糖基化谱,即脱唾液酸转铁蛋白和双唾液酸转铁蛋白升高。口服D-甘露糖补充剂已广泛用于MPI-CDG患者,并改善了临床表现。使用碳水化合物缺乏转铁蛋白(CDT)检测、转铁蛋白等电聚焦(IEF)和总血清O-聚糖质谱分析,研究了一名未补充甘露糖的MPI-CDG患者在孕期的糖基化情况。观察到由于聚糖前体的更好转运以及三触角聚糖(和唾液酸化)增加,患者的糖基化谱总体有所改善。总之,在未补充甘露糖的情况下,先前观察到的MPI-CDG患者的糖基化异常得到了纠正。MPI-CDG孕期这种O-糖基化挽救的分子机制还需要进一步研究。