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唾液酸糖蛋白组学及表型分析揭示SID组织血型系统中的表达变异体

Glycoproteomic and Phenotypic Elucidation of Expression Variants in the SID Histo-Blood Group System.

作者信息

Stenfelt Linn, Nilsson Jonas, Hellberg Åsa, Liew Yew Wah, Morrison Jenny, Larson Göran, Olsson Martin L

机构信息

Division of Hematology and Transfusion Medicine, Department of Laboratory Medicine, Lund University, SE 221 85 Lund, Sweden.

Proteomics Core Facility, Sahlgrenska Academy at the University of Gothenburg, SE 405 30 Gothenburg, Sweden.

出版信息

Int J Mol Sci. 2022 Apr 1;23(7):3936. doi: 10.3390/ijms23073936.

Abstract

The Sda histo-blood group antigen (GalNAcβ1-4(NeuAcα2-3)Galβ-R) is implicated in various infections and constitutes a potential biomarker for colon cancer. Sd(a−) individuals (2−4% of Europeans) may produce anti-Sda, which can lead to incompatible blood transfusions, especially if donors with the high-expressing Sd(a++)/Cad phenotype are involved. We previously reported the association of B4GALNT2 mutations with Sd(a−), which established the SID blood-group system. The present study provides causal proof underpinning this correlation. Sd(a−) HEK293 cells were transfected with different B4GALNT2 constructs and evaluated by immunostaining and glycoproteomics. The predominant SIDnull candidate allele with rs7224888:T>C (p.Cys406Arg) abolished Sda synthesis, while this antigen was detectable as N- or O-glycans on glycoproteins following transfection of wildtype B4GALNT2. Surprisingly, two rare missense variants, rs148441237:A>G and rs61743617:C>T, found in a Sd(a−) compound heterozygote, gave results similar to wildtype. To elucidate on whether Sd(a++)/Cad also depends on B4GALNT2 alterations, this gene was sequenced in five individuals. No Cad-specific changes were identified, but a detailed erythroid Cad glycoprotein profile was obtained, especially for glycophorin-A (GLPA) O-glycosylation, equilibrative nucleoside transporter 1 (S29A1) O-glycosylation, and band 3 anion transport protein (B3AT) N-glycosylation. In conclusion, the p.Cys406Arg β4GalNAc-T2 variant causes Sda-deficiency in humans, while the enigmatic Cad phenotype remains unresolved, albeit further characterized.

摘要

Sda组织血型抗原(GalNAcβ1-4(NeuAcα2-3)Galβ-R)与多种感染有关,是结肠癌的潜在生物标志物。Sd(a−)个体(占欧洲人的2%-4%)可能产生抗Sda,这可能导致输血不相容,特别是当涉及高表达Sd(a++)/Cad表型的献血者时。我们之前报道了B4GALNT2突变与Sd(a−)的关联,从而建立了SID血型系统。本研究提供了支持这种相关性的因果证据。用不同的B4GALNT2构建体转染Sd(a−) HEK293细胞,并通过免疫染色和糖蛋白质组学进行评估。具有rs7224888:T>C(p.Cys406Arg)的主要SIDnull候选等位基因消除了Sda的合成,而在野生型B4GALNT2转染后,该抗原可作为糖蛋白上的N-或O-聚糖被检测到。令人惊讶的是,在一个Sd(a−)复合杂合子中发现的两个罕见错义变体rs148441237:A>G和rs61743617:C>T,其结果与野生型相似。为了阐明Sd(a++)/Cad是否也依赖于B4GALNT2改变,对五名个体的该基因进行了测序。未发现Cad特异性变化,但获得了详细的红细胞Cad糖蛋白谱,特别是对于血型糖蛋白-A(GLPA)O-糖基化、平衡核苷转运蛋白1(S29A1)O-糖基化和带3阴离子转运蛋白(B3AT)N-糖基化。总之,p.Cys406Argβ4GalNAc-T2变体导致人类Sda缺乏,而神秘的Cad表型仍未解决,尽管有了进一步的特征描述。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d4ac/8999409/e09d20e653d1/ijms-23-03936-g001.jpg

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