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新型疾病相关突变的深入研究:编码 CMP-唾液酸转运蛋白的基因

Novel Insights into Selected Disease-Causing Mutations within the Gene Encoding the CMP-Sialic Acid Transporter.

机构信息

Faculty of Biotechnology, University of Wroclaw, 14A F. Joliot-Curie St., 50-383 Wroclaw, Poland.

出版信息

Int J Mol Sci. 2020 Dec 30;22(1):304. doi: 10.3390/ijms22010304.

Abstract

Congenital disorders of glycosylation (CDG) are a group of rare genetic and metabolic diseases caused by alterations in glycosylation pathways. Five patients bearing CDG-causing mutations in the gene encoding the CMP-sialic acid transporter (CST) have been reported to date. In this study we examined how specific mutations in the gene affect the protein's properties in two previously described SLC35A1-CDG cases: one caused by a substitution (Q101H) and another involving a compound heterozygous mutation (T156R/E196K). The effects of single mutations and the combination of T156R and E196K mutations on the CST's functionality was examined separately in CST-deficient HEK293T cells. As shown by microscopic studies, none of the CDG-causing mutations affected the protein's proper localization in the Golgi apparatus. Cellular glycophenotypes were characterized using lectins, structural assignment of N- and O-glycans and analysis of glycolipids. Single Q101H, T156R and E196K mutants were able to partially restore sialylation in CST-deficient cells, and the deleterious effect of a single T156R or E196K mutation on the CST functionality was strongly enhanced upon their combination. We also revealed differences in the ability of CST variants to form dimers. The results of this study improve our understanding of the molecular background of SLC35A1-CDG cases.

摘要

先天性糖基化障碍(CDG)是一组由糖基化途径改变引起的罕见遗传和代谢疾病。迄今为止,已有 5 名患者在编码 CMP-唾液酸转运蛋白(CST)的 基因中携带导致 CDG 的突变。在这项研究中,我们研究了 基因中的特定突变如何影响两个先前描述的 SLC35A1-CDG 病例中蛋白质的特性:一个由取代(Q101H)引起,另一个涉及复合杂合突变(T156R/E196K)。在 CST 缺陷型 HEK293T 细胞中,分别检查了单个突变和 T156R 和 E196K 突变组合对 CST 功能的影响。如显微镜研究所示,CDG 引起的突变均不影响蛋白质在高尔基体中的正确定位。使用凝集素、N-和 O-聚糖的结构分配以及糖脂分析来表征细胞糖表型。单个 Q101H、T156R 和 E196K 突变体能够部分恢复 CST 缺陷细胞中的唾液酸化,并且单个 T156R 或 E196K 突变对 CST 功能的有害影响在其组合时大大增强。我们还揭示了 CST 变体形成二聚体的能力的差异。这项研究的结果提高了我们对 SLC35A1-CDG 病例分子背景的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42b4/7795627/77c2a4290312/ijms-22-00304-g001.jpg

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