Suppr超能文献

胞质UDP-半乳糖生物合成机制是SLC35A2在高尔基体膜中发生二聚化及其与B4GalT1相互作用所必需的。

Cytosolic UDP-Gal biosynthetic machinery is required for dimerization of SLC35A2 in the Golgi membrane and its interaction with B4GalT1.

作者信息

Wiertelak Wojciech, Pavlovskyi Artem, Olczak Mariusz, Maszczak-Seneczko Dorota

机构信息

Department of Biochemistry, Faculty of Biotechnology, University of Wroclaw, Wroclaw, Poland.

Novo Nordisk Foundation Center for Basic Metabolic Research, University of Copenhagen, Copenhagen, Denmark.

出版信息

Front Mol Biosci. 2025 Mar 31;12:1563384. doi: 10.3389/fmolb.2025.1563384. eCollection 2025.

Abstract

Glycosylation is a vital post-translational modification involving the addition of sugars to proteins and lipids, facilitated by glycosyltransferases and dependent on nucleotide sugar donors like UDP-galactose (UDP-Gal). This study examines how disruptions in UDP-Gal synthesis affect protein-protein interactions critical for glycosylation. Using CRISPR/Cas9, we generated HEK293T cell lines lacking key enzymes of the Leloir pathway: UDP-galactose 4'-epimerase (GALE), galactose-1-phosphate uridylyltransferase (GALT), or both. The knockout of GALE led to a significant reduction in intracellular UDP-Gal levels and altered N-glycan profiles, indicating impaired galactosylation. Through the NanoBiT assay, we observed that knocking out GALE alone or both GALE and GALT diminished the ability of the UDP-Gal transporter SLC35A2 to form homomers and to interact with the beta-1,4-galactosyltransferase 1 (B4GALT1). These findings suggest that the nucleotide sugar availability and/or the presence of the corresponding enzymes in the cytoplasm influences the formation of protein complexes involved in glycosylation in the Golgi apparatus, potentially affecting the glycosylation process itself. Our study highlights the dynamic nature of the glycosylation machinery and suggests that the interactions between glycosylation proteins are responsive to changes in nucleotide sugar levels. This opens new avenues for understanding the mechanisms underlying glycosylation and for investigating congenital glycosylation disorders.

摘要

糖基化是一种重要的翻译后修饰,涉及将糖类添加到蛋白质和脂质上,由糖基转移酶催化,并依赖于像尿苷二磷酸半乳糖(UDP-Gal)这样的核苷酸糖供体。本研究考察了UDP-Gal合成的中断如何影响对糖基化至关重要的蛋白质-蛋白质相互作用。利用CRISPR/Cas9,我们构建了缺乏Leloir途径关键酶的HEK293T细胞系:尿苷二磷酸半乳糖4'-表异构酶(GALE)、半乳糖-1-磷酸尿苷酰转移酶(GALT),或两者均缺乏。敲除GALE导致细胞内UDP-Gal水平显著降低,并改变了N-聚糖谱,表明半乳糖基化受损。通过NanoBiT分析,我们观察到单独敲除GALE或同时敲除GALE和GALT均会降低UDP-Gal转运体SLC35A2形成同聚物以及与β-1,4-半乳糖基转移酶1(B4GALT1)相互作用的能力。这些发现表明,核苷酸糖的可利用性和/或细胞质中相应酶的存在会影响高尔基体中参与糖基化的蛋白质复合物的形成,可能影响糖基化过程本身。我们的研究突出了糖基化机制的动态性质,并表明糖基化蛋白之间的相互作用对核苷酸糖水平的变化有反应。这为理解糖基化的潜在机制以及研究先天性糖基化障碍开辟了新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d497/11994309/3d0eaef62c84/fmolb-12-1563384-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验