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功能性糖基化的抑制机制。

Inhibitory machinery for the functional dystroglycan glycosylation.

机构信息

Department of Molecular Biochemistry, Nagoya University Graduate School of Medicine, Nagoya 466-8550, Japan.

Institute for Glyco-core Research (iGCORE), Nagoya University, Nagoya 466-8550, Japan.

出版信息

J Biochem. 2023 Apr 26;173(5):333-335. doi: 10.1093/jb/mvad003.

Abstract

Dystroglycan (DG), a muscular transmembrane protein, plays a critical role in transducing extracellular matrix-derived signals to the cytoskeleton and provides physical strength to skeletal muscle cell membranes. The extracellular domain of DG, α-DG, displays unique glycosylation patterns. Fully functional glycosylation is required for this domain to interact with components of extracellular matrices, including laminin. One of the unique sugar compositions found in such functional glycans on DG is two ribitol phosphates that are transferred by the sequential actions of fukutin (FKTN) and fukutin-related protein (FKRP), which use CDP-ribitol as a donor substrate. These are then further primed for matriglycan biosynthesis. A recent in vitro study reported that glycerol phosphate could be similarly added to α-DG by FKTN and FKRP if they used CDP-glycerol (CDP-Gro) as a donor substrate. However, the physiological relevance of these findings remains elusive. Imae et al. addressed the knowledge gap regarding whether CDP-Gro is present in mammals and how CDP-Gro is synthesized and functions in mammals.

摘要

肌聚糖(DG)是一种肌肉跨膜蛋白,在将细胞外基质衍生的信号转导到细胞骨架中起着关键作用,并为骨骼肌细胞膜提供物理强度。DG 的细胞外结构域,α-DG,显示出独特的糖基化模式。这个结构域与细胞外基质的成分相互作用,包括层粘连蛋白,需要完全功能性的糖基化。在 DG 上的这种功能性聚糖中发现的独特糖组成之一是两个肌醇磷酸盐,它们通过福ukin(FKTN)和福ukin 相关蛋白(FKRP)的顺序作用转移,福ukin 和福ukin 相关蛋白使用 CDP-肌醇作为供体底物。然后,它们进一步被启动用于糖胺聚糖的生物合成。最近的一项体外研究报告称,如果 FKTN 和 FKRP 使用 CDP-甘油(CDP-Gro)作为供体底物,甘油磷酸盐也可以类似地添加到 α-DG 上。然而,这些发现的生理相关性仍然难以捉摸。今枝等人解决了关于哺乳动物中是否存在 CDP-Gro 以及 CDP-Gro 如何在哺乳动物中合成和发挥作用的知识空白。

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