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细胞质 GDP-岩藻糖的来源决定了其对糖基化反应的贡献。

Origin of cytoplasmic GDP-fucose determines its contribution to glycosylation reactions.

机构信息

Human Genetics Program, Sanford Burnham Prebys Medical Discovery Institute, La Jolla, CA.

Complex Carbohydrate Research Center, University of Georgia, Athens, Georgia.

出版信息

J Cell Biol. 2022 Oct 3;221(10). doi: 10.1083/jcb.202205038. Epub 2022 Sep 2.

Abstract

Biosynthesis of macromolecules requires precursors such as sugars or amino acids, originating from exogenous/dietary sources, reutilization/salvage of degraded molecules, or de novo synthesis. Since these sources are assumed to contribute to one homogenous pool, their individual contributions are often overlooked. Protein glycosylation uses monosaccharides from all the above sources to produce nucleotide sugars required to assemble hundreds of distinct glycans. Here, we demonstrate that cells identify the origin/heritage of the monosaccharide, fucose, for glycosylation. We measured the contribution of GDP-fucose from each of these sources for glycan synthesis and found that different fucosyltransferases, individual glycoproteins, and linkage-specific fucose residues identify and select different GDP-fucose pools dependent on their heritage. This supports the hypothesis that GDP-fucose exists in multiple, distinct pools, not as a single homogenous pool. The selection is tightly regulated since the overall pool size remains constant. We present novel perspectives on monosaccharide metabolism, which may have a general applicability.

摘要

生物大分子的合成需要糖或氨基酸等前体,这些前体可以来源于外源性/饮食来源,也可以来源于降解分子的再利用/回收,或者从头合成。由于这些来源被认为都贡献于一个均质的池,因此它们的个体贡献往往被忽视。蛋白质糖基化使用来自所有上述来源的单糖来产生核苷酸糖,这些核苷酸糖是组装数百种不同聚糖所必需的。在这里,我们证明了细胞可以识别单糖岩藻糖用于糖基化的来源/遗传特征。我们测量了每种来源的 GDP-岩藻糖对聚糖合成的贡献,发现不同的岩藻糖基转移酶、个别糖蛋白和连接特异性岩藻糖残基根据其遗传特征识别和选择不同的 GDP-岩藻糖池。这支持了 GDP-岩藻糖存在于多个不同的池中的假设,而不是作为单一均质池存在。由于整体池的大小保持不变,因此选择受到严格调控。我们提出了关于单糖代谢的新观点,这可能具有普遍适用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9bf2/9441714/f5c328346428/JCB_202205038_GA.jpg

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