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Glycomics meets genomics, epigenomics and other high throughput omics for system biology studies (Review)

机译:糖液学满足基因组学,表观基因组学和其他用于系统生物学研究的高通量组学(综述)

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摘要

Majority of eukaryotic proteins are glycosylated and their glycan moieties have numerous important structural, functional and regulatory roles. Because of structural complexity of glycans and technological limitations glycomics, and particularly glycoproteomics was not able to follow rapid progress in genomics and proteomics over last 30 years. However, the field of glycan has been progressing rapidly and first large-scale studies of the glycome have been completed recently. These studies have revealed significant differences in glycome composition between individuals, which may contribute to the human phenotypic variability. The current state-of-the-art in high-throughput glycomics and its integration with genomics, epigenomics and lipidomics is reviewed in this article.
机译:大多数真核蛋白被糖基化,其聚糖部分具有许多重要的结构,功能和调节作用。由于聚糖的结构复杂性和技术局限性,糖组学,尤其是糖蛋白组学在过去的30年中未能跟随基因组学和蛋白质组学的快速发展。但是,聚糖领域发展迅速,最近首次完成了糖蜜的大规模研究。这些研究揭示了个体之间糖组组成的显着差异,这可能有助于人类的表型变异。本文回顾了当前高通量糖组学的最新技术及其与基因组学,表观基因组学和脂质组学的集成。

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