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Glycosaminoglycanomics: where we are

机译:糖胺聚糖漫画:我们在哪里

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摘要

Glycosaminoglycans regulate numerous physiopathological processes such as development, angiogenesis, innate immunity, cancer and neurodegenerative diseases. Cell surface GAGs are involved in cell-cell and cell-matrix interactions, cell adhesion and signaling, and host-pathogen interactions. GAGs contribute to the assembly of the extracellular matrix and heparan sulfate chains are able to sequester growth factors in the ECM. Their biological activities are regulated by their interactions with proteins. The structural heterogeneity of GAGs, mostly due to chemical modifications occurring during and after their synthesis, makes the development of analytical techniques for their profiling in cells, tissues, and biological fluids, and of computational tools for mining GAG-protein interaction data very challenging. We give here an overview of the experimental approaches used in glycosaminoglycomics, of the major GAG-protein interactomes characterized so far, and of the computational tools and databases available to analyze and store GAG structures and interactions.
机译:糖酰胺聚糖调节许多生理病理学过程,如发育,血管生成,先天免疫,癌症和神经变性疾病。细胞表面GAG参与细胞 - 细胞和细胞 - 基质相互作用,细胞粘附和信号传导,以及宿主病原体相互作用。 Gags有助于组装细胞外基质,硫酸乙酰肝素链能够螯合ECM中的生长因子。他们的生物活性通过与蛋白质的相互作用来调节。 GAG的结构异质性,主要是由于它们在合成期间和之后发生的化学修饰,使其在细胞,组织和生物流体中的分析和用于开采Gag-蛋白相互作用数据的计算工具的分析技术的发展。我们在此概述了糖酰胺蛋白酶组织中使用的实验方法,其主要的GAG蛋白杂交体,其特征在于到目前为止,以及可用于分析和存储GAG结构和相互作用的计算工具和数据库。

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