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HIGH-THROUGHPUT FUNCTIONAL METAGENOMICS FOR THE DISCOVERY OF GLYCAN METABOLIZING PATHWAYS

机译:用于发现甘草代谢途径的高通量功能偏见

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Glycans are widely distributed in nature. Produced by almost all organisms, they are involved in numerous cellular processes, such as energy supply and storage, cell structuration, protein maturation and signalling, and cell recognition. Glycans are thus key elements mediating the interactions between mammals, plants, bacteria, fungi and even viruses. They also represent a reliable source of carbon for microbes, which have developed complex strategies to face their structural diversity and to harvest them. However between 70 and 99% of these microorganisms are still uncultured, while they represent a goldmine for the discovery of new enzymes. In order to boost their identification and characterization, a functional metagenomic approach was developed, based on the design of various high-throughput, robust and sensitive screening strategies. The functional potential of Gbp of metagenomic DNA from various origins was explored, revealing dozens of novel enzyme families and functions.
机译:聚糖在自然界中广泛分布。几乎所有生物产生的,它们都参与了许多细胞过程,例如能量供应和储存,细胞结构,蛋白质成熟和信号传导以及细胞识别。因此,聚糖是介导哺乳动物,植物,细菌,真菌甚至病毒之间的相互作用的关键因素。它们还代表了微生物的可靠碳来源,这些碳源具有开发复杂的策略,以面对它们的结构多样性并收获它们。然而,70至99%的微生物仍然是未培养的,而他们代表了用于发现新酶的金矿。为了提高其鉴定和表征,基于各种高通量,强大,敏感筛选策略的设计,开发了一种功能性偏见方法。探讨了来自各种起源的梅毒DNA GBP的功能潜力,揭示了数十种新型酶家族和功能。

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