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首页> 外文期刊>Acta Crystallographica Section F >Viewing the human microbiome through three-dimensional glasses: integrating structural and functional studies to better define the properties of myriad carbohydrate-active enzymes
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Viewing the human microbiome through three-dimensional glasses: integrating structural and functional studies to better define the properties of myriad carbohydrate-active enzymes

机译:通过三维眼镜观察人类微生物组:整合结构和功能研究,以更好地定义各种碳水化合物活性酶的性质

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Recent studies have provided an unprecedented view of the trillions of microbes associated with the human body. The human microbiome harbors tremendous diversity at multiple levels: the species that colonize each individual and each body habitat; the genes that are found in each organism's genome; the expression of these genes and the interactions and activities of their protein products. The sources of this diversity are wide-ranging and reflect both environmental and host factors. A major challenge moving forward is defining the precise functions of members of various families of proteins represented in our microbiomes, including the highly diverse carbohydrate-active enzymes (CAZymes) involved in numerous biologically important chemical transformations, such as the degradation of complex dietary polysaccharides. Coupling metagenomic analyses to structural genomics initiatives and to biochemical and other functional assays of CAZymes will be essential for determining how these as well as other microbiome-encoded proteins operate to shape the properties of microbial communities and their human hosts.
机译:最近的研究提供了与人体相关的数万亿微生物的空前看法。人类微生物组在多个层面上都具有巨大的多样性:殖民每个人和每个身体栖息地的物种;每个生物的基因组中发现的基因;这些基因的表达及其蛋白产物的相互作用和活性。这种多样性的来源广泛,并反映了环境和宿主因素。向前迈进的主要挑战是定义我们微生物群中代表的各种蛋白质家族的成员的精确功能,包括参与多种生物学上重要的化学转化(如复杂饮食多糖的降解)的高度多样化的碳水化合物活性酶(CAZymes)。将宏基因组学分析与结构基因组学计划以及CAZymes的生化和其他功能分析相结合,对于确定这些以及其他微生物组编码的蛋白质如何运作以塑造微生物群落及其人类宿主的特性至关重要。

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