首页> 美国卫生研究院文献>Acta Crystallographica Section F: Structural Biology and Crystallization Communications >Structure of the fucose mutarotase from Streptococcus pneumoniae in complex with l-­fucose
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Structure of the fucose mutarotase from Streptococcus pneumoniae in complex with l-­fucose

机译:肺炎链球菌与岩藻糖结合的岩藻糖突变酶的结构

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摘要

Streptococcus pneumoniae relies on a variety of carbohydrate-utilization pathways for both colonization of its human host and full virulence during the development of invasive disease. One such pathway is the fucose-utilization pathway, a component of which is fucose mutarotase (SpFcsU), an enzyme that performs the interconversion between α-l-fucose and β-l-fucose. This protein was crystallized and its three-dimensional structure was solved in complex with l-fucose. The structure shows a complex decameric quaternary structure with a high overall degree of structural identity to Escherichia coli FcsU (EcFcsU). Furthermore, the active-site architecture of SpFcsU is highly similar to that of EcFcsU. When considered in the context of the fucose-utilization pathway found in S. pneumoniae, SpFcsU appears to link the two halves of the pathway by enhancing the rate of conversion of the product of the final glycoside hydrolysis step, β-fucose, into the substrate for the fucose isomerase, α-fucose.
机译:肺炎链球菌在侵袭性疾病发展过程中依赖多种碳水化合物利用途径在人类宿主中定植并产生完全毒力。一种这样的途径是岩藻糖利用途径,其成分是岩藻糖诱变酶(SpFcsU),一种在α-1-岩藻糖和β-1-岩藻糖之间进行相互转化的酶。该蛋白质被结晶并且其三维结构与1-岩藻糖复合。该结构显示了一个复杂的十进制四级结构,与大肠杆菌FcsU(EcFcsU)具有较高的整体结构同一性。此外,SpFcsU的活性位点结构与EcFcsU非常相似。当考虑到肺炎链球菌中的岩藻糖利用途径时,SpFcsU似乎通过提高最终糖苷水解步骤的产物β-岩藻糖转化为底物的转化率而将途径的两半联系起来。对于岩藻糖异构酶,α-岩藻糖。

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