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葡萄糖氧化酶被包埋在金内,将其转化为一种通用的单糖氧化酶。

Entrapment of glucose oxidase within gold converts it to a general monosaccharide-oxidase.

机构信息

Institute of Chemistry and the Center for Nanoscience and Nanotechnology, The Hebrew University of Jerusalem, 9190401, Jerusalem, Israel.

出版信息

Sci Rep. 2021 May 24;11(1):10737. doi: 10.1038/s41598-021-90242-2.

Abstract

We report that entrapping glucose oxidase (GOx) within metallic gold, expands its activity to become an oxidase for monosaccharides that do not have a natural enzyme with that activity-fructose and xylose-and that this entrapment also removes the enantioselectivity, rendering this enzyme capable of oxidizing the "wrong" L-enantiomer of glucose. These observations suggest that in this biomaterial adsorptive interactions of the outer regions of the protein with the gold cage, pull apart and widen the tunnel between the two monomeric units of GOx, to a degree that its stereoselectivity is compromised; then, the active sites which are more versatile than currently attributed to, are free and capable of acting on the foreign sugars. To test this proposition, we entrapped in gold L-asparaginase, which is also a dimeric enzyme (a dimer of tight dimers), and found, again, that this metallic biomaterial widens the activity of that enzyme, to include the D-amino acid counter enantiomer as well. Detailed kinetic analyses for all substrates are provided for the gold bio-composites, including determination of the difference between the activation energies towards two opposite enantiomers.

摘要

我们报告说,将葡萄糖氧化酶(GOx)困在金属金中,可以使其活性扩展为一种氧化酶,用于那些没有天然酶具有这种活性的单糖——果糖和木糖——而且这种包埋还消除了对映体选择性,使这种酶能够氧化葡萄糖的“错误” L-对映体。这些观察结果表明,在这种生物材料中,蛋白质的外区域与金笼的吸附相互作用,将 GOx 的两个单体单元之间的隧道拉开并加宽,达到其立体选择性受损的程度;然后,活性位点比目前归因于更通用,是自由的,并能够作用于外来糖。为了验证这一假设,我们将 L-天冬酰胺酶包埋在金中,L-天冬酰胺酶也是一种二聚体酶(紧密二聚体的二聚体),我们再次发现,这种金属生物材料拓宽了该酶的活性,使其能够包括 D-氨基酸对映体。为金生物复合材料提供了所有底物的详细动力学分析,包括确定两种相反对映体的活化能之间的差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/370c/8144553/3ed0074440d3/41598_2021_90242_Fig1_HTML.jpg

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