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首页> 外文期刊>Nanoscale >Biomimetic mineralization of nitrile hydratase into a mesoporous cobalt-based metal-organic framework for efficient biocatalysis
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Biomimetic mineralization of nitrile hydratase into a mesoporous cobalt-based metal-organic framework for efficient biocatalysis

机译:腈水合酶的仿生矿化介孔钴基有机配合框架有效的生物催化

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Nitrile hydratases (NHases) have attracted considerable attention owing to their application in the synthesis of valuable amides under mild conditions. However, the poor stability of NHases is still one of the main drawbacks for their industrial application. Recently, mesoporous metal-organic frameworks (MOFs) have been explored as an attractive support material for immobilizing enzymes. Here, we encapsulated a recombinant cobalt-type NHase from Aurantimonas manganoxydans into the cobalt-based MOF ZIF-67 by a biomimetic mineralization strategy. The nano-catalyst NHase1229@ZIF-67 shows high catalytic activity for the hydration of 3-cyanopyridine to nicotinamide, and its specific activity reached 29.5 U mg(-1). The NHase1229@ZIF-67 nanoparticles show a significant improvement in the thermal stability of NHase1229. The optimum reaction temperature of NHase1229@ZIF-67 is at 50-55 degrees C, and it still retained 40% of the maximum activity at 70 degrees C. However, the free NHase1229 completely lost its catalytic activity at 70 degrees C. The half-lives of NHase1229@ZIF-67 at 30 and 40 degrees C were 102.0 h and 26.5 h, respectively. NHase1229@ZIF-67 nanoparticles exhibit an excellent cycling performance, and their catalytic efficiency did not significantly decrease in the initial 6 cycles using 0.9 M 3-cyanopyridine as the substrate. In a fed-batch reaction, NHase1229@ZIF-67 can efficiently hydrate 3-cyanopyridine to nicotinamide, and the space-time yield was calculated to be 110 g center dot L-1 center dot h(-1). Therefore, the cobalt-type NHase was immobilized in MOF ZIF-67, which is shown as a potential nanocatalyst for the large-scale industrial preparation of nicotinamide.
机译:腈水合酶(NHases)吸引了相当大的关注由于他们的应用程序在有价值的合成酰胺温和条件。仍然是一个主要的缺点的工业应用。有机框架(mof)探讨了作为一个有吸引力的支持材料固定酶。重组cobalt-type NHase Aurantimonasmanganoxydans到钴MOF zif - 67仿生矿化策略。nano-catalyst nhase1229@zif - 67显示高催化活性的水合作用3-cyanopyridine烟酰胺,其具体活动达到29.5毫克(1)。nhase1229@zif - 67纳米粒子表现出显著的改进的热稳定性NHase1229。nhase1229@zif - 67是在50 - 55摄氏度,它仍然保留了40%的最大活动在70年度c。然而,NHase1229完全自由在70度c失去了它的催化活性nhase1229@zif - 67的半衰期在30和40度分别为102.0 h和26.5 h,分别。nhase1229@zif - 67纳米粒子表现出一个良好的循环性能,和他们催化效率不明显减少使用0.9在最初的6个周期3-cyanopyridine衬底。反应,nhase1229@zif - 67可以有效地烟酰胺水合物3-cyanopyridine,时空产率计算是110 g中心圆点l - 1中心。h(1)。cobalt-type NHase固定化在财政部zif - 67,所示的潜在nanocatalyst大规模的工业制备烟酰胺。

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