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Fragmented α-amylase into microporous metal-organic frameworks as bioreactors
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Fragmented α-amylase into microporous metal-organic frameworks as bioreactors

Li-Hao Liu, Ru-Yin Chiu, Pamela Berilyn So, Stephen Lirio, Hsi-Ya Huang, Wan-Ling LiuChia-Her Lin
Materials, 卷.14(4), 頁碼.1-8
02/2021

摘要

Bioreactor Catalysis Enzyme immobilization Metal-organic framework Size matching Materials Science (all)
This work presents an efficient and facile strategy to prepare an α-amylase bioreactor. As enzymes are quite large to be immobilized inside metal-organic frameworks (MOFs), the tertiary and quaternary structures of α-amylase were first disrupted using a combination of urea, dithio-threitol (DTT), and iodoacetamide (IAA). After losing its tertiary structure, the unfolded proteins can now penetrate into the microporous MOFs, affording fragmented α-amylase@MOF bioreactors. Among the different MOFs evaluated, UiO-66 gave the most promising potential due to the size-matching effect of the α-helix of the fragmented α-amylase with the pore size of UiO-66. The prepared bioreactor exhibited high yields of small carbohydrate (maltose) even when reused up to 15 times (>80% conversion).

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https://doi.org/10.3390/ma14040870檢視
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