合理设计的氯过氧化物酶介孔生物催化剂对β-雌二醇的卤化反应

K. Salcedo, Eduardo Torres-Ramírez, Iliana Haces, M. Ayala
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引用次数: 5

摘要

摘要:利用Eupergit®C(一种商业介孔丙烯酸基材料)固定化产自fumago Caldariomyces的氯过氧化物酶。由于该酶在中性和碱性pH下的稳定性较低,通常的共价固定方法不能应用于该酶。为了实现蛋白质和载体之间的稳定相互作用,采用了几种策略。载体被芳香族胺、脂肪族胺、戊二醛、重氮离子和马来酰亚胺等不同的活性基团有效地功能化;氯过氧化物酶中暴露于溶剂的氨基酸残基是通过化学修饰来确定或产生的,因此它们在酶稳定的条件下具有活性。监测酶负荷和保留活性,获得比活性在200至25,000 U/g之间的生物催化剂。负载和活性最高的是由化学修饰的CPO制剂固定化溶剂暴露的游离巯基。这种生物催化剂有效地催化了β-雌二醇(一种内分泌干扰物)的转化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Halogenation of β-estradiol by a rationally designed mesoporous biocatalyst based on chloroperoxidase
Abstract Chloroperoxidase from Caldariomyces fumago was immobilized in Eupergit® C, a commercial mesoporous acrylic-based material. Due to low stability of the enzyme under neutral and basic pH, the usual covalent immobilization procedures cannot be applied to this enzyme. Several strategies were followed in order to achieve a stable interaction between the protein and the support. The support was efficiently functionalized with different reactive groups such as aromatic and aliphatic amines, glutaraldehyde, diazonium ions, and maleimide moieties; solvent-exposed amino acid residues in chloroperoxidase were identified or created through chemical modification, so that they were reactive under conditions where the enzyme is stable. Enzyme load and retained activity were monitored, obtaining biocatalysts with specific activity ranging from 200 to 25,000 U/g. The highest load and activity was obtained from the immobilization of a chemically-modified CPO preparation bearing a solvent-exposed free thiol group. This biocatalyst efficiently catalyzed the transformation of β-estradiol, an endocrine disruptor.
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