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两步固定化过程在新型杂化载体上提高酶性能。

Improvement of enzyme properties with a two-step immobilizaton process on novel heterofunctional supports.

机构信息

Departamento de Biocatálisis, Instituto de Catálisis-CSIC, Campus UAM, Cantoblanco, 28049 Madrid, Spain, and Departamento de Microbiologia, Instituto de Fermentaciones Industriales-CSIC, C/Juan de la Cierva 3, 2006 CSIC, Madrid, Spain.

出版信息

Biomacromolecules. 2010 Nov 8;11(11):3112-7. doi: 10.1021/bm100916r. Epub 2010 Oct 14.

Abstract

Novel heterofunctional glyoxyl-agarose supports were prepared. These supports contain a high concentration of groups (such as quaternary ammonium groups, carboxyl groups, and metal chelates) that are capable of adsorbing proteins, physically or chemically, at neutral pH as well as a high concentration of glyoxyl groups that are unable to immobilize covalently proteins at neutral pH. By using these supports, a two-step immobilization protocol was developed. In the first step, enzymes were adsorbed at pH 7.0 through adsorption of surface regions, which are complementary to the adsorbing groups on the support, and in the second step, the immobilized derivatives were incubated under alkaline conditions to promote an intramolecular multipoint covalent attachment between the glyoxyl groups on the support and the amino groups on the enzyme surface. These new derivatives were compared with those obtained on a monofunctional glyoxyl support at pH 10, in which the region with the greatest number of lysine residues participates in the first immobilization step. In some cases, multipoint immobilization on heterofunctional supports was much more efficient than what was achieved on the monofunctional support. For example, derivatives of tannase from Lactobacillus plantarum on an amino-glyoxyl heterofunctional support were 20-fold more stable than the best derivative on a monofunctional glyoxyl support. Derivatives of lipase from Geobacillus thermocatenulatus (BTL2) on the amino-glyoxyl supports were two times more active and four times more enantioselective than the corresponding monofunctional glyoxyl support derivative.

摘要

新型杂合型乙二醛琼脂糖载体被制备。这些载体含有高浓度的基团(如季铵基团、羧基和金属螯合物),能够在中性 pH 下物理或化学吸附蛋白质,以及高浓度的乙二醛基团,这些基团在中性 pH 下无法共价固定蛋白质。通过使用这些载体,开发了两步固定化方案。在第一步中,酶通过吸附与载体上的吸附基团互补的表面区域,在 pH 7.0 下被吸附;在第二步中,将固定化衍生物在碱性条件下孵育,以促进载体上的乙二醛基团与酶表面上的氨基之间的分子内多点共价连接。这些新的衍生物与在 pH 10 的单功能乙二醛载体上获得的衍生物进行了比较,其中赖氨酸残基数量最多的区域参与了第一步固定化。在某些情况下,杂合型载体上的多点固定化比单功能载体上的固定化效率更高。例如,植物乳杆菌单宁酶在氨基-乙二醛杂合型载体上的衍生物比单功能乙二醛载体上的最佳衍生物稳定 20 倍。热解纤维梭菌脂肪酶(BTL2)在氨基-乙二醛载体上的衍生物比相应的单功能乙二醛载体衍生物的活性高两倍,对映体选择性高四倍。

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