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从南极节杆菌分离株中获得的具有低温最适活性的β-半乳糖苷酶的生化特性

Biochemical characterization of a beta-galactosidase with a low temperature optimum obtained from an Antarctic arthrobacter isolate.

作者信息

Coker James A, Sheridan Peter P, Loveland-Curtze Jennifer, Gutshall Kevin R, Auman Ann J, Brenchley Jean E

机构信息

Department of Biochemistry and Molecular Biology, The Pennsylvania State University, University Park, Pennsylvania 16802, USA.

出版信息

J Bacteriol. 2003 Sep;185(18):5473-82. doi: 10.1128/JB.185.18.5473-5482.2003.

Abstract

A psychrophilic gram-positive isolate was obtained from Antarctic Dry Valley soil. It utilized lactose, had a rod-coccus cycle, and contained lysine as the diamino acid in its cell wall. Consistent with these physiological traits, the 16S ribosomal DNA sequence showed that it was phylogenetically related to other Arthrobacter species. A gene (bgaS) encoding a family 2 beta-galactosidase was cloned from this organism into an Escherichia coli host. Preliminary results showed that the enzyme was cold active (optimal activity at 18 degrees C and 50% activity remaining at 0 degrees C) and heat labile (inactivated within 10 min at 37 degrees C). To enable rapid purification, vectors were constructed adding histidine residues to the BgaS enzyme and its E. coli LacZ counterpart, which was purified for comparison. The His tag additions reduced the specific activities of both beta-galactosidases but did not alter the other characteristics of the enzymes. Kinetic studies using o-nitrophenyl-beta-D-galactopyranoside showed that BgaS with and without a His tag had greater catalytic activity at and below 20 degrees C than the comparable LacZ beta-galactosidases. The BgaS heat lability was investigated by ultracentrifugation, where the active enzyme was a homotetramer at 4 degrees C but dissociated into inactive monomers at 25 degrees C. Comparisons of family 2 beta-galactosidase amino acid compositions and modeling studies with the LacZ structure did not mimic suggested trends for conferring enzyme flexibility at low temperatures, consistent with the changes affecting thermal adaptation being localized and subtle. Mutation studies of the BgaS enzyme should aid our understanding of such specific, localized changes affecting enzyme thermal properties.

摘要

从南极干谷土壤中分离出一株嗜冷革兰氏阳性菌。它能利用乳糖,具有杆状-球菌循环,且细胞壁中的二氨基酸为赖氨酸。与这些生理特性一致,16S核糖体DNA序列显示它在系统发育上与其他节杆菌属物种相关。从该生物体中克隆出一个编码2型β-半乳糖苷酶的基因(bgaS),并将其导入大肠杆菌宿主中。初步结果表明,该酶具有冷活性(在18℃时活性最佳,在0℃时仍保留50%的活性)且热不稳定(在37℃下10分钟内失活)。为了实现快速纯化,构建了载体,在BgaS酶及其大肠杆菌LacZ对应物上添加组氨酸残基,并对后者进行纯化以供比较。添加His标签降低了两种β-半乳糖苷酶的比活性,但未改变酶的其他特性。使用邻硝基苯基-β-D-吡喃半乳糖苷进行的动力学研究表明,带有和不带有His标签的BgaS在20℃及以下时比相应的LacZβ-半乳糖苷酶具有更高的催化活性。通过超速离心研究了BgaS的热不稳定性,其中活性酶在4℃时为同四聚体,但在25℃时解离为无活性的单体。对2型β-半乳糖苷酶氨基酸组成的比较以及与LacZ结构的建模研究并未模拟出在低温下赋予酶柔韧性的建议趋势,这与影响热适应性变化的局部性和微妙性一致。对BgaS酶的突变研究应有助于我们理解影响酶热性质的此类特定局部变化。

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