首页> 外文期刊>Protein Expression and Purification >Construction and characterization of histidine-tagged haloalkane dehalogenase (LinB) of a new substrate class from a gamma-hexachlorocyclohexane-degrading bacterium, Sphingomonas paucimobilis UT26.
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Construction and characterization of histidine-tagged haloalkane dehalogenase (LinB) of a new substrate class from a gamma-hexachlorocyclohexane-degrading bacterium, Sphingomonas paucimobilis UT26.

机译:组氨酸标记的卤代烷脱卤酶(LinB)的构建和表征,该新底物来自γ-六氯环己烷降解细菌鞘氨醇单胞菌UT26。

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摘要

The linB gene product (LinB), which is involved in the degradation of gamma-hexachlorocyclohexane in Sphingomonas paucimobilis UT26, is a member of haloalkane dehalogenases with a broad range of substrate specificity. Elucidation of the factors determining its substrate specificity is of interest. Aiming to facilitate purification of recombinant LinB protein for site-directed mutagenesis analysis, a 6-histidyl tail was added to the C-terminus of LinB. The His-tagged LinB was specifically bound with Ni-NTA resin in the buffer containing 10 mM imidazole. After elution with 500 mM imidazole, quantitative recovery of protein occurred. The steady-state kinetic parameters of the His-tagged LinB for four substrates were in good agreement with that of wild-type recombinant LinB. Although the His-tagged LinB expressed in an average of 80% of the activity of the wild type LinB for 10 different substrates, the decrease was very similar for different substrates with the standard deviation of 5.5%. The small activity reduction is independent of the substrate shape, size, or number of substituents, indicating that the His-tagged LinB can be used for further mutagenesis studies. To confirm the suitability of this system for mutagenesis studies, two mutant proteins with substitution in putative halide binding residues (W109 and F151) were constructed, purified, and tested for activity. As expected, complete loss in activity of W109L and sustained activity of F151W were observed. Copyright 1999 Academic Press.
机译:linB基因产物(LinB)参与了鞘氨醇单胞菌UT26中γ-六氯环己烷的降解,是卤代烷脱卤酶的成员,具有广泛的底物特异性。阐明决定其底物特异性的因素是令人感兴趣的。为了促进重组LinB蛋白的纯化以进行定点诱变分析,在LinB的C端添加了6个组氨酸的尾巴。 His标记的LinB在含10 mM咪唑的缓冲液中与Ni-NTA树脂特异性结合。用500 mM咪唑洗脱后,定量回收蛋白质。具有四个底物的带有His标签的LinB的稳态动力学参数与野生型重组LinB的稳态动力学参数非常吻合。尽管用His标记的LinB在10种不同的底物中平均表达了野生型LinB活性的80%,但对于不同的底物,其下降非常相似,标准偏差为5.5%。较小的活性降低与底物的形状,大小或取代基的数量无关,表明His标记的LinB可用于进一步的诱变研究。为了证实该系统适用于诱变研究,构建,纯化并测试了活性,推测了两个在假定的卤化物结合残基中被取代的突变蛋白(W109和F151)。如预期的那样,观察到W109L的活性完全丧失,而F151W的活性持续丧失。版权所有1999 Academic Press。

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