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通过高通量比色法对用于六氯环己烷脱氯的酶和细菌进行功能筛选。

Functional screening of enzymes and bacteria for the dechlorination of hexachlorocyclohexane by a high-throughput colorimetric assay.

作者信息

Sharma Pooja, Jindal Swati, Bala Kiran, Kumari Kirti, Niharika Neha, Kaur Jasvinder, Pandey Gunjan, Pandey Rinku, Russell Robyn J, Oakeshott John G, Lal Rup

机构信息

Molecular Biology Laboratory, Department of Zoology, University of Delhi, Delhi, 110007, India.

出版信息

Biodegradation. 2014 Apr;25(2):179-87. doi: 10.1007/s10532-013-9650-5. Epub 2013 Jun 6.

Abstract

Two distinct microbial dehalogenases are involved in the first steps of degradation of hexachlorocyclohexane (HCH) isomers. The enzymes, LinA and LinB, catalyze dehydrochlorination and dechlorination reactions of HCH respectively, each with distinct isomer specificities. The two enzymes hold great promise for use in the bioremediation of HCH residues in contaminated soils, although their kinetics and isomer specificities are currently limiting. Here we report the functional screening of a library of 700 LinA and LinB clones generated from soil DNA for improved dechlorination activity by means of a high throughput colorimetric assay. The assay relies upon visual colour change of phenol red in an aqueous medium, due to the pH drop associated with the dechlorination reactions. The assay is performed in a microplate format using intact cells, making it quick and simple to perform and it has high sensitivity, dynamic range and reproducibility. The method has been validated with quantitative gas chromatographic analysis of promising clones, revealing some novel variants of both enzymes with superior HCH degrading activities. Some sphingomonad isolates with potentially superior activities were also identified.

摘要

两种不同的微生物脱卤酶参与了六氯环己烷(HCH)异构体降解的第一步。这两种酶,即LinA和LinB,分别催化HCH的脱氯化氢反应和脱氯反应,每种酶都有不同的异构体特异性。尽管它们的动力学和异构体特异性目前存在局限性,但这两种酶在受污染土壤中HCH残留的生物修复方面具有很大的应用前景。在此,我们报告了通过高通量比色法对从土壤DNA中产生的700个LinA和LinB克隆文库进行功能筛选,以提高脱氯活性。该测定法依赖于水性介质中酚红的视觉颜色变化,这是由于脱氯反应导致的pH下降。该测定法使用完整细胞以微孔板形式进行,操作快速简便,具有高灵敏度、动态范围和重现性。该方法已通过对有前景的克隆进行定量气相色谱分析得到验证,揭示了这两种酶的一些具有卓越HCH降解活性的新变体。还鉴定出了一些具有潜在卓越活性的鞘氨醇单胞菌分离株。

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