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The flexibility of UV-inducible mutation in Deinococcus ficus as evidenced by the existence of the imuB-dnaE2 gene cassette and generation of superior feather degrading bacteria

机译:The flexibility of UV-inducible mutation in Deinococcus ficus as evidenced by the existence of the imuB-dnaE2 gene cassette and generation of superior feather degrading bacteria

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摘要

The lexA-imuB-dnaE2 gene cassette contributing to the TLS (translesion synthesis) polymerase activity and can easily cause mutation after DNA damage in many bacteria. But it was previously thought that TLS polymerase activity was unlikely to exist in the radio-resistant genus Deinococcus. In our preliminary studies, the lexA-imuB-dnaE2 gene cassette was found in a newly isolated feather-degrading Deinococcus ficus. Here we have attempted to determine the imuB gene sequence from another Deinococcus species namely D. grandis, by using the newly designed primers. The destroying of either imuB or dnaE2 gene in D. ficus leads to the increase in UV sensitivity and decrease in UV-induced mutations, which demonstrated the existence of TLS polymerase activity in D. ficus. In the presence of lexA-imuB-dnaE2, it is possible to obtain mutants with various keratinolytic activities after UV exposure. The keratinolytic activity of mutant strain CC-ZG207 increased by approximately twofold during growth in liquid feather medium. In contrast, the mutant strain CC-ZG227 showed only half of the keratinolytic activity compared with the wild type strain. By utilizing SDS-PAGE and zymogram profile analysis, the change in the protease activity was observed. We have proposed that the superior mutants of D. ficus can be created under UV stress, which is mediated by the lexA-imuB-dnaE2 gene cassette. (C) 2011 Elsevier GmbH. All rights reserved.
机译:lexA-imuB-dnaE2基因盒有助于TLS(转移合成)聚合酶活性,并在许多细菌的DNA损伤后容易引起突变。但是以前曾认为,抗辐射的Deinococcus属不太可能存在TLS聚合酶活性。在我们的初步研究中,lexA-imuB-dnaE2基因盒是在新近分离的羽毛降解Deinococcus榕属植物中发现的。在这里,我们尝试通过使用新设计的引物,从另一个Deinococcus物种D. grandis中确定imuB基因序列。榕树中imuB或dnaE2基因的破坏导致紫外线敏感性增加,紫外线诱导的突变减少,这表明榕树中存在TLS聚合酶活性。在lexA-imuB-dnaE2存在下,有可能在紫外线照射后获得具有各种角蛋白分解活性的突变体。在液体羽毛培养基中生长期间,突变株CC-ZG207的角蛋白分解活性增加了大约两倍。相反,突变菌株CC-ZG227与野生型菌株相比仅显示出一半的角蛋白分解活性。通过利用SDS-PAGE和酶谱图分析,观察到蛋白酶活性的变化。我们已经提出,可以在lexa-imuB-dnaE2基因盒介导的紫外线胁迫下创建D.榕属的优良突变体。 (C)2011 Elsevier GmbH。版权所有。

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