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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Molecular cloning, expression, and functional characterization of 70-kDa heat shock protein, DnaK, from Bacillus halodurans
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Molecular cloning, expression, and functional characterization of 70-kDa heat shock protein, DnaK, from Bacillus halodurans

机译:70-KDA热休克蛋白,DNAK,来自Bacillus Halodurans的分子克隆,表达和功能表征

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摘要

In the present study, we report cloning, sequencing, and functional characterization dnaK gene of B. halodurans that is the central component in cellular network of molecular chaperones. The 3D structures of DnaK obtained by I-TASSER server showed that the overall structures of DnaK from B. halodurans and human HSP70 chaperone BiP are very similar with a homology of 88.8%. The purified recombinant DnaK consists of a His-tag at C-terminus and show a band on approximately 70-kDa region in SDS-PAGE. The resultant refolding assay revealed that the refolding rate was considerably improved by the addition of the novel DnaK chaperone for the refolding of heat-denatured carbonic anhydrase. Also, salt resistance experiments indicated that E. coli + DnaK survival had enhanced by 4.4-fold as compared with control cells in 0.4 M NaCl. The number of E. coli + DnaK colonies was 2.5-fold higher than control colonies in pH 9.5. We showed that DnaK refolding functions were decreased by increasing Cd2+ in nanomolar concentrations. Hg2+ had a biphasic effect on recombinant DnaK refolding function: inhibition at low and stimulation at high concentrations. It was concluded that the DnaK from B. halodurans can potentially be employed for improving functional properties of proteins in various applications. (C) 2019 Published by Elsevier B.V.
机译:在本研究中,我们报告了B. Halodurans的克隆,测序和功能表征DNAK基因,其是分子伴侣细胞网络中的中央分量。由I-Tasser服务器获得的DNAK的3D结构表明,来自B. Halodurans和人HSP70伴侣BIP的DNAK的整体结构与88.8%的同源性非常相似。纯化的重组DNAK由C-末端的HIS-标签组成,在SDS-PAGE中示出了约70kDA区域的带。所得到的重折叠测定显示,通过添加新的DNAK伴侣,用于重折叠热变性的碳酸酐酶的重折叠,显着提高了重度率。此外,与0.4M NaCl中的对照细胞相比,耐盐实验表明,E.COLI + DNAK存活率增强了4.4倍。大肠杆菌+ DNAK菌落的数量比pH9.5中的对照菌落高2.5倍。我们表明,通过增加纳摩尔浓度的CD2 +降低DNAK重折叠功能。 HG2 +对重组DNAK重度功能的双色效果:在低浓度下抑制和刺激。得出结论是,来自B. Halodurans的DNAK可能用于改善各种应用中蛋白质的功能性质。 (c)2019年由elestvier b.v发布。

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