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首页> 外文期刊>Metallomics. integrated biometal science >In vivo metal selectivity of metal-dependent biosynthesis of cobalt-type nitrile hydratase in Rhodococcus bacteria: a new look at the nitrile hydratase maturation mechanism?
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In vivo metal selectivity of metal-dependent biosynthesis of cobalt-type nitrile hydratase in Rhodococcus bacteria: a new look at the nitrile hydratase maturation mechanism?

机译:在罗达卡氏细菌中钴型丁腈酶的金属依赖性生物合成的体内金属选择性:丁腈酶成熟机制的新外观?

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摘要

This study highlights the effect of heavy metal ions on the expression of cobalt-containing nitrile hydratase (NHase) in Rhodococcus strains, which over-produce this enzyme. Both metal-dependent derepression of transcription and maturation of NHase were considered. We demonstrated that nickel ions can derepress the NHase promoter in several Rhodococcus strains. The cblA gene of a cobalt-dependent transcriptional repressor was shown to be indispensable for nickel-mediated derepression. As for maturation, we showed that nickel ions could not replace cobalt ions during the synthesis of active NHase. We also revealed that the amount of beta-subunit decreased during NHase expression without added cobalt. We showed this using three variants of NHase in vivo synthesis: by using nickel- or urea-induced synthesis in cblA(+) strains, and by using metal-independent constitutive synthesis in cblA(-) strains. In all cases, we found that the amount of beta-subunit was significantly lower than the amount of alpha-subunit. In contrast, equimolar amounts of both subunits were synthesized after growth in the presence of added cobalt. Nickel did not affect NHase synthesis in mixtures with cobalt. This suggests that the metal selectivity in cblA-dependent regulation of NHase transcription was too low to discriminate between cobalt and nickel, but the selectivity of the NHase maturation mechanism was high enough to do so. Moreover, we can assume that the beta-subunit is more subject to proteolytic degradation without the addition of cobalt, than the alpha-subunit. This indicates that cobalt ions presumably play an unknown role in the stability of the beta-subunit in vivo.
机译:该研究突出了重金属离子对越岩菌株中含钴丁腈水解酶(NHase)的影响,其过度产生该酶。考虑了NHASE的依赖性依赖性抑制和NHase的成熟。我们证明镍离子可以在几种rhodococcus菌株中DEERPASE启动子。依赖于钴依赖性转录阻遏物的CBLA基因被证明是镍介导的DERELAGESS的必不可少的。至于成熟,我们展示镍离子在合成活性NHase期间不能取代钴离子。我们还透露,在NHASE表达期间β-亚基的量减少,而不添加钴。我们在体内合成中使用了三种NHase的三种变体:通过在CBLA(+)菌株中使用镍或尿素诱导的合成,并通过CBLA( - - )菌株中的金属无关的本构成。在所有情况下,我们发现β-亚基的量明显低于α-亚基的量。相比之下,在添加钴的存在下在生长后合成两种亚基的等摩尔量。镍不影响与钴混合物中的NHase合成。这表明NHASE转录的CBLA依赖调节中的金属选择性太低,不能区分钴和镍,但NHASE成熟机制的选择性足够高,以便这样做。此外,我们可以假设β-亚基更容易受蛋白水解降解,而不会比α-亚基添加钴。这表明钴离子可能在体内β-亚基的稳定性中发挥着不明作用。

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    Natl Res Ctr Kurchatov Inst State Res Inst Genet &

    Select Ind Microorganisms Mol Biotechnol Lab 1 St Dorojny Pr Moscow 113545 Russia;

    Natl Res Ctr Kurchatov Inst State Res Inst Genet &

    Select Ind Microorganisms Mol Biotechnol Lab 1 St Dorojny Pr Moscow 113545 Russia;

    Natl Res Ctr Kurchatov Inst State Res Inst Genet &

    Select Ind Microorganisms Mol Biotechnol Lab 1 St Dorojny Pr Moscow 113545 Russia;

    Natl Res Ctr Kurchatov Inst State Res Inst Genet &

    Select Ind Microorganisms Mol Biotechnol Lab 1 St Dorojny Pr Moscow 113545 Russia;

    Natl Res Ctr Kurchatov Inst State Res Inst Genet &

    Select Ind Microorganisms Mol Biotechnol Lab 1 St Dorojny Pr Moscow 113545 Russia;

    Natl Res Ctr Kurchatov Inst State Res Inst Genet &

    Select Ind Microorganisms Mol Biotechnol Lab 1 St Dorojny Pr Moscow 113545 Russia;

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  • 正文语种 eng
  • 中图分类 分子生物学 ;
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