首页> 美国卫生研究院文献>Journal of Bacteriology >CO2-Responsive Expression and Gene Organization of Three Ribulose-15-Bisphosphate Carboxylase/Oxygenase Enzymes and Carboxysomes in Hydrogenovibrio marinus Strain MH-110
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CO2-Responsive Expression and Gene Organization of Three Ribulose-15-Bisphosphate Carboxylase/Oxygenase Enzymes and Carboxysomes in Hydrogenovibrio marinus Strain MH-110

机译:三种氢15-二磷酸核糖羧化酶/加氧酶和羧化酶在海藻变种MH-110中的CO2响应表达和基因组织

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摘要

Hydrogenovibrio marinus strain MH-110, an obligately lithoautotrophic hydrogen-oxidizing bacterium, fixes CO2 by the Calvin-Benson-Bassham cycle. Strain MH-110 possesses three different sets of genes for ribulose-1,5-bisphosphate carboxylase/oxygenase (RubisCO): CbbLS-1 and CbbLS-2, which belong to form I (L8S8), and CbbM, which belongs to form II (Lx). In this paper, we report that the genes for CbbLS-1 (cbbLS-1) and CbbM (cbbM) are both followed by the cbbQO genes and preceded by the cbbR genes encoding LysR-type regulators. In contrast, the gene for CbbLS-2 (cbbLS-2) is followed by genes encoding carboxysome shell peptides. We also characterized the three RubisCOs in vivo by examining their expression profiles in environments with different CO2 availabilities. Immunoblot analyses revealed that when strain MH-110 was cultivated in 15% CO2, only the form II RubisCO, CbbM, was expressed. When strain MH-110 was cultivated in 2% CO2, CbbLS-1 was expressed in addition to CbbM. In the 0.15% CO2 culture, the expression of CbbM decreased and that of CbbLS-1 disappeared, and CbbLS-2 was expressed. In the atmospheric CO2 concentration of approximately 0.03%, all three RubisCOs were expressed. Transcriptional analyses of mRNA by reverse transcription-PCR showed that the regulation was at the transcriptional level. Electron microscopic observation of MH-110 cells revealed the formation of carboxysomes in the 0.15% CO2 concentration. The results obtained here indicate that strain MH-110 adapts well to various CO2 concentrations by using different types of RubisCO enzymes.
机译:特有的氢自养氢氧化细菌海藻单胞菌菌株MH-110通过Calvin-Benson-Bassham循环固定CO2。菌株MH-110拥有三组不同的核糖1,5-双磷酸羧化酶/加氧酶基因(RubisCO):CbbLS-1和CbbLS-2,属于I型(L8S8),CbbM,属于II型(Lx)。在本文中,我们报告了CbbLS-1(cbbLS-1)和CbbM(cbbM)的基因均跟随cbbQO基因,并先于编码LysR型调节子的cbbR基因。相反,CbbLS-2(cbbLS-2)的基因后面是编码羧化壳肽的基因。我们还通过检查具有不同CO2利用率的环境中的三种RubisCOs在体内的表达特征。免疫印迹分析显示,当将MH-110菌株培养在15%CO2中时,仅表达II型RubisCO CbbM。当菌株MH-110在2%CO 2中培养时,除CbbM外还表达了CbbLS-1。在0.15%的CO2培养物中,CbbM的表达下降,而CbbLS-1的表达消失,而CbbLS-2的表达增加。在大约0.03%的大气CO2浓度下,所有三种RubisCO均被表达。通过逆转录-PCR对mRNA进行的转录分析表明,调控是在转录水平上。 MH-110细胞的电子显微镜观察表明,在浓度为0.15%的CO2中形成了羧基体。此处获得的结果表明,菌株MH-110通过使用不同类型的RubisCO酶可以很好地适应各种CO2浓度。

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