首页> 美国卫生研究院文献>Journal of Bacteriology >Nucleotide sequence and functional analysis of cbbR a positive regulator of the Calvin cycle operons of Rhodobacter sphaeroides.
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Nucleotide sequence and functional analysis of cbbR a positive regulator of the Calvin cycle operons of Rhodobacter sphaeroides.

机译:cbbR的核苷酸序列和功能分析sbberoides的加尔文循环操纵子的正调控子。

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摘要

Structural genes encoding Calvin cycle enzymes in Rhodobacter sphaeroides are duplicated and organized within two physically distinct transcriptional units, the form I and form II cbb operons. Nucleotide sequence determination of the region upstream of the form I operon revealed a divergently transcribed open reading frame, cbbR, that showed significant similarity to the LysR family of transcriptional regulatory proteins. Mutants containing an insertionally inactivated cbbR gene were impaired in photoheterotrophic growth and completely unable to grow photolithoautotrophically with CO2 as the sole carbon source. In the cbbR strain, expression of genes within the form I operon was completely abolished and that of the form II operon was reduced to about 30% of the wild-type level. The cloned cbbR gene complemented the mutant for wild-type growth characteristics, and normal levels of ribulose 1,5-bisphosphate carboxylase/oxygenase (RubisCO) were observed. However, rocket immunoelectrophoresis revealed that the wild-type level of RubisCO was due to overexpression of the form II enzyme, whereas expression of the form I RubisCO was 10% of that of the wild-type strain. The cbbR insertional inactivation did not appear to affect aerobic expression of either CO2 fixation operon, but preliminary evidence suggests that the constitutive expression of the form II operon observed in the cbbR strain may be subject to repression during aerobic growth.
机译:球形球形红细菌中编码加尔文循环酶的结构基因在两个物理上不同的转录单位(I型和II型cbb操纵子)中复制和组织。 I型操纵子上游区域的核苷酸序列测定揭示了转录不同的开放阅读框cbbR,其与转录调节蛋白的LysR家族显着相似。含有插入失活的cbbR基因的突变体在光异养生长中受损,并且完全无法以CO2为唯一碳源进行光养。在cbbR株中,I型操纵子内基因的表达被完全消除,而II型操纵子内基因的表达减少到野生型水平的约30%。克隆的cbbR基因补充了突变体的野生型生长特征,并且观察到正常水平的核糖1,5-双磷酸羧化酶/加氧酶(RubisCO)。但是,火箭免疫电泳显示,RubisCO的野生型水平是由于II型酶的过表达,而I型RubisCO的表达是野生型菌株的10%。 cbbR插入失活似乎没有影响任何一个CO2固定操纵子的有氧表达,但是初步证据表明,在cbbR菌株中观察到的II型操纵子的组成型表达可能在有氧生长过程中受到抑制。

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