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Nitrite-Responsive Activation of the Nitrate Assimilation Operon in Cyanobacteria Plays an Essential Role in Up-Regulation of Nitrate Assimilation Activities under Nitrate-Limited Growth Conditions

机译:蓝藻中硝酸盐同化操纵子的亚硝酸盐响应活化在硝酸盐限制的生长条件下在硝酸盐同化活性上调中起重要作用

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摘要

NtcB of the cyanobacterium Synechococcus elongatus strain PCC 7942 is a LysR family protein that enhances expression of the nitrate assimilation operon (nirA operon) in response to the presence of nitrite, an intermediate of assimilatory nitrate reduction. Inactivation of ntcB in this cyanobacterium specifically abolishes the nitrite responsiveness of nirA operon expression, but under nitrate-replete conditions (wherein negative feedback by intracellularly generated ammonium prevails over the positive effect of nitrite) activity levels of the nitrate assimilation enzymes are marginally higher in the wild-type cells than in the mutant cells, raising the issue of whether the nitrite-promoted regulation has physiological importance. On the other hand, the strains carrying ntcB expressed much higher nitrate assimilation enzyme activities under nitrate-limited growth conditions than under nitrate-replete conditions whereas the ntcB-deficient strains showed levels of the enzyme activities lower than those seen under the nitrate-replete conditions. Although the ntcB mutant maintained a constant cell population in a nitrate-limited chemostat when grown as a single culture, it was diluted at a rate expected for nondividing cells when mixed with the wild-type cells and subjected to nitrate limitation in the chemostat culture system. These results demonstrated that the nitrite-promoted activation of the nitrate assimilation operon is essential for up-regulation of the nitrate assimilation activities under the conditions of nitrate limitation and for competitive utilization of nitrate.
机译:蓝藻集胞蓝藻菌株PCC 7942的NtcB是一种LysR家族蛋白,可响应亚硝酸盐(同化硝酸盐还原的中间体)的存在而增强硝酸盐同化操纵子(nirA操纵子)的表达。在这种蓝细菌中,ntcB的失活特别消除了nirA操纵子表达的亚硝酸盐响应性,但是在硝酸盐充足的条件下(其中细胞内生成的铵的负反馈胜过亚硝酸盐的积极作用),硝酸盐同化酶的活性水平略高。野生型细胞比突变细胞中,提出了亚硝酸盐促进的调节是否具有生理重要性的问题。另一方面,携带ntcB的菌株在硝酸盐有限的生长条件下表达的硝酸盐同化酶活性要比硝酸盐充足的条件下高得多,而缺乏ntcB的菌株显示的酶活性水平要低于硝酸盐充足的条件下。 。尽管ntcB突变体作为单一培养物生长时在硝酸盐限制的恒化器中保持恒定的细胞数量,但它与野生型细胞混合并以不分裂细胞预期的速率稀释,并在化学恒温器培养系统中受到硝酸盐限制。这些结果表明,亚硝酸盐促进的硝酸盐同化操纵子的活化对于在硝酸盐限制条件下上调硝酸盐同化活性和竞争性利用硝酸盐至关重要。

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