首页> 外文期刊>Journal of bacteriology >Synthesis of nitrogenase in mutants of the cyanobacterium Anabaena sp. strain PCC 7120 affected in heterocyst development or metabolism.
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Synthesis of nitrogenase in mutants of the cyanobacterium Anabaena sp. strain PCC 7120 affected in heterocyst development or metabolism.

机译:蓝藻鱼腥藻突变体中固氮酶的合成。异种囊发育或代谢受到影响的PCC 7120菌株。

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Mutants of Anabaena sp. strain PCC 7120 that are incapable of sustained growth with air as the sole source of nitrogen were generated by using Tn5-derived transposons. Nitrogenase was expressed only in mutants that showed obvious morphological signs of heterocyst differentiation. Even under rigorously anaerobic conditions, nitrogenase was not synthesized in filaments that were unable to develop heterocysts. These results suggest that competence to synthesize nitrogenase requires a process that leads to an early stage of visible heterocyst development and are consistent with the idea that synthesis of nitrogenase is under developmental control (J. Elhai and C. P. Wolk, EMBO J. 9:3379-3388, 1990). We isolated mutants in which differentiation was arrested at an intermediate stage of heterocyst formation, suggesting that differentiation proceeds in stages; those mutants, as well as mutants with aberrant heterocyst envelopes and a mutant with defective respiration, expressed active nitrogenase under anaerobic conditions only. These results support the idea that the heterocyst envelope and heterocyst respiration are required for protection of nitrogenase from inactivation by oxygen. In the presence of air, such mutants contained less nitrogenase than under anaerobic conditions, and the Fe-protein was present in a posttranslationally modified inactive form. We conclude that internal partial oxygen pressure sufficient to inactivate nitrogenase is insufficient to repress synthesis of the enzyme completely. Among mutants with an apparently intact heterocyst envelope and normal respiration, three had virtually undetectable levels of dinitrogenase reductase under all conditions employed. However, three others expressed oxygen-sensitive nitrogenase activity, suggesting that respiration and barrier to diffusion of gases may not suffice for oxygen protection of nitrogenase in these mutants; two of these mutants reduced acetylene to ethylene and ethane.
机译:鱼腥藻的突变体。通过使用Tn5衍生的转座子产生了不能以空气作为唯一氮源持续生长的PCC 7120菌株。固氮酶仅在突变体中表达,突变体显示出明显的异型囊肿分化迹象。即使在严格的厌氧条件下,也无法在无法发育出异型囊的细丝中合成固氮酶。这些结果表明,合成固氮酶的能力需要一个过程,该过程导致可见的异囊发育的早期阶段,并且与固氮酶的合成处于发育控制之下的想法是一致的(J. Elhai和CP Wolk,EMBO J. 9:3379- 3388,1990)。我们分离出了在异型囊肿形成的中间阶段就停止了分化的突变体,这表明分化是分阶段进行的。这些突变体,以及异常囊肿包膜的突变体和呼吸缺陷的突变体,仅在厌氧条件下表达活性氮酶。这些结果支持这样的思想,即为了保护固氮酶免受氧气的灭活,需要异胞包膜和异胞呼吸。在有空气的情况下,这种突变体比在厌氧条件下含有更少的固氮酶,并且铁蛋白以翻译后修饰的非活性形式存在。我们得出的结论是,足以使固氮酶失活的内部分压不足以完全抑制酶的合成。在具有完好无损的异囊膜包膜和正常呼吸的突变体中,三个突变体在所采用的所有条件下的双氮酶还原酶水平均几乎检测不到。然而,其他三个表达了对氧敏感的固氮酶活性,表明这些突变体的呼吸作用和气体扩散障碍可能不足以保护固氮酶。这些突变体中有两个将乙炔还原为乙烯和乙烷。

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