ARC Unit of Nitrogen Fixation, University of Sussex, Brighton, BN1 9RQ, UK.
EMBO J. 1982;1(2):197-204. doi: 10.1002/j.1460-2075.1982.tb01147.x.
Several his mutations were found to influence nitrogen fixation in Klebsiella pneumoniae: hisB, hisC, and hisD mutants had 50% of wild-type levels of nitrogenase activity when supplied with 30 mug or less histidine/ml although this concentration did not limit protein synthesis and the mutants retained a Nif plate phenotype. A hisA mutation had a similar but more dramatic effect. At low concentrations of histidine the hisA mutant strain had only 5% of the nitrogenase activity found at high histidine concentration or in a his strain, and was also Nif on low histidine agar plates. Addition of adenine restored nitrogenase activity in the hisA but not the hisB, hisC, or hisD mutants. Low levels of intracellular ATP, a consequence of hisG enzyme activity, correlated with loss of nitrogen-fixing ability in the hisA mutant which failed to sustain nif gene expression under these conditions. Synthesis of other major cell proteins was relatively unaffected indicating that nif gene expression is selectively regulated by the energy status of the organism.
在肺炎克雷伯氏菌中发现了几个 His 突变,影响固氮作用:HisB、HisC 和 HisD 突变体在供应 30μg 或更少的组氨酸/ml 时,具有野生型 50%的固氮酶活性,尽管这种浓度不会限制蛋白质合成,并且突变体保留了 Nif 平板表型。HisA 突变具有类似但更显著的效果。在低浓度组氨酸时,HisA 突变株的固氮酶活性仅为高组氨酸浓度或 His 菌株中的 5%,并且在低组氨酸琼脂平板上也是 Nif。腺嘌呤的添加恢复了 HisA 突变株中的固氮酶活性,但不恢复 HisB、HisC 或 HisD 突变株中的固氮酶活性。HisG 酶活性导致细胞内 ATP 水平降低,与 HisA 突变株固氮能力丧失相关,在这些条件下,HisA 突变株无法维持 nif 基因表达。其他主要细胞蛋白的合成相对不受影响,表明 nif 基因表达是由生物体的能量状态选择性调节的。