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完整的维诺格拉德斯基硝化杆菌细胞中氧化作用与二氧化碳同化作用调控的研究。

Study of the regulation of oxidation and CO2 assimilation in intact Nitrobacter winogradskyi cells.

作者信息

Eigener U, Bock E

出版信息

Arch Microbiol. 1975 Mar 10;102(3):241-6. doi: 10.1007/BF00428374.

Abstract
  1. Changes of the adenine nucleotides in resting and growing Nitrobacter winogradskyi cells were measured in connection with regulating processes during nitrite oxidation and endogenous respiration. 2. After the addition of nitrite to endogenously respiring cells the ATP pool increased strongly during the first 60 sec at the expense of the ADP pool. At this point the energy charge was approx. 0.55. After the first 90 sec the ATP pool dropped, oscillating, to a lower level. The CO2 assimilation began at this point. 3. Under a nitrogen atmosphere the AMP pool increased and the ATP pool decreased. With a value of approx. 0.17 the energy charge was extremely low. When oxygen was added the Nitrobacter cells began to oxidize stored NADH. The ATP pool increased in a few seconds whereas the AMP pool decreased. The P/O ratio of endogenously respiring cells equaled 0.6 under these conditions. 4. During the changeover from anaerobic to aerobic conditions and in the presence of nitrite the nitrite oxidation and CO2 assimilation, opposed to aerobic conditions, were inhibited at first after the nitrite addition. The changeover of the respiratory chain enzymes from a reduced to an oxidized charge and the ATP increase were delayed in comparison with experiments without nitrite. According to these findings the endogenous respiration must be almost nil while nitrite oxidizing cells are growing.
摘要
  1. 测定了静止和生长中的维氏硝化杆菌细胞中腺嘌呤核苷酸的变化,以及与亚硝酸盐氧化和内源性呼吸过程中的调节过程的关系。2. 向内源性呼吸的细胞中添加亚硝酸盐后,ATP库在最初60秒内强烈增加,以ADP库为代价。此时能量电荷约为0.55。在最初90秒后,ATP库下降,呈振荡状态,降至较低水平。此时开始进行二氧化碳同化。3. 在氮气氛围下,AMP库增加而ATP库减少。能量电荷值约为0.17,极低。添加氧气后,硝化杆菌细胞开始氧化储存的NADH。ATP库在几秒钟内增加,而AMP库减少。在这些条件下,内源性呼吸细胞的P/O比等于0.6。4. 在从厌氧条件转变为需氧条件且存在亚硝酸盐的情况下,与需氧条件相反,添加亚硝酸盐后,亚硝酸盐氧化和二氧化碳同化首先受到抑制。与无亚硝酸盐的实验相比,呼吸链酶从还原态到氧化态的转变以及ATP的增加被延迟。根据这些发现,在亚硝酸盐氧化细胞生长时,内源性呼吸必须几乎为零。

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