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从可培养微生物和宿主生长的微生物中定量提取三磷酸腺苷:三磷酸腺苷库的计算

Quantitative extraction of adenosine triphosphate from cultivable and host-grown microbes: calculation of adenosine triphosphate pools.

作者信息

Dhople A M, Hanks J H

出版信息

Appl Microbiol. 1973 Sep;26(3):399-403. doi: 10.1128/am.26.3.399-403.1973.

Abstract

EXISTING DATA ON ADENOSINE TRIPHOSPHATE (ATP) POOLS IN MICROBES ARE DEFICIENT FOR TWO REASONS: (i) incomplete extractions of ATP, and (ii) the failure to take into account that the adverse effects of extracting procedures on standard ATP exert analogous effects on the ATP released from bacterial cells. Methods for correcting observed yields and calculating ATP pools have been demonstrated. Three bacterial species were used in the studies on extraction of ATP: Escherichia coli, Mycobacterium phlei, and Mycobacterium lepraemurium. Perchloric acid and n-butanol were disqualified because of their failure to extract total bacterial ATP even from E. coli and because of inconvenient procedures. The new extraction procedure had minimal effects on standard ATP, liberated 100% of the ATP pools from the three representative species of microbes, and caused no ionic imbalance or quenching of bioluminescence. This method involves vortexing of cell suspensions for 10 s with 23% chloroform (vol/vol), heating at 98 C for the required time (E. coli, 3 min; M. phlei, 5 min; M. lepraemurium, 10 min) and then 1 min at 98 C with vacuum to dry the samples. Heat or chloroform alone may suffice for some microbes and release total ATP from plant and animal cells.

摘要

关于微生物中三磷酸腺苷(ATP)池的现有数据存在缺陷,原因有两个:(i)ATP提取不完全,以及(ii)未能考虑到提取程序对标准ATP的不利影响对从细菌细胞释放的ATP也有类似影响。已经证明了校正观察产量和计算ATP池的方法。在ATP提取研究中使用了三种细菌:大肠杆菌、草分枝杆菌和鼠麻风分枝杆菌。高氯酸和正丁醇不合格,因为它们甚至不能从大肠杆菌中提取总细菌ATP,而且操作不便。新的提取程序对标准ATP的影响最小,从三种代表性微生物中释放出100%的ATP池,并且不会引起离子失衡或生物发光淬灭。该方法包括将细胞悬浮液与23%氯仿(体积/体积)涡旋10秒,在98℃加热所需时间(大肠杆菌3分钟;草分枝杆菌5分钟;鼠麻风分枝杆菌10分钟),然后在98℃真空干燥1分钟。单独加热或氯仿对某些微生物可能就足够了,并且能从植物和动物细胞中释放总ATP。

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