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大肠杆菌细胞内pH值、膜电位与细胞生长

Escherichia coli intracellular pH, membrane potential, and cell growth.

作者信息

Zilberstein D, Agmon V, Schuldiner S, Padan E

出版信息

J Bacteriol. 1984 Apr;158(1):246-52. doi: 10.1128/jb.158.1.246-252.1984.

Abstract

We studied the changes in various cell functions during the shift to alkaline extracellular pH in wild-type Escherichia coli and in strain DZ3, a mutant defective in pH homeostasis. A rapid increase in membrane potential (delta psi) was detected in both the wild type and the mutant immediately upon the shift, when both cell types failed to control intracellular pH. Upon reestablishment of intracellular pH - extracellular pH and growth in the wild type, delta psi decreased to a new steady-state value. The electrochemical proton gradient (delta muH+) was similar in magnitude to that observed before the pH shift. In the mutant DZ3, delta psi remained elevated, and even though delta muH+ was higher than in the wild type, growth was impaired. Cessation of growth in the mutant is not a result of cell death. Hence, the mutant affords an interesting system to explore the intracellular-pH-sensitive steps that arrest growth without affecting viability. In addition to delta muH+, we measured respiration rates, protein synthesis, cell viability, induction of beta-galactosidase, DNA synthesis, and cell elongation upon failure of pH homeostasis. Cell division was the only function arrested after the shift in extracellular pH. The cells formed long chains with no increase in colony-forming capacity.

摘要

我们研究了野生型大肠杆菌和pH稳态缺陷型菌株DZ3在细胞外pH转变为碱性过程中各种细胞功能的变化。在转变后,野生型和突变型细胞均无法控制细胞内pH时,二者的膜电位(δψ)立即迅速升高。野生型细胞重新建立细胞内pH - 细胞外pH平衡并恢复生长后,δψ降至新的稳态值。电化学质子梯度(δμH +)的大小与pH转变前观察到的相似。在突变型DZ3中,δψ仍然升高,尽管δμH +高于野生型,但生长受到损害。突变型细胞生长停止并非细胞死亡所致。因此,该突变型提供了一个有趣的系统,可用于探索在不影响活力的情况下阻止生长的细胞内pH敏感步骤。除了δμH +,我们还测量了pH稳态失衡时的呼吸速率、蛋白质合成、细胞活力、β-半乳糖苷酶诱导、DNA合成和细胞伸长。细胞分裂是细胞外pH转变后唯一被阻止的功能。细胞形成长链,集落形成能力没有增加。

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