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大肠杆菌同步生长期间磷脂合成速率的周期性变化。

Cyclic changes of the rate of phospholipid synthesis during synchronous growth of Escherichia coli.

作者信息

Joseleau-Petit D, Kepes F, Kepes A

出版信息

Eur J Biochem. 1984 Mar 15;139(3):605-11. doi: 10.1111/j.1432-1033.1984.tb08047.x.

Abstract

The problem of the coordination between cyclic events in the DNA assembly line and the cell envelope assembly line was approached with the technique of synchronized cultures. Escherichia coli strains ML 30, K12 3300, K12 PC2, K12 BB2014 and B/rF were synchronized by repeated cycles of mass doubling followed by short phosphate starvation periods. Steady-state balanced growth was obtained by subsequent incubation in non-limiting growth conditions for one or more generation times. Several successive cell cycles were monitored for mass increase and cell number, while the rate of DNA synthesis and the rate of phospholipid synthesis were usually measured with more than one method. In all strains, and in strain ML 30 in five different growth media giving doubling times from 20-110 min, a discontinuity in the rate of synthesis of phosphatidylethanolamine and of phosphatidylglycerol was observed. These two major phospholipid components of inner and outer membranes were synthesized at a constant rate per cell for a large portion of the cell cycle and the rate of synthesis of both increased twofold at the same time. This cyclic program was reproducible not only in successive cell cycles, but also in separate experiments with the same strain, in the same medium. In contrast, differences in timing were observed with different strains, and in the same strain with different carbon sources. In particular, the simultaneity of the increase in phospholipid synthesis either with DNA initiation or with cell division could not be observed as a rule.

摘要

利用同步培养技术研究了DNA装配线中的循环事件与细胞包膜装配线之间的协调问题。通过重复的大量倍增循环,随后进行短暂的磷酸盐饥饿期,使大肠杆菌菌株ML 30、K12 3300、K12 PC2、K12 BB2014和B/rF同步化。随后在非限制性生长条件下孵育一代或多代时间,以获得稳态平衡生长。监测了几个连续的细胞周期中的质量增加和细胞数量,同时通常用不止一种方法测量DNA合成速率和磷脂合成速率。在所有菌株中,以及在五种不同生长培养基(倍增时间为20 - 110分钟)中的ML 30菌株中,观察到磷脂酰乙醇胺和磷脂酰甘油的合成速率存在间断性。内膜和外膜的这两种主要磷脂成分在细胞周期的大部分时间内以每个细胞恒定的速率合成,并且两者的合成速率同时增加了两倍。这种循环程序不仅在连续的细胞周期中,而且在同一菌株在相同培养基中的单独实验中都是可重复的。相比之下,在不同菌株之间以及同一菌株在不同碳源条件下观察到了时间上的差异。特别是,通常无法观察到磷脂合成增加与DNA起始或细胞分裂同时发生的情况。

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