首页> 外文期刊>Journal of Virology >Involvement of the bacterial groM gene product in bacteriophage T7 reproduction. II. A reduced level of ion concentrations causes the blockage of T7 maturation in K-12-M cells.
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Involvement of the bacterial groM gene product in bacteriophage T7 reproduction. II. A reduced level of ion concentrations causes the blockage of T7 maturation in K-12-M cells.

机译:细菌Grom基因产物在噬菌体T7繁殖中的参与。 II。降低的离子浓度水平导致K-12-M细胞中的T7成熟堵塞。

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Cellular leakage observed in Escherichia coli K-12-M shortly after T7 infection might be the cause of arrested phage morphogenesis. We observed in this strain, but not in the normal host, a drastic reduction of the intracellular concentration of potassium (60%), magnesium (40%), putrescine (90%), and spermidine (40%), whereas ATP was not significantly reduced. Leakage started about 1 min after the addition of phage and was arrested 3 to 5 min postinfection. Larger molecules such as o-nitrophenyl-beta-D-galactopyranoside could not enter the cells, showing that the permeability of the membrane was not generally affected. To prevent their leakage, we increased the outside concentrations of several small molecules and ions. The yield of progeny phage was substantially increased by the addition of 100 mM MgSO4.
机译:在T7感染后不久在大肠杆菌K-12-M中观察到的细胞泄漏可能是被捕噬菌体形态发生的原因。我们在这种菌株中观察到,但不在正常宿主中,钾细胞内浓度的急剧降低(60%),镁(40%),普雷氏菌素(90%)和亚精胺(40%),而ATP则不是显着减少。添加噬菌体后,泄漏大约1分钟,并被逮捕3至5分钟。较大的分子如O-硝基苯基 - β-D-半乳糖体不能进入细胞,表明膜的渗透性通常不会受到影响。为了防止渗漏,我们增加了几种小分子和离子的外部浓度。通过加入100mM MgSO 4,基本上增加后代噬菌体的​​产率。

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