Iijima M
J Biochem. 1978 Feb;83(2):395-402. doi: 10.1093/oxfordjournals.jbchem.a131926.
The effects of pyocin Rl on transport systems and syntheses of macromolecules in Pseudomonas aeruginosa strain P14 were studied under two conditions, 0.4 mM and 40 mM Magnesium ions. In the presence of 0.4 mM magnesium ions, the incorporation of [14C]leucine into protein and the uptake of [14C]leucine into the leucine pool were completely inhibited by pyocin. Furthermore, [14C]leucine which had been taken up into the leucine pool was depleted by pyocin. Comparing the concentration of amino acid within cells with that in the medium, it was concluded that the active transport in P14 cells was inhibited completely by pyocin. Such an effect of pyocin Rl on transport systems was not specific to leucine but common to many amino acids and uridine. On the other hand, under the condition of 40 mM magnesium ions, [14C]-leucine once accumulated was not depleted by pyocin, but uptake of [14C]leucine into the leucine pool stopped immediately while incorporation of [14C]leucine into protein continued at a considerably reduced rate; therefore the machinery for protein synthesis was not directly inhibited by pyocin. It is suggested that the loss from the amino acid pool in cells brings about the rapid cessation of protein synthesis under the condition of 0.4 mM magnesium.
在0.4 mM和40 mM镁离子这两种条件下,研究了绿脓菌素Rl对铜绿假单胞菌P14菌株中转运系统和大分子合成的影响。在0.4 mM镁离子存在的情况下,绿脓菌素完全抑制了[14C]亮氨酸掺入蛋白质以及[14C]亮氨酸摄入亮氨酸库的过程。此外,已摄入亮氨酸库的[14C]亮氨酸被绿脓菌素耗尽。通过比较细胞内氨基酸浓度与培养基中的氨基酸浓度,得出结论:绿脓菌素完全抑制了P14细胞中的主动转运。绿脓菌素Rl对转运系统的这种作用并非亮氨酸所特有,而是许多氨基酸和尿苷所共有的。另一方面,在40 mM镁离子条件下,一旦积累的[14C]亮氨酸不会被绿脓菌素耗尽,但[14C]亮氨酸摄入亮氨酸库的过程立即停止,而[14C]亮氨酸掺入蛋白质的过程仍以相当低的速率继续;因此,蛋白质合成机制并未被绿脓菌素直接抑制。有人提出,在0.4 mM镁离子条件下,细胞内氨基酸库的损失导致蛋白质合成迅速停止。