首页> 美国卫生研究院文献>Journal of Bacteriology >Effects of methotrexate on intraperiplasmic and axenic growth of Bdellovibrio bacteriovorus.
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Effects of methotrexate on intraperiplasmic and axenic growth of Bdellovibrio bacteriovorus.

机译:甲氨蝶呤对细菌弧菌Bdellovibrio perioplasmic和axenic生长的影响。

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摘要

The intraperiplasmic growth rate and cell yield of wild-type Bdellovibrio bacteriovorus 109J, growing on Escherichia coli of normal composition as the substrate, were not markedly inhibited by 10-3 M methotrexate (4-amino-N10-methylpteroylglutamic acid). In contrast, the growth rate and cell yield of the mutant 109Ja, growing axenically in 0.5% yeast extract +0.15% peptone, were strongly inhibited by 10-4 and 10-3 M methotrexate. Thymine, thymidine, and thymidine-5'-monophosphate, in increasing order of effectiveness, partially or completely reversed the inhibition. E. coli depleted of tetrahydrofolate and having an abnormally high protein/deoxyribonucleic acid (DNA) ratio was obtained by growing it in the presence of methotrexate. B. bacteriovourus grew at a normal rate on these depleted E. coli cells but with somewhat reduced cell yield. Mexthotrexate (10-3 M) inhibited intraperiplasmic growth of bdellovibrio on the depleted E. coli somewhat more than it inhibited growth on normal E. coli, but the effects were small compared with inhibition of axenic growth of the mutant. Total bdellovibrio DNA after growth on the depleted E. coli in the presence or absence of methotrexate exceeded the initial quanity of E. coli DNA present. Thymidine-5'-monophosphate (10-3 M) largely reversed the inhibition and increased the amount of net synthesis of DNA. The data are consistent with the prediction that intraperiplasmic growth of B. bacteriovorus should be insensitive to all metabolic inhibitors that act by specifically preventing synthesis of essential monomers. The data also indicate that B. bacteriovorus possesses thymidylate synthetase, thymidine phosphorylase, and thymidine kinase, and has the potential to carry out de novo DNA synthesis from non-DNA precursors during intraperiplasmic growth. The results also suggest that methionyl tRNAfMet is not required for initiation of protein synthesis by B. bacteriovorus.
机译:10-3 M甲氨蝶呤(4-氨基-N10-甲基蝶酰谷氨酸)不能明显抑制野生型Bdellovibrio bacteriovorus 109J在正常组成的大肠杆菌上生长的周质生长速率和细胞产量。相反,在10%和10-3 M甲氨蝶呤中,在0.5%酵母提取物+ 0.15%蛋白ept中轴生地生长的突变体109Ja的生长速率和细胞产量受到强烈抑制。胸腺嘧啶,胸腺嘧啶核苷和5'-单磷酸胸腺嘧啶核苷以增加的效力顺序部分或完全逆转了抑制作用。通过在甲氨蝶呤的存在下使其生长而获得去除四氢叶酸并具有异常高的蛋白质/脱氧核糖核酸(DNA)比率的大肠杆菌。枯草芽孢杆菌在这些枯竭的大肠杆菌细胞上以正常速度生长,但细胞产量有所降低。甲氨蝶呤(10-3 M)抑制枯竭大肠杆菌上的bdellovibrio的周内生长的作用比抑制正常大肠杆菌上的生长的抑制作用要大得多,但是与抑制突变体的轴突生长相比,其作用很小。在存在或不存在甲氨蝶呤的情况下在贫化大肠杆菌上生长后,总bdellovibrio DNA超过了存在的大肠杆菌DNA的初始数量。胸苷5'-单磷酸酯(10-3 M)在很大程度上逆转了抑制作用,并增加了DNA的净合成量。数据与细菌芽孢杆菌周质内生长对所有通过特异性地阻止必需单体合成而起作用的代谢抑制剂不敏感的预测一致。数据还表明,细菌芽孢杆菌具有胸苷酸合成酶,胸苷磷酸化酶和胸苷激酶,并且具有在周质生长期间从非DNA前体进行从头DNA合成的潜力。该结果还表明甲氧酰基tRNAfMet不是细菌芽孢杆菌启动蛋白质合成所必需的。

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