Miyairi S, Fukui S
J Bacteriol. 1973 Feb;113(2):658-65. doi: 10.1128/jb.113.2.658-665.1973.
Glucose-1-phosphate-negative mutants that are unable to grow in a synthetic medium containing glucose-1-phosphate (G-1-P) as a sole carbon source were isolated by treatment of Agrobacterium tumefaciens IAM 1525 with N-methyl-N'-nitro-N-nitrosoguanidine. All of the enzymes involved in G-1-P metabolism (glucoside-3-dehydrogenase, 3-ketoglucose-1-phosphate-degrading enzyme, alpha-glucosidase, and phosphatases) were detected in the sonic extract prepared from resting cells of one of the mutants, strain M-24, in approximately equal levels to those in the parent strain. Resting cells of the mutant oxidized G-1-P to 3-ketoglucose-1-phosphate (3KG-1-P), the first product in G-1-P metabolism by the bacterium, with little subsequent degradation, whereas the parent showed further degradation of G-1-P via 3KG-1-P. Glucoside-3-dehydrogenase catalyzing 3-ketoglucoside formation was readily released from cells by osmotic shock, whereas the 3KG-1-P-degrading enzyme was not released. Thus, the former and the latter enzymes might be at different intracellular loci, such as periplasm and cytoplasm, respectively. It is suggested that the mutant strain M-24 is a G-1-P-negative mutant deficient in a 3KG-1-P transport system located on the cytoplasmic membrane.
通过用N-甲基-N'-硝基-N-亚硝基胍处理根癌土壤杆菌IAM 1525,分离出了在含有葡萄糖-1-磷酸(G-1-P)作为唯一碳源的合成培养基中无法生长的葡萄糖-1-磷酸阴性突变体。在从其中一个突变体M-24菌株的静止细胞制备的超声提取物中,检测到了参与G-1-P代谢的所有酶(葡糖苷-3-脱氢酶、3-酮葡萄糖-1-磷酸降解酶、α-葡糖苷酶和磷酸酶),其水平与亲本菌株中的水平大致相当。该突变体的静止细胞将G-1-P氧化为3-酮葡萄糖-1-磷酸(3KG-1-P),这是该细菌G-1-P代谢的第一个产物,随后几乎没有进一步降解,而亲本菌株则通过3KG-1-P对G-1-P进行进一步降解。催化3-酮葡糖苷形成的葡糖苷-3-脱氢酶很容易通过渗透休克从细胞中释放出来,而3KG-1-P降解酶则没有释放。因此,前者和后者的酶可能分别位于不同的细胞内位点,如周质和细胞质。有人认为,突变菌株M-24是一种G-1-P阴性突变体,缺乏位于细胞质膜上的3KG-1-P转运系统。