Marahiel M A, Danders W, Krause M, Kleinkauf H
Eur J Biochem. 1979 Aug 15;99(1):49-55. doi: 10.1111/j.1432-1033.1979.tb13229.x.
Gramicidin-S-negative mutants of Bacillus brevis ATCC9999 have been isolated with a remarkly higher yield after ethidium bromide or acridine orange treatment, than after N-methyl-N'-nitro-N-nitrosoguanidine treatment. Four (MIV, Smr170, R5 and EB 16) of 38 isolated mutants were characterized with respect to the lesion in gramicidin-S-synthesizing activity. The mutants sporulate to the same extent as the parental strain except mutant Smr 170 which sporulates less. However, mutant spores were more heat-sensitive and possessed a reduced level of dipicolinic acid content. No significant difference was observed in the germination time of wild-type and mutant spores. All spores germinated after 80--110 min, but the outgrowth time was different: all gramicidin-S-negative mutants grew out immediately after germination whereas wild-type spores required a lag period of 9--10 h. When the mutants were allowed to sporulate in the presence of gramicidin S, the spores were found to be heat-resistant and their outgrowth postponed to the same period as the parent spores. The addition of gramicidin also eliminated the deficiency of dipicolinic acid. A new class of gramicidin-S-negative mutant, R5, which only activates L-valine and L-leucine, is described. A possible biological function of gramicidin S in the heat-resistance and in the timing of spore outgrowth is discussed.
短短芽孢杆菌ATCC9999的短杆菌肽S阴性突变体,在经溴化乙锭或吖啶橙处理后,其分离产量比经N-甲基-N'-硝基-N-亚硝基胍处理后的产量显著更高。在38个分离出的突变体中,对其中4个(MIV、Smr170、R5和EB 16)在短杆菌肽S合成活性方面的损伤进行了表征。除了Smr 170突变体产孢较少外,其他突变体与亲本菌株的产孢程度相同。然而,突变体孢子对热更敏感,并且吡啶二羧酸含量水平降低。野生型和突变体孢子的萌发时间没有显著差异。所有孢子在80 - 110分钟后萌发,但生长时间不同:所有短杆菌肽S阴性突变体在萌发后立即生长,而野生型孢子需要9 - 10小时的延迟期。当突变体在短杆菌肽S存在的情况下产孢时,发现孢子具有耐热性,并且它们的生长推迟到与亲本孢子相同的时期。添加短杆菌肽还消除了吡啶二羧酸的缺乏。描述了一类新的短杆菌肽S阴性突变体R5,它只激活L-缬氨酸和L-亮氨酸。讨论了短杆菌肽S在耐热性和孢子生长时间方面可能的生物学功能。