Saito N, Yamamoto K
J Bacteriol. 1975 Mar;121(3):848-56. doi: 10.1128/jb.121.3.848-856.1975.
Possible factors regulating alpha-mylase synthesis in wild-type Bacillus licheniformis and in mutants producing elevated levels of the enzyme were studied in terms of catabolite repression, apparent temperature-sensitive repression, induction, and culture age. The synthesis of alpha-amylase in the parent strain occurred long after the culture reached the stationary phase of growth as a result of de novo protein synthesis, occurred only at high temperature around 50 C and not below 45 C, appeared to be induced in the presence of oligosaccharides with some linkage of alpha-1,4-, beta-1,4, beta-1,6-glucosyl glucose, or alpha-1,6-galactosyl glucose, and was repressed by the addition of exogenous glucose or low-molecular-weight metabolites. The addition of cyclic adenosine 3',5'-monophosphate stimulated alpha-amylase accumulation in growing cultures of the parent strain, but neither shortened the long lap period prior to the start of alpha-amylase synthesis nor mitigated the repressive effect of glucose. Mutant strains derived from the parent strain showed variation in the pattern of alpha-amylase synthesis, and some of them such as F-12s and F-14 produced alpha-amylase constitutively and without sensitivity to catabolite repression or transient repression from the moment of cell growth. These results are discussed in relation to possible regulatory mechanisms that might account for the observed characteristics of alpha-amylase synthesis in this facultative thermophilic microorganism.
从分解代谢物阻遏、明显的温度敏感阻遏、诱导和培养时间等方面,研究了调控野生型地衣芽孢杆菌及该酶产量升高的突变体中α-淀粉酶合成的可能因素。亲本菌株中α-淀粉酶的合成是在培养物达到生长稳定期很久之后由于从头合成蛋白质而发生的,仅在约50℃的高温下发生而在45℃以下不发生,似乎在具有某些α-1,4-、β-1,4、β-1,6-葡糖基葡萄糖或α-1,6-半乳糖基葡萄糖连接的寡糖存在下被诱导,并且通过添加外源葡萄糖或低分子量代谢物而被阻遏。添加环腺苷3',5'-单磷酸刺激亲本菌株生长培养物中α-淀粉酶的积累,但既没有缩短α-淀粉酶合成开始前的长时间间隔,也没有减轻葡萄糖的阻遏作用。源自亲本菌株的突变体菌株在α-淀粉酶合成模式上表现出差异,其中一些如F-12s和F-14从细胞生长时起就组成型产生α-淀粉酶且对分解代谢物阻遏或瞬时阻遏不敏感。结合可能解释该兼性嗜热微生物中α-淀粉酶合成所观察到特征的调控机制对这些结果进行了讨论。