Birnbaum J, Lichstein H C
J Bacteriol. 1966 Oct;92(4):925-30. doi: 10.1128/jb.92.4.925-930.1966.
Birnbaum, Jerome (University of Cincinnati, Cincinnati, Ohio), and Herman C. Lichstein. Metabolism of biotin and analogues of biotin by microorganisms. IV. Degradation of biotin, oxybiotin, and desthiobiotin by Lactobacillus casei. J. Bacteriol. 92:925-930. 1966.-Lactobacillus casei degrades biotin when it is present in excess to products not utilizable for growth by L. plantarum or Saccharomyces cerevisiae. Degrading activity was initiated in the early stationary phase and was controlled by the pH of the medium. Nonproliferating cells, grown previously in excess biotin for 40 hr, metabolized oxybiotin and desthiobiotin as well as biotin. Cells grown in low biotin, or in excess biotin for 20 hr, did not degrade either analogue. Oxybiotin was 50% as active as biotin for growth, whereas desthiobiotin acted as a competitive inhibitor. Cells grown in excess biotin for 40 hr, but not 20 hr, overcame the inhibitory effect of desthiobiotin, when subcultured to media containing a normally inhibitory concentration of the analogue. Moreover, the level of desthiobiotin dropped rapidly during the first 4 to 6 hr before growth ensued. The data indicate that growth in excess biotin enables L. casei to degrade desthiobiotin and, thereby, to overcome the inhibitory effect of the analogue.
伯恩鲍姆,杰罗姆(辛辛那提大学,俄亥俄州辛辛那提),以及赫尔曼·C·利希斯坦。微生物对生物素及其类似物的代谢。IV. 干酪乳杆菌对生物素、氧生物素和脱硫生物素的降解。《细菌学杂志》92:925 - 930。1966年。——当生物素过量存在时,干酪乳杆菌会将其降解为植物乳杆菌或酿酒酵母无法用于生长的产物。降解活性在稳定期早期开始,并受培养基pH值控制。之前在过量生物素中生长40小时的非增殖细胞能够代谢氧生物素、脱硫生物素以及生物素。在低生物素环境中生长或在过量生物素中生长20小时的细胞不会降解任何一种类似物。氧生物素对生长的活性是生物素的50%,而脱硫生物素起竞争性抑制剂的作用。在过量生物素中生长40小时而非20小时的细胞,当转接至含有正常抑制浓度该类似物的培养基中时,能够克服脱硫生物素的抑制作用。此外,在生长开始前的最初4至6小时内,脱硫生物素的水平迅速下降。数据表明,在过量生物素中生长使干酪乳杆菌能够降解脱硫生物素,从而克服该类似物的抑制作用。