BIRNBAUM J, LICHSTEIN H C
J Bacteriol. 1965 Apr;89(4):1035-40. doi: 10.1128/jb.89.4.1035-1040.1965.
Birnbaum, Jerome (University of Cincinnati College of Medicine, Cincinnati, Ohio), and Herman C. Lichstein. Conversion of d-biotin to biotin vitamers by Lactobacillus arabinosus. J. Bacteriol. 89:1035-1040. 1965.-Saccharomyces cerevisiae utilizes d-biotin, biotin sulfoxide, and several vitamers of biotin, whereas Lactobacillus arabinosus responds to biotin and biotin sulfoxide of the naturally occurring forms of the vitamin. The use of these organisms for differential assay permitted investigation into possible conversion of d-biotin to vitamers of biotin by cells of L. arabinosus. Cells were grown in modified Wright-Skeggs medium containing several levels of biotin. No differences were detected between the assays for free intracellular or bound biotin up to 48 hr of growth. However, at 15 to 16 hr, in media containing an excess of biotin, the lactobacillus assay value for menstruum biotin dropped markedly, whereas the yeast assay showed no change. This suggested that biotin was converted to vitamers not active for L. arabinosus. The biotin-converting system appears to have characteristics of an enzyme system, i.e., a temperature optimum at 37 C, a broad pH optimum of 4.3 to 6.5, and requirements for Mg and Mn ions. Experiments suggest that increasing hydrogen ion concentration is a major physiological mechanism controlling the formation of this system. The vitamers were separated chromatographically and were found to have R(F) values of 0.44 and 0.94, and are combinable and uncombinable with avidin, respectively. The physiological role of biotin conversion is discussed in relation to control of cell populations in cultures of L. arabinosus.
伯恩鲍姆,杰罗姆(俄亥俄州辛辛那提大学医学院),以及赫尔曼·C·利希斯坦。阿拉伯糖乳杆菌将d -生物素转化为生物素维生素异构体。《细菌学杂志》89:1035 - 1040。1965年。——酿酒酵母利用d -生物素、生物素亚砜以及生物素的几种维生素异构体,而阿拉伯糖乳杆菌对该维生素天然存在形式中的生物素和生物素亚砜有反应。利用这些生物体进行差异测定,使得对阿拉伯糖乳杆菌细胞将d -生物素转化为生物素维生素异构体的可能性进行研究成为可能。细胞在含有几种不同生物素水平的改良赖特 - 斯凯格斯培养基中生长。在长达48小时的生长过程中,未检测到游离细胞内生物素或结合生物素的测定值有差异。然而,在15至16小时时,在含有过量生物素的培养基中,月经生物素的乳杆菌测定值显著下降,而酵母测定值没有变化。这表明生物素被转化为了对阿拉伯糖乳杆菌无活性的维生素异构体。生物素转化系统似乎具有酶系统的特征,即最适温度为37℃,最适pH范围较宽,为4.3至6.5,并且需要镁离子和锰离子。实验表明,增加氢离子浓度是控制该系统形成的主要生理机制。这些维生素异构体通过色谱法分离,发现其R(F)值分别为0.44和0.94,并且分别可与抗生物素蛋白结合和不结合。结合阿拉伯糖乳杆菌培养物中细胞群体的控制,讨论了生物素转化的生理作用。