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环糊精对产兰卡杀菌素链霉菌的刺激作用机制

Mechanism of the stimulatory effect of cyclodextrins on lankacidin-producing Streptomyces.

作者信息

Sawada H, Suzuki T, Akiyama S, Nakao Y

机构信息

Microbiology Research Laboratories, Takeda Chemical Industries, Ltd., Osaka, Japan.

出版信息

Appl Microbiol Biotechnol. 1990 Feb;32(5):556-9. doi: 10.1007/BF00173727.

Abstract

Gel-filtration analysis of a mixture of cyclodextrin (CyD) and lankacidin C showed that beta-CyD had strong, gamma-CyD weak and alpha-CyD no affinity for lankacidin C. Lankacidin C production activity, which was assayed by measuring the incorporation of L-[methyl-14C-]methionine into the lankacidin molecule, was the greatest with cells grown in the presence of beta-CyD, less with gamma-CyD and the least with alpha-CyD. Lankamycin and T-2636M, which are by-products in lankacidin C fermentation, were not included by beta-CyD and their production was not stimulated by beta-CyD. It was apparent that the stimulatory effect of CyD was closely related to the formation of an inclusion complex between CyD and the antibiotic. Lankacidin C biosynthesis was repressed by preincubating cells with lankacidin C, while the repressive effect of lankacidin C was abrogated by the inclusion by beta-CyD. Thus, abrogation of feed-back repression seems to be a main mechanism of the effect of CyD. However, alpha-CyD, which had no affinity for lankacidin C, stimulated the production to the least extent and exhibited a complementary effect on the stimulation by beta-CyD or gamma-CyD, alpha-CyD also caused a change in cell morphology and cell-surface hydrophobicity. It was assumed that the modification of the cell surface is a secondary mechanism of the effect of CyD.

摘要

对环糊精(CyD)和兰卡杀菌素C的混合物进行凝胶过滤分析表明,β - 环糊精对兰卡杀菌素C具有强亲和力,γ - 环糊精具有弱亲和力,而α - 环糊精对兰卡杀菌素C没有亲和力。通过测量L - [甲基 - 14C - ]甲硫氨酸掺入兰卡杀菌素分子中来测定的兰卡杀菌素C生产活性,在β - 环糊精存在下生长的细胞中最高,在γ - 环糊精存在下生长的细胞中较低,在α - 环糊精存在下生长的细胞中最低。兰卡杀菌素C发酵中的副产物兰卡霉素和T - 2636M不被β - 环糊精包合,其产生也不受β - 环糊精刺激。显然,环糊精的刺激作用与环糊精和抗生素之间形成包合物密切相关。用兰卡杀菌素C预孵育细胞会抑制兰卡杀菌素C的生物合成,而β - 环糊精的包合作用可消除兰卡杀菌素C的抑制作用。因此,消除反馈抑制似乎是环糊精作用的主要机制。然而,对兰卡杀菌素C没有亲和力的α - 环糊精刺激作用最小,并且对β - 环糊精或γ - 环糊精的刺激表现出互补作用,α - 环糊精还会引起细胞形态和细胞表面疏水性的变化。据推测,细胞表面的修饰是环糊精作用的次要机制。

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