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马克斯克鲁维酵母中的小菌落突变导致胰岛素同化和β-果糖苷酶活性受损。

Impairment of insulin assimilation and beta-fructosidase activity due to a petite mutation in Kluyveromyces marxianus.

作者信息

Guiraud J P, Mouillet D, Bourgi J, Claisse M, Galzy P

机构信息

Laboratoire de Génétique et Microbiologie INRA-ENSAM, Montpellier, France.

出版信息

Antonie Van Leeuwenhoek. 1988;54(2):127-38. doi: 10.1007/BF00419200.

Abstract

A respiratory deficient mutant of Kluyveromyces fragilis was isolated using ethidium bromide mutagenesis. It was characterized by a loss of cytochromes a + a3 and deficiency in cytochrome b. This petite mutant has brought about modifications in the excretion pattern of beta-fructosidase active on saccharose and inulin. The mutant practically no longer excretes the enzyme, and is incapable of growth and fermentation in the presence of inulin. The study of the activities of different enzyme extracts (culture medium, whole and disrupted cells) on inulin and saccharose suggests the existence of an unique enzyme system capable of taking several forms, and also shows the influence of the growth substrate on the I/S activity ratio.

摘要

利用溴化乙锭诱变技术分离出了脆壁克鲁维酵母的呼吸缺陷型突变体。其特征是细胞色素a + a3缺失以及细胞色素b缺乏。这种小菌落突变体导致了对蔗糖和菊粉有活性的β-果糖苷酶排泄模式的改变。该突变体几乎不再排泄这种酶,并且在菊粉存在的情况下无法生长和发酵。对不同酶提取物(培养基、完整细胞和破碎细胞)对菊粉和蔗糖的活性研究表明,存在一种能够呈现多种形式的独特酶系统,同时也显示了生长底物对I/S活性比的影响。

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