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蜡样芽孢杆菌胞外蛋白酶产生的调控

Regulation of extracellular protease production in Bacillus cereus.

作者信息

Levisohn S, Aronson A I

出版信息

J Bacteriol. 1967 Mar;93(3):1023-30. doi: 10.1128/jb.93.3.1023-1030.1967.

Abstract

Both sporulation and protease production can be inhibited by growing Bacillus cereus T in a medium containing a high concentration of a mixture of amino acids. Mutants selected for the ability to sporulate in this inhibitory medium were found to produce high levels of protease in the normal and inhibitory media. Comparison of the mutant and wild-type enzymes by gel electrophoresis and heat inactivation suggested that they were identical. One of the mutants proved to be a purine-requiring auxotroph. Reversion to prototrophy resulted in the loss of the capacity to sporulate in the inhibitory medium and loss of the ability to produce large amounts of protease. Mutants capable of producing high levels of protease and of sporulating in the inhibitory medium were also found when selecting for a purine, pyrimidine, or lysine requirement or for the capacity to sporulate in the presence of a high concentration of glucose. Protease production could be considerably delayed in the purine auxotrophs or completely inhibited in the pyrimidine auxotrophs by growing the cells in a medium containing the inhibitory mixture of amino acids plus hypoxanthine for the former or a pyrimidine for the latter. The fact that a variety of metabolic alterations could lead to excessive protease production suggested that a common catabolic or biosynthetic intermediate was involved in the control of the production of this enzyme(s).

摘要

在含有高浓度氨基酸混合物的培养基中培养蜡样芽孢杆菌T,可抑制其芽孢形成和蛋白酶产生。在这种抑制性培养基中筛选出的能够形成芽孢的突变体,在正常培养基和抑制性培养基中均能产生高水平的蛋白酶。通过凝胶电泳和热失活对突变体和野生型酶进行比较,结果表明它们是相同的。其中一个突变体被证明是需要嘌呤的营养缺陷型。回复到原养型导致其在抑制性培养基中形成芽孢的能力丧失,以及产生大量蛋白酶的能力丧失。在筛选需要嘌呤、嘧啶或赖氨酸的营养缺陷型,或在高浓度葡萄糖存在下形成芽孢的能力时,也发现了能够在抑制性培养基中产生高水平蛋白酶并形成芽孢的突变体。通过在含有氨基酸抑制混合物加次黄嘌呤(前者)或嘧啶(后者)的培养基中培养细胞,嘌呤营养缺陷型的蛋白酶产生可能会显著延迟,嘧啶营养缺陷型的蛋白酶产生可能会完全被抑制。多种代谢改变可导致过量蛋白酶产生,这一事实表明,一种共同的分解代谢或生物合成中间体参与了这种酶产生的控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac59/276550/6db51413e7f8/jbacter00409-0292-a.jpg

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