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巨大芽孢杆菌细胞内蛋白水解活性与蛋白质周转之间的关系。

Relationships between intracellular proteolytic activity and protein turnover in Bacillus megaterium.

作者信息

Chaloupka J, Philippová L, Cechová J, Strnadová M

出版信息

Acta Biol Med Ger. 1977;36(11-12):1515-22.

PMID:99935
Abstract

When incubated in a sporulation medium, the sporogenous strains of Bacillus megaterium degrade proteins at a rate of 4-10% X h-1. The maximal rate of protein turnover is reached after 3-4 hrs at the time of development of forespores and then decreases again. The rate of protein turnover in the asporogenous strain decreases steadily under similar conditions from 3-8% X h-1 at the beginning of incubation to 1% X h-1 after 5-6 hrs in the sporulation medium. The rate of degradation of proteins in vitro in protoplast lysates is similar or higher than the rate of protein turnover. The exocellular, as well as periplasmic proteolytic activity, is suppressed by amino acids more severely than the activity in protoplasts. Mutants devoid of the exocellular proteolytic enzyme contain also less proteolytic activity in the periplasm than in the protoplasts, in contrast to the wild strain. However, their rate of protein turnover, as well as the degradation of abnormal proteins is similar to that in the wild strain. This supports a view that the proteolytic system in protoplasts is involved in intracellular protein catabolism. The periplasmic enzyme can be considered as a kind of the exocellular proteinase.

摘要

在芽孢形成培养基中培养时,巨大芽孢杆菌的产孢菌株以4 - 10%×h⁻¹的速率降解蛋白质。在芽孢前体发育时,3 - 4小时后达到最大蛋白质周转速率,随后又下降。在类似条件下,不产孢菌株的蛋白质周转速率在芽孢形成培养基中从培养开始时的3 - 8%×h⁻¹稳步下降至5 - 6小时后的1%×h⁻¹。原生质体裂解物中蛋白质的体外降解速率与蛋白质周转速率相似或更高。氨基酸对胞外以及周质蛋白水解活性的抑制比对原生质体中活性的抑制更严重。与野生菌株相比,缺乏胞外蛋白水解酶的突变体在周质中的蛋白水解活性也比在原生质体中的低。然而,它们的蛋白质周转速率以及异常蛋白质的降解与野生菌株相似。这支持了一种观点,即原生质体中的蛋白水解系统参与细胞内蛋白质分解代谢。周质酶可被视为一种胞外蛋白酶。

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