芽孢杆菌属的胞外酶合成。

F. Priest
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引用次数: 745

摘要

随着十年的进展,这一预测正在迅速实现,微生物酶在医药、酿造和木材保存等不同领域变得越来越重要。芽孢杆菌属在这一发展中发挥了重要作用,这一点在1976年第五届国际发酵研讨会上发表的论文中得到了证明。会议上有23篇论文专门讨论了“具有工业意义的微生物酶”,其中不下10篇是关于杆菌酶的。这些细菌在这一研究领域占据优势的原因有几个。首先,它们由一组易于维持和培养的化学有机营养物组成,但在性质上具有明显的异质性。除了嗜碱、嗜中性和嗜酸的物种外,还有嗜冷、嗜中、嗜热的物种。此外,Bergey's Manual of determinative Bacteriology(92)中列出的几乎所有48种属都分泌多种可溶性细胞外酶,这反映了亲本栖息地的多样性。淀粉酶可以在11000(194)的压力下液化淀粉,蛋白酶在pH值12.0(6)下保持稳定和活性,这是酶适应的极端例子。本文将对近年来有关杆菌合成的外泌酶的性质及调控机制的研究进展进行综述。它被限制在这个属,因为胞外酶的商业重要性和学术界对孢子形成过程的兴趣促使了对这个一般领域的大量研究。尽管如此,在最后一节中,我试图将我们目前对原核生物中外酶合成的了解等同于
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Extracellular enzyme synthesis in the genus Bacillus.
As the decade progresses this prediction is rapidly being realized, and microbial enzymes are becoming increasingly important in such diverse fields as medicine, brewing, and timber preservation. The genus Bacillus has played a major role in this development as evidenced by the distribution of the papers read at the Fifth International Fermentation Symposium, 1976 (64). Of 23 papers in the session devoted to "Microbial Enzymes of Industrial Interest" no less than ten were concerned with enzymes from bacilli. Reasons for the predominance of these bacteria in this area of study are several. First, they comprise a group of chemoorganotrophs that can be easily maintained and cultivated and yet are markedly heterogeneous in character. Psychrophiles, mesophiles, and thermophiles, in addition to alkalophilic, neutrophilic, and acidophilic species are well represented. Furthermore, virtually all 48 species of the genus listed in Bergey's Manual ofDeterminative Bacteriology (92) secrete a variety of soluble extracellular enzymes, which reflects the diversity of the parental habitats. Amylases that can liquefy starch under pressure at 11000 (194) and proteases that are stable and active at pH 12.0 (6) are extreme examples of enzyme adaption. This article will attempt to review the recent literature concerned with the characterization and properties of the exoenzymes synthesized by the bacilli and the control and mechanisms of their synthesis. It is restricted to this genus because the commercial importance of extracellular enzymes and academic interest in the process of sporulation have prompted a considerable amount of research into this general area. Nevertheless, in the final section I have attempted to equate our present knowledge of exoenzyme synthesis in procaryotes other than
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