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嗜热链球菌的自溶表型是由一个渗漏性原噬菌体导致的。

The Streptococcus thermophilus autolytic phenotype results from a leaky prophage.

作者信息

Husson-Kao C, Mengaud J, Cesselin B, van Sinderen D, Benbadis L, Chapot-Chartier M P

机构信息

Unité de Biochimie et Structure des Protéines, INRA, 78352 Jouy-en-Josas, France.

出版信息

Appl Environ Microbiol. 2000 Feb;66(2):558-65. doi: 10.1128/AEM.66.2.558-565.2000.

Abstract

Streptococcus thermophilus autolytic strains are characterized by a typical bell-shaped growth curve when grown under appropriate conditions. The cellular mechanisms involved in the triggering of lysis and the bacteriolytic activities of these strains were investigated in this study. Lactose depletion and organic solvents (ethanol, methanol, and chloroform) were shown to trigger a premature and immediate lysis of M17 exponentially growing cells. These factors and compounds are suspected to act by altering the cell envelope properties, causing either the permeabilization (organic solvents) or the depolarization (lactose depletion) of the cytoplasmic membrane. The autolytic character was shown to be associated with lysogeny. Phage particles, most of which were defective, were observed in the culture supernatants after both mitomycin C-induced and spontaneous lysis. By renaturing sodium dodecyl sulfate-polyacrylamide gel electrophoresis, a bacteriolytic activity was detected at 31 kDa exclusively in the autolytic strains. This enzyme was detected during both growth and spontaneous lysis with the same intensity. We have shown that it was prophage encoded and homologous to the endolysin Lyt51 of the streptococcal temperate bacteriophage phi01205 (M. Sheehan, E. Stanley, G. F. Fitzgerald, and D. van Sinderen, Appl. Environ. Microbiol. 65:569-577, 1999). It appears from our results that the autolytic properties are conferred to the S. thermophilus strains by a leaky prophage but do not result from massive prophage induction. More specifically, we propose that phagic genes are constitutively expressed in almost all the cells at a low and nonlethal level and that lysis is controlled and achieved by the prophage-encoded lysis proteins.

摘要

嗜热链球菌自溶菌株在适宜条件下生长时具有典型的钟形生长曲线。本研究对这些菌株中触发裂解的细胞机制及其溶菌活性进行了研究。结果表明,乳糖耗尽以及有机溶剂(乙醇、甲醇和氯仿)会引发处于指数生长期的M17细胞过早且立即发生裂解。怀疑这些因素和化合物通过改变细胞壁特性发挥作用,导致细胞质膜通透性增加(有机溶剂)或去极化(乳糖耗尽)。结果显示自溶特性与溶原性有关。在丝裂霉素C诱导的裂解和自发裂解后的培养上清液中均观察到噬菌体颗粒,其中大多数是有缺陷的。通过十二烷基硫酸钠 - 聚丙烯酰胺凝胶电泳复性,仅在自溶菌株中检测到一种31 kDa的溶菌活性。在生长和自发裂解过程中均以相同强度检测到这种酶。我们已经证明它是由前噬菌体编码的,并且与链球菌温和噬菌体phi01205的内溶素Lyt51同源(M. Sheehan、E. Stanley、G. F. Fitzgerald和D. van Sinderen,《应用与环境微生物学》65:569 - 577,1999年)。从我们的结果来看,自溶特性是由渗漏性前噬菌体赋予嗜热链球菌菌株的,而非大量前噬菌体诱导所致。更具体地说,我们提出噬菌体基因在几乎所有细胞中以低水平且非致死水平组成型表达,并且裂解是由前噬菌体编码的裂解蛋白控制并实现的。

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