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枯草芽孢杆菌溶菌突变体中的细胞壁周转

Cell wall turnover in lyt mutants of Bacillus subtilis.

作者信息

Vitkovic L

出版信息

Ann Inst Pasteur Microbiol (1985). 1985 Jan-Feb;136A(1):67-72. doi: 10.1016/s0769-2609(85)80024-7.

Abstract

One of the reported phenotypes of Bacillus subtilis strains containing the lyt mutations is a deficiency in cell wall turnover. However, it has recently been shown in our laboratory that these mutant cells can turn over their walls under certain conditions (Vitkovic et al. [2, 11] and Abstr. K3, Annu. Meet. Am. Soc. Microbiol., 1984, p. 147). I show in this paper that the long lag in wall turnover of lyt-1 (FJ3) and lyt-2 (FJ6) strains coincided with the time it took cells (which grow in long chains) to reach the end of exponential growth and to begin separating. At this time, the specific activity of N-acetylmuramyl-L-alanine amidase in the mutant strains reached the same level as in the standard strain in mid-exponential growth phase. Wall turnover was therefore probably caused by increased amidase activity. The turnover in strain lyt-15 (Nil5) was initiated by addition of NaCl and its rate reached that of the standard strain at 0.2 M NaCl. The amidase activities isolated from the lyt-15 and the standard strains varied similarly with NaCl concentration. When walls were probed with amidases and lysozyme in the presence of increasing concentrations of NaCl, the lyt-15 cell wall appeared to be very different from the walls of the standard strain or M. luteus (a standard lysozyme substrate). The results suggest that turnover deficiency in the lyt-15 strain may be due to a change in its wall resulting in a reversible resistance to turnover.

摘要

含有lyt突变的枯草芽孢杆菌菌株的一个已报道表型是细胞壁更新存在缺陷。然而,最近我们实验室的研究表明,这些突变细胞在某些条件下能够更新其细胞壁(Vitkovic等人[2, 11]以及摘要K3,美国微生物学会年会,1984年,第147页)。我在本文中表明,lyt - 1(FJ3)和lyt - 2(FJ6)菌株细胞壁更新的长时间延迟与细胞(以长链形式生长)达到指数生长末期并开始分离所需的时间一致。此时,突变菌株中N - 乙酰胞壁酰 - L - 丙氨酸酰胺酶的比活性达到了标准菌株在指数生长中期的水平。因此,细胞壁更新可能是由酰胺酶活性增加引起的。lyt - 15(Nil5)菌株的细胞壁更新是通过添加NaCl启动的,并且在0.2 M NaCl时其更新速率达到了标准菌株的水平。从lyt - 15菌株和标准菌株中分离出的酰胺酶活性随NaCl浓度的变化情况相似。当在NaCl浓度不断增加的情况下用酰胺酶和溶菌酶探测细胞壁时,lyt - 15菌株的细胞壁似乎与标准菌株或藤黄微球菌(一种标准溶菌酶底物)的细胞壁有很大不同。结果表明,lyt - 15菌株的细胞壁更新缺陷可能是由于其细胞壁发生了变化,导致对更新产生可逆性抗性。

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