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粪肠球菌突变体,对细胞生长温度敏感,且青霉素结合蛋白有改变。

Streptococcus faecium mutants that are temperature sensitive for cell growth and show alterations in penicillin-binding proteins.

作者信息

Canepari P, Lleò M M, Fontana R, Satta G

出版信息

J Bacteriol. 1987 Jun;169(6):2432-9. doi: 10.1128/jb.169.6.2432-2439.1987.

Abstract

The penicillin-binding proteins (PBPs) of 209 cell division (or growth) temperature-sensitive mutants of Streptococcus faecium were analyzed in this study. A total of nine strains showed either constitutive or temperature-sensitive conditional damage in the PBPs. Analysis of these nine strains yielded the following results: one carried a PBP 1 constitutively showing a lower molecular weight; one constitutively lacked PBP 2; two lacked PBP 3 at 42 degrees C, but not at 30 degrees C; one was normal at 30 degrees C but at 42 degrees C lacked PBP 3 and overproduced PBP 5; two were normal at 42 degrees C and lacked PBP 5 at 30 degrees C; one constitutively lacked PBP 5; and one carried a PBP 6 constitutively split in two bands. The mutant lacking PBP 3 and overproducing PBP 5 continued to grow at 42 degrees C for 150 min and then lysed. Revertants selected for growth capability at 42 degrees C from the mutants altered in PBPs 5 and 6 maintained the same PBP alterations, while those isolated from the strains with altered PBP 1 or lacking PBP 2 or PBP 3 showed a normal PBP pattern. Penicillin-resistant derivatives were isolated at 30 degrees C from the mutants lacking PBP 2 and from that lacking PBP 3. All these derivatives continued to show the same PBP damage as the parents, but overproduced PBP 5 and grew at 42 degrees C. These findings indicate that high-molecular-weight, but not low-molecular-weight, PBPs are essential for cell growth in S. faecium. This is in complete agreement with previous findings obtained with a different experimental system. On the basis of both previous and present data it is suggested that PBPs 1, 2, and 3 appear necessary for cell growth at optimal temperature (and at maximal rate), but not for cell growth at a submaximal one (or at a reduced rate), and an overproduced PBP 5 is capable of taking over the function of PBPs 1, 2, and 3.

摘要

本研究分析了209株粪肠球菌细胞分裂(或生长)温度敏感突变体的青霉素结合蛋白(PBPs)。共有9株菌的PBPs表现出组成型或温度敏感型条件性损伤。对这9株菌的分析得出以下结果:1株组成型携带分子量较低的PBP 1;1株组成型缺乏PBP 2;2株在42℃时缺乏PBP 3,但在30℃时不缺乏;1株在30℃时正常,但在42℃时缺乏PBP 3并过量产生PBP 5;2株在42℃时正常,在30℃时缺乏PBP 5;1株组成型缺乏PBP 5;1株组成型携带的PBP 6分裂为两条带。缺乏PBP 3并过量产生PBP 5的突变体在42℃下继续生长150分钟,然后裂解。从PBP 5和PBP 6发生改变的突变体中筛选出在42℃具有生长能力的回复体,其PBP改变情况保持不变,而从PBP 1发生改变或缺乏PBP 2或PBP 3的菌株中分离出的回复体则表现出正常的PBP模式。在30℃下从缺乏PBP 2和缺乏PBP 3的突变体中分离出了耐青霉素衍生物。所有这些衍生物继续表现出与亲本相同的PBP损伤,但过量产生PBP 5并在42℃下生长。这些发现表明,高分子量而非低分子量的PBPs对粪肠球菌的细胞生长至关重要。这与先前在不同实验系统中获得的结果完全一致。基于先前和目前的数据,提示PBP 1、PBP 2和PBP 3似乎是细胞在最适温度(和最大速率)下生长所必需的,但不是细胞在次最大温度(或降低速率)下生长所必需的,过量产生的PBP 5能够替代PBP 1、PBP 2和PBP 3的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0635/212084/ed31895cdceb/jbacter00196-0122-a.jpg

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