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青霉素诱导非生长状态的食菌蛭弧菌形成渗透稳定的原生质球。

Penicillin-induced formation of osmotically stable spheroplasts in nongrowing Bdellovibrio bacteriovorus.

作者信息

Thomashow M F, Rittenberg S C

出版信息

J Bacteriol. 1978 Mar;133(3):1484-91. doi: 10.1128/jb.133.3.1484-1491.1978.

Abstract

Bdellovibrio peptidoglycan is of typical gram-negative composition. The molar ratios of alanine:glutamic acid:diaminopimelic acid:muramic acid:glucosamine were about 2:1:1:1:1. Nascent, nongrowing Bdellovibrio bacteriovorus 109J were converted from highly motile vibrios to highly motile spheres when shaken in dilute buffer plus penicillin, cephalothin, bacitracin, or D-cycloserine. The spherical forms contained essentially no sedimentable peptidoglycan; i.e., they were spheroplasts. Spheroplasts induced by penicillin, D-cycloserine, and lysozyme were stable in dilute buffer and did not lyse when subjected to osmotic shock. Normal Bdellovibrio suspended in buffer turned over their peptidoglycan at a rate of approximately 30% h during the initial 120 min of starvation. Chloramphenicol and sodium azide strongly inhibited Bdellovibrio peptidoglycan turnover and the induction of spheroplasts by penicillin. The data indicate that nongrowing B. bacteriovorus are sensitive to penicillin and other antibiotics affecting cell walls because of their high rate of peptidoglycan turnover. It is also concluded that an intact peptidoglycan layer is required for maintaining cell shape, but is not required for osmotic stability of B. bacteriovorus.

摘要

蛭弧菌的肽聚糖具有典型的革兰氏阴性菌组成。丙氨酸:谷氨酸:二氨基庚二酸:胞壁酸:葡糖胺的摩尔比约为2:1:1:1:1。当在稀释缓冲液中加入青霉素、头孢菌素、杆菌肽或D-环丝氨酸振荡时,新生的、不生长的食菌蛭弧菌109J从高度运动的弧菌转变为高度运动的球体。这些球形形态基本上不含可沉降的肽聚糖;也就是说,它们是原生质球。由青霉素、D-环丝氨酸和溶菌酶诱导的原生质球在稀释缓冲液中稳定,在受到渗透压冲击时不会裂解。悬浮在缓冲液中的正常蛭弧菌在饥饿的最初120分钟内,其肽聚糖的更新率约为每小时30%。氯霉素和叠氮化钠强烈抑制蛭弧菌肽聚糖的更新以及青霉素对原生质球的诱导。数据表明,不生长的食菌蛭弧菌由于其肽聚糖的高更新率,对青霉素和其他影响细胞壁的抗生素敏感。还得出结论,完整的肽聚糖层是维持蛭弧菌细胞形状所必需的,但不是其渗透稳定性所必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6797/222189/747f38f36bad/jbacter00298-0448-a.jpg

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