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由Tris诱导的球形红假单胞菌及其他细菌磷脂组成的变化。

Alterations in the phospholipid composition of Rhodopseudomonas sphaeroides and other bacteria induced by Tris.

作者信息

Donohue T J, Cain B D, Kaplan S

出版信息

J Bacteriol. 1982 Nov;152(2):595-606. doi: 10.1128/jb.152.2.595-606.1982.

Abstract

Alterations in the phospholipid head group composition of most strains of Rhodopseudomonas sphaeroides, as well as Rhodopseudomonas capsulata and Paracoccus denitrificans, occurred when cells were grown in medium supplemented with Tris. Growth of R. sphaeroides M29-5 in Tris-supplemented medium resulted in the accumulation of N-acylphosphatidylserine (NAPS) to as much as 40% of the total whole-cell phospholipid, whereas NAPS represented approximately 28 an 33% of the total phospholipid when R. capsulata and P. denitrificans respectively, were grown in medium containing 20 mM Tris. The accumulation of NAPS occurred primarily at the expense of phosphatidylethanolamine in both whole cells and isolated membranes of R. sphaeroides and had no detectable effect on cell growth under either chemoheterotrophic or photoheterotrophic conditions. Yeast extract (0.1%) and Casamino Acids (1.0%) were found to be antagonistic to the Tris-induced (20 mM) alteration in the phospholipid composition of R. sphaeroides. The wild-type strains R. sphaeroides 2.4.1 and RS2 showed no alteration in their phospholipid composition when they were grown in medium supplemented with Tris. In all strains of Rhodospirillaceae tested, as well as in P. denitrificans, NAPS represented between 1.0 and 2.0% of the total phospholipid when cells were grown in the absence of Tris. [32P]orthophosphoric acid entered NAPS rapidly in strains of R. sphaeroides that do (strain M29-5) and do not (strain 2.4.1) accumulate this phospholipid in response to Tris. Our data indicate that the phospholipid head group composition of many Rhodospirillaceae strains, as well as P. denitrificans, is easily manipulated; thus, these bacteria may provide good model systems for studying the effects of these modifications on membrane structure and function in a relatively unperturbed physiological system.

摘要

当球形红假单胞菌、荚膜红假单胞菌和反硝化副球菌的大多数菌株在添加了Tris的培养基中生长时,其磷脂头部基团组成会发生改变。球形红假单胞菌M29 - 5在添加Tris的培养基中生长会导致N - 酰基磷脂酰丝氨酸(NAPS)积累至全细胞磷脂总量的40%,而当荚膜红假单胞菌和反硝化副球菌分别在含有20 mM Tris的培养基中生长时,NAPS分别占总磷脂的约28%和33%。NAPS的积累主要是以球形红假单胞菌全细胞和分离膜中的磷脂酰乙醇胺为代价,并且在化学异养或光异养条件下对细胞生长均无可检测到的影响。发现酵母提取物(0.1%)和酪蛋白氨基酸(1.0%)对Tris诱导的(20 mM)球形红假单胞菌磷脂组成变化具有拮抗作用。野生型菌株球形红假单胞菌2.4.1和RS2在添加Tris的培养基中生长时,其磷脂组成未发生改变。在所有测试的红螺菌科菌株以及反硝化副球菌中,当细胞在无Tris的情况下生长时,NAPS占总磷脂的1.0%至2.0%。[32P]正磷酸在能(菌株M29 - 5)和不能(菌株2.4.1)响应Tris积累这种磷脂的球形红假单胞菌菌株中迅速进入NAPS。我们的数据表明,许多红螺菌科菌株以及反硝化副球菌的磷脂头部基团组成很容易被操控;因此,这些细菌可能为在相对未受干扰的生理系统中研究这些修饰对膜结构和功能的影响提供良好的模型系统。

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