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豌豆根瘤菌蚕豆生物变种产生一种新型环状三羟基肟酸盐类铁载体,蚕豆根瘤菌素。

Rhizobium leguminosarum bv. viciae produces a novel cyclic trihydroxamate siderophore, vicibactin.

作者信息

Dilworth Michael J, Carson Kerry C, Giles Robin G F, Byrne Lindsay T, Glenn Andrew R

机构信息

Centre for Rhizobium Studies, School of Biological Sciences & Biotechnology, Division of Science, Murdoch University, Murdoch, Western Australia 6150.

Chemistry Department, School of Mathematical & Physical Sciences, Division of Science, Murdoch University, Murdoch, Western Australia 6150.

出版信息

Microbiology (Reading). 1998 Mar;144(3):781-791. doi: 10.1099/00221287-144-3-781.

Abstract

Trihydroxamate siderophores were isolated from iron-deficient cultures of three strains of biovar , two from Japan (WSM709, WSM710) and one from the Mediterranean (WU235), and from a Tn5-induced mutant of WSM710 (MNF7101). The first three all produced the same compound (vicibactin), which was uncharged and could be purified by solvent extraction into benzyl alcohol. The gallium and ferric complexes of vicibactin were extractable into benzyl alcohol at pH 5.0, while metal-free vicibactin could be extracted with good yield at pH 8.0. The trihydroxamate from MNF7101 (vicibactin 7101) could not be extracted into benzyl alcohol, but its cationic nature permitted purification by chromatography on Sephadex CM-25 (NH form). Relative molecular masses and empirical formulae were obtained from fast-atom-bombardment MS. The structures were derived from one- and two-dimensional H and C NMR spectroscopy, using DQF-COSY, NOESY, HMQC and HMBC techniques on the compounds dissolved in methanol- and DMSO- . Vicibactin proves to be a cyclic molecule containing three residues each of ()-2,5-diamino- -acetyl- -hydroxypentanoic acid ( -acetyl- -hydroxy-D-ornithine) and ()-3-hydroxybutanoic acid, arranged alternately, with alternating ester and peptide bonds. Vicibactin 7101 differed only in lacking the acetyl substitution on the N of the -hydroxyornithine, resulting in net positive charge; it was still functional as a siderophore and promoted Fe uptake by iron-starved cells of WSM710 in the presence of an excess of phosphate. The rate of vicibactin biosynthesis by iron-deficient cells of WSM710 was essentially constant between pH 5.5 and 7.0, but much decreased at pH 5.0. When iron-starved cultures were supplemented with potential precursors for vicibactin, the rates of its synthesis were consistent with both β-hydroxybutyrate and ornithine being precursors. At least three genes seem likely to be involved in synthesis of vicibactin from ornithine and β-hydroxybutyrate: a hydroxylase adding the -OH group to the N of ornithine, an acetylase adding the acetyl group to the N of ornithine, and a peptide synthetase system.

摘要

从生物变种的三株菌株缺铁培养物中分离出三羟基肟酸型铁载体,其中两株来自日本(WSM709、WSM710),一株来自地中海地区(WU235),还从WSM710的一个Tn5诱导突变体(MNF7101)中分离得到。前三株菌株都产生了相同的化合物(蚕豆素),该化合物呈电中性,可通过溶剂萃取至苯甲醇中进行纯化。蚕豆素的镓和铁配合物在pH 5.0时可萃取至苯甲醇中,而无金属的蚕豆素在pH 8.0时能以较高产率被萃取。MNF7101产生的三羟基肟酸型铁载体(蚕豆素7101)无法萃取至苯甲醇中,但其阳离子性质使其可通过在Sephadex CM - 25(铵型)上进行色谱分离来纯化。通过快原子轰击质谱获得了相对分子质量和经验式。利用溶解于甲醇 - 和二甲基亚砜 - 中的化合物,采用DQF - COSY、NOESY、HMQC和HMBC技术,通过一维和二维氢谱及碳谱确定了结构。蚕豆素被证明是一种环状分子,含有三个()-2,5 - 二氨基 - - 乙酰基 - - 羟基戊酸(- 乙酰基 - - 羟基 - D - 鸟氨酸)残基和三个()-3 - 羟基丁酸残基,它们交替排列,酯键和肽键也交替出现。蚕豆素7101的不同之处仅在于 - 羟基鸟氨酸的N上缺少乙酰基取代,从而带有净正电荷;它作为铁载体仍具有功能,并且在磷酸盐过量存在时能促进WSM710缺铁细胞对铁的摄取。WSM710缺铁细胞合成蚕豆素的速率在pH 5.5至7.0之间基本恒定,但在pH 5.0时大幅下降。当给缺铁培养物添加蚕豆素的潜在前体时,其合成速率表明β - 羟基丁酸和鸟氨酸都是前体。从鸟氨酸和β - 羟基丁酸合成蚕豆素似乎至少涉及三个基因:一个将 - OH基团添加到鸟氨酸N上的羟化酶、一个将乙酰基添加到鸟氨酸N上的乙酰化酶以及一个肽合成酶系统。

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