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来自植物有害荧光假单胞菌A225和恶臭假单胞菌ATCC 39167的新型铁载体的结构与特征

Structures and characteristics of novel siderophores from plant deleterious Pseudomonas fluorescens A225 and Pseudomonas putida ATCC 39167.

作者信息

Khalil-Rizvi S, Toth S I, van der Helm D, Vidavsky I, Gross M L

机构信息

Department of Chemistry and Biochemistry, University of Oklahoma, Norman 73019, USA.

出版信息

Biochemistry. 1997 Apr 8;36(14):4163-71. doi: 10.1021/bi962670g.

Abstract

When Pseudomonas putida ATCC 39167 and plant-deleterious Pseudomonas fluorescens A225 were grown in an iron-deficient culture medium, they each produced two different novel yellow-green fluorescent pseudobactins: P39167-I, II and PA225-I, II. Pseudobactin P39167-I has a molecular formula of C46H65O23N13 and is monoanionic at neutral pH. P39167-II has the molecular formula of C46H63O22N13 and no charge at neutral pH. Pseudobactin PA225-I has a molecular formula of C46H65O24N13 and is monoanionic at neutral pH whereas pseudobactin PA225-II has the molecular formula of C46H63O23N13 and no charge at neutral pH. All four of the pseudobactins contain a dihydroxyquinoline-based chromophore. The amino acid sequence for the octapeptide in case of pseudobactins from P. putida ATCC 39167 is Chr-Ser(1)-Ala(1)-AcOHOrn-Gly-Ala(2)-OHAsp-Ser(2)-Thr. In case of pseudobactins from P. fluorescens A225, the octapeptide has the sequence Chr-Ser(1)-Ala-AcOHOrn-Gly-Ser(2)-OHAsp-Ser(3)-Thr. For all four pseudobactins (P39167-I, II and PA225-I, II), the serine(1) residue of the octapeptide is attached to the carboxylic acid group on the C-11 of the fluorescent quinoline via an amide bond. Additionally, for pseudobactin P39167-II and PA225-II, the hydroxyl group of the serine(1) residue is also attached to the carboxyl group of threonine residue at the carboxy terminus of the peptide via an ester bond, resulting in a cyclic depsipeptide in contrast to the linear peptide chain of P39167-I and PA225-I. For all four pseudobactins, a malamide group is attached to the C-3 of the quinoline derived chromophore. The three bidentate iron(III) chelating groups in all four pseudobactins consist of a 1,2-dihydroxy aromatic group of the fluorescent chromophore, a hydroxy acid group of beta-hydroxy aspartic acid, and a hydroxamate group from the acylated Ndelta-hydroxyornithine. The amino acid constituents of the pseudobactins P39167 I, II are the same as those in pseudobactin A214, whereas those in A225 I, II are the same as in 7SR1, but in both cases the sequences are different. The uptake results indicate a single outer membrane receptor protein for ferric-pseudobactins in both organisms. The receptor proteins in the two species are similar but not identical.

摘要

当恶臭假单胞菌ATCC 39167和对植物有害的荧光假单胞菌A225在缺铁培养基中生长时,它们各自产生了两种不同的新型黄绿色荧光假铁载体:P39167-I、II和PA225-I、II。假铁载体P39167-I的分子式为C46H65O23N13,在中性pH下为单阴离子。P39167-II的分子式为C46H63O22N13,在中性pH下不带电荷。假铁载体PA225-I的分子式为C46H65O24N13,在中性pH下为单阴离子,而假铁载体PA225-II的分子式为C46H63O23N13,在中性pH下不带电荷。所有四种假铁载体都含有一个基于二羟基喹啉的发色团。恶臭假单胞菌ATCC 39167产生的假铁载体中八肽的氨基酸序列为Chr-Ser(1)-Ala(1)-AcOHOrn-Gly-Ala(2)-OHAsp-Ser(2)-Thr。荧光假单胞菌A225产生的假铁载体中,八肽的序列为Chr-Ser(1)-Ala-AcOHOrn-Gly-Ser(2)-OHAsp-Ser(3)-Thr。对于所有四种假铁载体(P39167-I、II和PA225-I、II),八肽的丝氨酸(1)残基通过酰胺键与荧光喹啉C-11上的羧酸基团相连。此外,对于假铁载体P39167-II和PA225-II,丝氨酸(1)残基的羟基还通过酯键与肽羧基末端苏氨酸残基的羧基相连,与P39167-I和PA225-I的线性肽链不同,形成了一个环缩肽。对于所有四种假铁载体,一个丙二酰胺基团连接在喹啉衍生发色团的C-3上。所有四种假铁载体中的三个双齿铁(III)螯合基团由荧光发色团的1,2-二羟基芳基、β-羟基天冬氨酸的羟基酸基团和酰化Nδ-羟基鸟氨酸的异羟肟酸基团组成。假铁载体P39167 I、II的氨基酸组成与假铁载体A214中的相同,而A225 I、II中的氨基酸组成与7SR1中的相同,但在这两种情况下序列不同。摄取结果表明,两种生物体中都有一个单一的外膜受体蛋白用于铁假铁载体。这两个物种中的受体蛋白相似但不相同。

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