Jacques P, Ongena M, Gwose I, Seinsche D, Schröder H, Delfosse P, Thonart P, Taraz K, Budzikiewicz H
Institut für Organische Chemie der Universität, Köln, Bundesrepublik Deutschland.
Z Naturforsch C J Biosci. 1995 Sep-Oct;50(9-10):622-9. doi: 10.1515/znc-1995-9-1005.
Pyoverdin type siderophores produced by six fluorescent Pseudomonas strains isolated from different rhizospheres were purified and characterized. The purified ferri-pyoverdins were tested for their ability to promote the growth of other strains grown under iron deficiency conditions. Only the one obtained from Pseudomonas putida BTP1 did not act as a growth promoter. The structure of the BTP1 siderophore was elucidated by spectroscopic methods and degradation studies. It turned out that it contains a chromophore which differs from the one typical for pyoverdins insofar as it carries the carboxyl group in 3- rather than in 1-position ((3S)-5-amino-1,2-dihydro-8,9-dihydroxy-3H-pyrimido[1,2a]quinoline-3- carboxylic acid). The amino group of the chromophore is substituted with the 5-carboxyl group of L-glutamic acid and its carboxyl group with the N-terminus of the peptide L-Asp-L-Ala-L-Asp-D-N5-Ac-N5-OH-Orn-L-Ser-L-c-N5-OH-Orn. This isopyoverdin fits into the biogenetic scheme which postulates ferribactins as the precursors of pyoverdins.
对从不同根际分离出的6株荧光假单胞菌菌株产生的绿脓菌素型铁载体进行了纯化和表征。对纯化后的铁绿脓菌素促进缺铁条件下其他菌株生长的能力进行了测试。只有从恶臭假单胞菌BTP1获得的铁载体没有起到生长促进剂的作用。通过光谱方法和降解研究阐明了BTP1铁载体的结构。结果表明,它含有一种发色团,与绿脓菌素典型的发色团不同,因为它的羧基位于3位而非1位((3S)-5-氨基-1,2-二氢-8,9-二羟基-3H-嘧啶并[1,2a]喹啉-3-羧酸)。发色团的氨基被L-谷氨酸的5-羧基取代,其羧基被肽L-Asp-L-Ala-L-Asp-D-N5-Ac-N5-OH-Orn-L-Ser-L-c-N5-OH-Orn的N端取代。这种异绿脓菌素符合将铁菌素假定为绿脓菌素前体的生物合成方案。