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首页> 外文期刊>Biochemistry >Bacterial iron transport: H-1 NMR determination of the three-dimensional structure of the gallium complex of pyoverdin G4R, the peptidic siderophore of Pseudomonas putida G4R
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Bacterial iron transport: H-1 NMR determination of the three-dimensional structure of the gallium complex of pyoverdin G4R, the peptidic siderophore of Pseudomonas putida G4R

机译:细菌铁运输:恶臭假单胞菌G4R的肽铁载体pyoverdin G4R镓络合物的三维结构的H-1 NMR测定

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Among the fluorescent Pseudomonas species, Pseudomonas putida is a rare case of a nitrogen-fixing bacterium that transforms nitrogen into ammonia. When grown under iron-deficient conditions, it produces two major pyoverdins: pyoverdin G4R and pyoverdin G4RA. Their primary structures have been established using FAB-MS and one- and two-dimensional N-15, C-13, and H-1 NMR on both the unlabeled and N-15-labeled compounds [Salah El Din, A. L,. M., et al. (1997) Tetrahedron 53, 12539-12552]. The two pyoverdins have a common chromophore derived from 2,3-diamino-6,7-dihydroxyquinoline. The chromophore is bound to the linear heptapeptide L-Asp-L-Orn-D-beta-threo-OHAsp-L-Dab-Gly-L-Ser-L-cyclo-OHOrn. Circular dichroism spectra suggest that the absolute configuration of the metal complex is Delta. The three-dimensional structure in solution of pyoverdin G4R-Ga(III) was determined after interpretation of two-dimensional H-1 NMR spectra recorded at 283 and 303 K. The complex is tightly defined with a compact structure with a Delta absolute configuration. The site of complexation of the metal ion is found to be located on the surface of the molecule, showing that the ion can be released without large conformational changes, while the polar groups of the peptide chain, which may be responsible for the recognition of the receptor, are placed on the opposite side of the overall shape. The three-dimensional structure of pyoverdin G4R-Ga(III) is compared with those of other pyoverdins, and the role of the structure in iron uptake is discussed. [References: 46]
机译:在荧光假单胞菌种中,恶臭假单胞菌是将氮转化为氨的固氮细菌的罕见情况。在缺铁条件下生长时,会产生两种主要的pyoverdin:pyoverdin G4R和pyoverdin G4RA。使用FAB-MS以及一维和二维N-15,C-13和H-1 NMR对未标记和N-15标记的化合物[Salah El Din,A. L, 。 M.等。 (1997)Tetrahedron 53,12539-12552]。两种pyoverdins具有共同的发色团,衍生自2,3-二氨基-6,7-二羟基喹啉。发色团与线性七肽L-Asp-L-Orn-D-β-苏-OHAsp-L-Dab-Gly-L-Ser-L-环-OHOrn结合。圆二色性光谱表明,金属络合物的绝对构型为Δ。 pyoverdin G4R-Ga(III)溶液中的三维结构是在解释了在283和303 K处记录的二维H-1 NMR光谱后确定的。络合物由具有Delta绝对构型的紧凑结构严格限定。发现金属离子的络合位点位于分子的表面,表明该离子可以释放而没有大的构象变化,而肽链的极性基团可以负责识别接收器,放置在整体形状的另一侧。比较了pyoverdin G4R-Ga(III)的三维结构与其他pyoverdins的三维结构,并讨论了该结构在铁吸收中的作用。 [参考:46]

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