首页> 美国卫生研究院文献>Biochemical Journal >Characterization of iron-binding motifs in Candida albicans high-affinity iron permease CaFtr1p by site-directed mutagenesis.
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Characterization of iron-binding motifs in Candida albicans high-affinity iron permease CaFtr1p by site-directed mutagenesis.

机译:通过定点诱变表征白色念珠菌高亲和力铁渗透酶CaFtr1p中的铁结合基序。

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摘要

A peptide motif Glu-Xaa-Xaa-Glu has been implicated in direct binding of ferric iron in several proteins involved in iron transport, sensing or storage. However, it is not known whether the motif alone is sufficient for iron binding and whether functional replacement of the conserved residues by other amino acids with similar properties is possible. We previously identified a Candida albicans iron permease, CaFtr1p, which contains five Glu-Xaa-Xaa-Glu motifs [Ramanan and Wang (2000) Science 288, 1062-1065]. In this study, we investigated the role of each of these motifs in iron uptake by site-directed mutagenesis. Substitution of Ala for any one of the two Glu residues in Glu-Gly-Leu-Glu(158-161) abolished iron-uptake activity, while the same substitution in any of the other four motifs had little effect, indicating that only the motif at position 158-161 is required for iron transport. We then evaluated the importance of each of the residues within and immediately adjacent to this motif in iron uptake. The permease remained active when any one of the Glu residues was replaced by Asp, while it became inactive when both were replaced. We also found that the amino acid immediately in front of Glu-Gly-Leu-Glu(158-161) must be either Arg or Lys. In addition, substitution of any of the two residues in the middle with several structurally distinct amino acids had no detectable effect on iron uptake. Here we propose to extend the iron-binding motif to Arg/Lys-Glu/Asp-Xaa-Xaa-Glu or Arg/Lys-Glu-Xaa-Xaa-Glu/Asp, which may serve as a guide for the identification of potential iron-binding sites in proteins.
机译:肽基序Glu-Xaa-Xaa-Glu与三价铁直接结合在涉及铁运输,感测或存储的几种蛋白质中有关。然而,尚不清楚单独的基序是否足以与铁结合,以及是否有可能用具有相似性质的其他氨基酸功能取代保守残基。我们之前确定了白色念珠菌铁渗透酶CaFtr1p,其中包含五个Glu-Xaa-Xaa-Glu主题[Ramanan and Wang(2000)Science 288,1062-1065]。在这项研究中,我们调查了这些基序在定点诱变中铁吸收中的作用。用Ala取代Glu-Gly-Leu-Glu(158-161)中两个Glu残基中的任何一个都消除了铁吸收活性,而在其他四个基序中的任何一个的相同取代几乎没有影响,表明仅该基序铁运输需要在位置158-161处进行。然后,我们评估了在铁吸收中该基序内和紧邻该基序的每个残基的重要性。当任何一个Glu残基被Asp取代时,通透酶保持活性,而当两个Glu残基都被取代时,通透酶变得无活性。我们还发现,紧邻Glu-Gly-Leu-Glu(158-161)前面的氨基酸必须是Arg或Lys。另外,用两个结构上不同的氨基酸取代中间的两个残基中的任何一个对铁的摄取没有可检测的影响。在这里,我们建议将铁结合基序扩展到Arg / Lys-Glu / Asp-Xaa-Xaa-Glu或Arg / Lys-Glu-Xaa-Xaa-Glu / Asp,这可以作为潜在识别的指南蛋白质中的铁结合位点。

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