4.6 Article

Copper(I) stabilization by cysteine/tryptophan motif in the extracellular domain of Ctr4

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JOURNAL OF INORGANIC BIOCHEMISTRY
卷 159, 期 -, 页码 45-49

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ELSEVIER SCIENCE INC
DOI: 10.1016/j.jinorgbio.2016.02.004

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Ctr4 copper transporter; Metal coordination; Cysteine; Tryptophan; Cation-pi interaction; Raman spectroscopy

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Copper transporter Ctr4 of fission yeast has a quasi-palindromic sequence rich in cysteine and aromatic amino acid residues, CX4YWNWYX4C (where X represents any amino acid), in the N-terminal extracellular domain. A 24-mer peptide comprising this sequence is bound to Cu(I) through the cysteine thiolate coordination. Luminescence, UV absorption and resonance Raman spectra of the Cu(I)-peptide complex show that at least one of the two tryptophan side chains is located in close proximity to the thiolate-Cu(I) center and interacts with the Cu(I) ion via pi-electrons of the indole ring. Although the thiolates and Cu(I) are oxidized to disulfide and Cu(II), respectively, only very slowly in air-saturated solutions, replacements of the tryptophan residues to phenylalanine significantly accelerate the oxidation reactions. The results obtained indicate that the interaction between Cu(I) and tryptophan via pi-electrons plays a significant role in protecting the thiolate-Cu(I) center against the oxidation. The cysteine- and tryptophan-rich quasi-palindromic sequence may be a metal binding motif that stabilizes Cu(I) in the oxidizing extracellular environment. (C) 2016 Published by Elsevier Inc.

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