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Thermodynamic Study of Cu2+-Binding to the DAHK and GHK Peptides by Isothermal Titration Calorimetry (ITC) with the Weaker Competitor Glycine

机译:Cu2 +与DaHK和GHK肽结合的热力学研究 - 等温滴定量热法(ITC)与较弱的竞争对手甘氨酸

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摘要

The peptides Asp-Ala-His-Lys (DAHK) and Gly-His-Lys (GHK) are naturally occurring copper(II)-chelating motives in human serum and cerebrospinal fluid. Here the sensitive thermodynamic technique isothermal titration calorimetry (ITC) has been used to study the energetics of copper(II) binding to DAHK and GHK peptides in the presence of the weaker ligand glycine as a competitor. DAHK and GHK bind Cu(II) predominantly in a 1:1 stoichiometry with conditional dissociation constants (i.e. at pH 7.4, in the absence of the competing chelators glycine and HEPES buffer) of 2.6 +/- 0.4 x 10-14 M and of 7.0 +/- 1.0 x 10-14 M, respectively. Furthermore, the apparent ΔH values were measured and the number of protons released upon Cu(II) binding was determined by performing experiments in different buffers. This allowed us to determine the conditional ΔG, ΔH, and ΔS, i.e. corrected for the contributions of the weaker ligand glycine and the buffer at pH 7.4. We found that the entropic and enthalpic contributions to the Cu(II)-binding to GHK and DAHK are distinct, with a higher enthalpic contribution for GHK. The obtained thermodynamic parameters correspond well to those in the literature obtained by other techniques, suggesting that the use of the weaker ligand glycine as a competitor in ITC provides accurate data for Cu(II)-binding to high affinity peptides, which cannot be accurately determined without the use of a competitor ligand.
机译:肽Asp-Ala-His-Lys(DAHK)和Gly-His-Lys(GHK)是人血清和脑脊液中天然存在的铜(II)螯合动机。在这里,敏感的热力学技术等温滴定热法(ITC)已用于研究在弱配体甘氨酸作为竞争剂的情况下,铜(II)与DAHK和GHK肽结合的能量。 DAHK和GHK主要以1:1的化学计量比以2.6 +/- 0.4 x 10-14 M的条件解离常数(即在pH 7.4,没有竞争性螯合剂甘氨酸和HEPES缓冲液的情况下)结合Cu(II)。分别为7.0 +/- 1.0 x 10-14M。此外,通过在不同缓冲液中进行实验,测量了表观ΔH值,并确定了结合Cu(II)后释放的质子数。这使我们能够确定条件ΔG,ΔH和ΔS,即针对弱配体甘氨酸和pH 7.4的缓冲液的作用进行校正。我们发现,对GHK和DAHK结合Cu(II)的熵和焓贡献是不同的,对GHK的焓贡献更高。获得的热力学参数与通过其他技术获得的文献中的参数非常吻合,表明在ITC中使用弱配体甘氨酸作为竞争剂可提供Cu(II)与高亲和力肽结合的准确数据,无法准确确定无需使用竞争性配体。

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