首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >STUDY OF H2O2 INTERACTION WITH COPPER(II) COMPLEXES WITH DIAMINO-DIAMIDE TYPE LIGANDS, DIASTEREOISOMERIC DIPEPTIDES, AND TRIPEPTIDES
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STUDY OF H2O2 INTERACTION WITH COPPER(II) COMPLEXES WITH DIAMINO-DIAMIDE TYPE LIGANDS, DIASTEREOISOMERIC DIPEPTIDES, AND TRIPEPTIDES

机译:用二氨基 - 酰胺类配体,非对映异构体二肽和三肽的铜(II)配合物的H 2 O 2相互作用研究

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Copper(II) complexes with LL or LD dipeptides, tripeptides, L-aminoacylamides, or N,N'-bis(aminoacyl)alcanediamine were studied in their reaction with hydrogen peroxide by ESR spectroscopy. Shifts in the magnetic parameters g(parallel to) and A(parallel to) or differences in the quenching percentages of the ESR signal intensity, due to the formation of copper(I) species, suggested that the decomposition mechanism of H2O2 proceeds through the formation of a five-coordinated adduct and a subsequent electron transfer. This last process gave rise to a decomposition process which involved not only H2O2, but also the ligand coordinated to copper. It was surprising to find that, at the longest interaction time, this decomposition reaction always produced a similar copper(II) complex with (g) over bar(parallel to) = 2.330 +/- 0.005 and (A) over bar(parallel to) = 164 +/- 4 x 10(-4) cm(-1) in spite of the different ligands. Voltammetric measurements confirmed what had been seen by ESR spectroscopy, and suggested that the decomposition mechanism did not involve the formation of copper(III) species. Furthermore, the only copper(If) complex with diastereoisomeric dipeptides, which was able to promote the copper oxidation, was that formed by LL- or LD- Ala-Trp, thus suggesting that d-pi interaction plays a favorable role in the oxidation process. The complexes which showed catalytic activity in the hydrogen peroxide decomposition were those obtained from LL- or LD- Ala-Ala or Ala-Leu, i.e., copper(II) complexes with dipeptides having aliphatic side chains. This fact strongly supports the hypothesis of the formation of a ligand radical species due to the breakage of the weak copper(I)-peptide nitrogen bond, radical starting the degradation of the ligand itself. [References: 35]
机译:通过ESR光谱与过氧化氢反应研究了用L1或LD二肽,三肽,L-氨基酰基酰胺或N,N'-BIS(氨基酰基)唑甲胺酮的铜(II)复合物。由于铜(I)物种的形成,在ESR信号强度的淬火百分比中的磁性参数G(平行于)和猝灭百分比的差异,表明H2O2的分解机制通过地层进行五个协调的加合物和随后的电子转移。最后一个过程产生了不仅涉及H2O2的分解过程,还具有与铜协调的配体。发现,在最长的相互作用时,这种分解反应总是在杆(平行于)= 2.330 +/- 0.005和(a)上方(平行于)= 164 +/- 4×10(-4)cm(-1),尽管是不同的配体。伏安测量证实了ESR光谱观察到的内容,并表明分解机制不涉及形成铜(III)物种。此外,唯一能够促进铜氧化的非对映异构体二肽的唯一铜(IF)复合物,其由LL-或LD-Ala-TRP形成,因此表明D-PI相互作用在氧化过程中起着有利作用。在过氧化氢分解中显示催化活性的络合物是由L1-或LD- Ala-AlA或Ala-Leu,即铜(II)复合物中获得的二肽具有脂族侧链。由于弱铜(I) - 肽氮键的破裂,强烈地支持配体自由基物质的形成的假设,激进配体本身的劣化。 [参考:35]

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