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Hydrolysis of Methionine- and Histidine-Containing Peptides Promoted by Dinuclear Platinum(II) Complexes with Benzodiazines as Bridging Ligands: Influence of Ligand Structure on the Catalytic Ability of Platinum(II) Complexes

机译:双核铂(II)配合物与苯并二嗪作为桥接配体促进的蛋氨酸和组氨酸肽的水解:配体结构对铂(II)配合物催化能力的影响

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摘要

Dinuclear platinum(II) complexes, [{Pt(en)Cl}2(μ-qx)]Cl2·2H2O (>1), [{Pt(en)Cl}2(μ-qz)](ClO4)2 (>2), and [{Pt(en)Cl}2(μ-phtz)]Cl2·4H2O (>3), were synthesized and characterized by different spectroscopic techniques. The crystal structure of >1 was determined by single-crystal X-ray diffraction analysis, while the DFT M06-2X method was applied in order to optimize the structures of >1–3. The chlorido Pt(II) complexes >1–3 were converted into the corresponding aqua species >1a–3a, and their reactions with an equimolar amount of Ac–L–Met–Gly and Ac–L–His–Gly dipeptides were studied by 1H NMR spectroscopy in the pH range 2.0 < pH < 2.5 at 37°C. It was found that, in all investigated reactions with the Ac–L–Met–Gly dipeptide, the cleavage of the Met–Gly amide bond had occurred, but complexes >2a and >3a showed lower catalytic activity than >1a. However, in the reactions with Ac–L–His–Gly dipeptide, the hydrolysis of the amide bond involving the carboxylic group of histidine was observed only with complex >1a. The observed disparity in the catalytic activity of these complexes is thought to be due to different relative positioning of nitrogen atoms in the bridging qx, qz, and phtz ligands and consequent variation in the intramolecular separation of the two platinum(II) metal centers.
机译:双核铂(II)络合物,[{Pt(en)Cl} 2(μ-qx)] Cl2·2H2O(> 1 ),[{Pt(en)Cl} 2(μ-qz)合成并表征了](ClO4)2(> 2 )和[{Pt(en)Cl} 2(μ-phtz)] Cl2·4H2O(> 3 )通过不同的光谱技术。 > 1 的晶体结构通过单晶X射线衍射分析确定,而DFT M06-2X方法用于优化> 1-3 的结构。氯化铂Pt(II)配合物> 1-3 – 被转化为相应的水生物种> 1a-3a ,它们与等摩尔量的Ac–L–Met–Gly反应和Ac–L–His–Gly二肽通过 1 1H NMR光谱在37°C的pH范围2.0 H <2.5范围内进行了研究。发现在所有研究的与Ac–L–Met–Gly二肽的反应中,均发生了Met–Gly酰胺键的裂解,但复合物> 2a 和> 3a 的催化活性低于> 1a 。但是,在与Ac–L–His–Gly二肽的反应中,只有在> 1a 的情况下,才能观察到涉及组氨酸羧基的酰胺键的水解。据认为,这些配合物催化活性的差异是由于桥接的qx,qz和phtz配体中氮原子的相对相对位置不同以及两个铂(II)金属中心的分子内分离差异所致。

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