首页> 外文期刊>Canadian Journal of Chemistry >Theoretical analysis of frans-[PtCI2(NH3)(thiazole)] and trans-[PtCI2(thiazole)2] binding to biological targets — Factors influence binding kinetics and adduct stability
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Theoretical analysis of frans-[PtCI2(NH3)(thiazole)] and trans-[PtCI2(thiazole)2] binding to biological targets — Factors influence binding kinetics and adduct stability

机译:法兰-[PtCI2(NH3)(噻唑)]和反式-[PtCI2(噻唑)2]与生物靶标结合的理论分析-影响结合动力学和加合物稳定性的因素

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摘要

Full reaction energy profiles for traras-[PtCl2(NH3)(thiazole)] and trans-[PtCl2(thiazole)2] binding to sulfur- and nitrogen-containing biorelevant ligands were constructed by the density functional theory (DFT) method. Calculated results demonstrate that trans-platinum complexes can interact with biological targets, affording cis and trans products via very similar transition states. For different substituents, sulfur-containing ligands constitute kinetically preferred targets for plati-nation, whereas the platination of nitrogen-containing ligands is more favorable thermodynamically. This is consistent with previous experimental studies. Calculated results also suggest that the trans effect, the influence of the ligand, the size of the ligand, and hydrogen bonding play important roles in binding kinetics and stabilizing adducts.
机译:通过密度泛函理论(DFT)方法构建了traras- [PtCl2(NH3)(噻唑)]和反式[PtCl2(噻唑)2]与含硫和氮的生物相关配体结合的完整反应能谱。计算结果表明,反铂络合物可以与生物靶标相互作用,通过非常相似的过渡态提供顺式和反式产物。对于不同的取代基,含硫的配体构成了在动力学上优选的targets合靶标,而含氮的配体的电镀在热力学上更有利。这与先前的实验研究一致。计算结果还表明,反式作用,配体的影响,配体的大小和氢键在结合动力学和稳定加合物中起重要作用。

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