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How tin metal prevents verdoheme ring opening? Comparative study of various nucleophiles

机译:金属锡如何防止Verdoheme环打开?各种亲核试剂的比较研究

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摘要

The inhibitory role of tin metal in the verdoheme ring opening mechanism has been investigated using B3LYP method. Nucleophilic additions of OH-, NH2-, and CN- to three possibly six, five, and four coordinate verdoheme complexes of tin(IV) have been employed as model reactions. The results of calculations suggest that nucleophilic attacks to tin(IV) verdohemes does not result in the opening of the macrocycle, being in excellent agreement with experimental reports. In six coordinate tin(IV) verdoheme complex the formation of open ring helical complexes is favorable thermodynamically but not kinetically. In this coordination state, tin has no coordination role. Thus. direct addition of nucleophiles to the positive oxo-carbon centers and formation of a closed ring hydroxy compound is proposed for blocking the conversion of verdoheme to biliverdin. Contrary to zinc and iron analogues, in five and four coordinate pathways, such addition to oxo-carbons does not proceed toward stable open chain helical products. This is because formation of these complexes is unfavorable both thermodynamically and kinetically. It has been determined that in the latter pathways a closed ring compound is formed as final product by adding nucleophiles to tin atoms. It has been thus shown that high affinity of ligands for binding to both the fifth and sixth coordination sites of the highly charged Sn(IV) center is responsible for inhibiting the conversion of verdoheme complexes to biliverdin compounds. Results indicate that high tendency of tin(IV) metal to increase coordination state plays a crucial role in preventing verdoheme ring opening. These key points have been corroborated with the results obtained from molecular orbital calculations. (C) 2009 Elsevier B.V. All rights reserved.
机译:使用B3LYP方法研究了锡金属在Verheheme开环机理中的抑制作用。 OH-,NH2-和CN-的亲核加成反应已被用作模型反应的锡(IV)的三个可能的六个,五个和四个配位Verdoheme复合物。计算结果表明,对锡(IV)Verdohemes的亲核攻击不会导致大环的开放,这与实验报告非常吻合。在六配位的锡(IV)Verdoheme配合物中,开环螺旋配合物的形成在热力学上是有利的,而在动力学上是不利的。在这种协调状态下,锡不具有协调作用。从而。建议将亲核试剂直接加到正羰基碳中心并形成闭环羟基化合物以阻止维多血红素转化为胆绿素。与锌和铁类似物相反,在五种和四种配位途径中,向含氧碳中的这种添加不会促进稳定的开链螺旋产物。这是因为这些络合物的形成在热力学和动力学上都是不利的。已经确定,在后一种途径中,通过将亲核试剂加到锡原子上形成最终产物的闭环化合物。因此已经表明,配体与高电荷的Sn(IV)中心的第五和第六配位位点的结合的高亲和力负责抑制维多红血红素络合物转化为胆绿素化合物。结果表明,锡(IV)金属增加配位态的高度趋势在防止Verdoheme开环中起着至关重要的作用。这些关键点已得到分子轨道计算结果的证实。 (C)2009 Elsevier B.V.保留所有权利。

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