Department of Chemistry , University of Kalyani , Kalyani , West Bengal - 741235 , India.
Department of Chemical Sciences , Indian Institute of Science Education & Research Kolkata , Mohanpur , West Bengal - 741246 , India.
Inorg Chem. 2018 Sep 4;57(17):10802-10820. doi: 10.1021/acs.inorgchem.8b01441. Epub 2018 Aug 21.
Three new tetranuclear iron(III) and zinc(II) complexes, [Fe(cpdp)(phth)(OH)]·8HO (1), [Fe(cpdp)(terephth)(OH)] (2), and [Zn(Hcpdp)(suc)]Br·12HO (3), have been synthesized as models for the active site of phosphoester hydrolases by utilizing a polydentate ligand, N, N'-bis[2-carboxybenzomethyl]- N, N'-bis[2-pyridylmethyl]-1,3-diaminopropan-2-ol (Hcpdp) in combination with exogeneous phthalate (phth), terephthalate (terephth), and succinate (suc). Single crystal X-ray analyses reveal that the metallic core of complex 1 consists of four distorted octahedral iron(III) ions with average intraligand Fe---Fe separation of 3.656(2) Å, while the structure 3 represents a tetranuclear metallic core containing four distorted trigonal bipyramidal zinc(II) ions with average intraligand Zn---Zn separation of 3.472(2) Å. The molecular structure of complex 2 has been optimized by the DFT method which shows that its core arrangement is similar to that of 1. Complex 1 has a very interesting centrosymmetric structure that includes two crystallographically equivalent [Fe(cpdp)] dinuclear units, connected together by a pair of syn-syn bridging phthalates and a pair of bridging hydroxides to generate a "dimer of dimers" structural motif. In complex 3, a succinate group connects two crystallographically equivalent [Zn(Hcpdp)] dinuclear units in a syn-syn bidentate manner forming a "dimer of dimers" structural design. All three complexes show phosphatase-like activity that has been examined in methanol-water (1:1; v/v) using bis( p-nitrophenyl) phosphate (BNPP) as model substrate by applying the UV-vis spectrophotometric technique. In each case, the kinetic data have been analyzed by the Michaelis-Menten approach. The order of catalytic efficiency for the conversion of substrate to product follows the trend 1 > 2 > 3 with turnover rates ( k) of (2.73 ± 0.13) × 10 for 1, (1.06 ± 0.07) × 10 for 2, and (2.33 ± 0.18) × 10 s for 3. These k values are comparable to, albeit slightly lower than, the values reported for similar iron(III)- and zinc(II)-based model complexes in the literature. DFT calculations have been carried out to support the proposed mechanism for phosphatase-like activity.
三种新的四核铁(III)和锌(II)配合物,[Fe(cpdp)(phth)(OH)]·8HO(1),[Fe(cpdp)(terephth)(OH)](2)和[Zn(Hcpdp)(suc)]Br·12HO(3),已被合成作为磷酸酯水解酶活性位点的模型,利用多齿配体 N,N'-双[2-羧基苄基]-N,N'-双[2-吡啶甲基]-1,3-二氨基丙烷-2-醇(Hcpdp)与外源性邻苯二甲酸(phth),对苯二甲酸(terephth)和琥珀酸(suc)结合。单晶 X 射线分析表明,配合物 1 的金属核心由四个扭曲的八面体铁(III)离子组成,平均内配体 Fe---Fe 分离为 3.656(2)Å,而结构 3 代表一个包含四个扭曲的三角双锥锌(II)离子的四核金属核心,平均内配体 Zn---Zn 分离为 3.472(2)Å。配合物 2 的分子结构已通过 DFT 方法进行了优化,表明其核心排列与 1 相似。配合物 1 具有非常有趣的中心对称结构,包括两个结晶学上等同的[Fe(cpdp)]双核单元,通过一对顺式-顺式桥联邻苯二甲酸和一对桥联羟基连接在一起,形成“二聚体的二聚体”结构模式。在配合物 3 中,琥珀酸基团以顺式-顺式双齿方式连接两个结晶学上等同的[Zn(Hcpdp)]双核单元,形成“二聚体的二聚体”结构设计。所有三种配合物都表现出磷酸酶样活性,这已通过应用紫外可见分光光度法在甲醇-水(1:1;v/v)中使用双(对硝基苯基)磷酸酯(BNPP)作为模型底物进行了检查。在每种情况下,动力学数据均通过米氏-门坦分析进行了分析。底物转化为产物的催化效率顺序为 1 > 2 > 3,转化率( k)分别为(2.73 ± 0.13)× 10 用于 1,(1.06 ± 0.07)× 10 用于 2,和(2.33 ± 0.18)× 10 s 用于 3。这些 k 值与文献中报道的类似铁(III)-和锌(II)-基模型配合物的 k 值相当,尽管略低。已进行 DFT 计算以支持磷酸酶样活性的提议机制。