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位阻羧酸配体支持水桥连双金属中心,该中心模拟金属水解酶活性位点的特征。

Sterically hindered carboxylate ligands support water-bridged dimetallic centers that model features of metallohydrolase active sites.

作者信息

Lee Dongwhan, Hung Pei-Lin, Spingler Bernhard, Lippard Stephen J

机构信息

Department of Chemistry, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

出版信息

Inorg Chem. 2002 Feb 11;41(3):521-31. doi: 10.1021/ic0107431.

Abstract

The synthesis and characterization of carboxylate-bridged dimetallic complexes are described. By using m-terphenyl-derived carboxylate ligands, a series of dicobalt(II), dicobalt(III), dinickel(II), and dizinc(II) complexes were synthesized. The compounds are [Co(2)(mu-O(2)CAr(Tol))(2)(O(2)CAr(Tol))(2)L(2)] (1), [Co(2)(mu-OH(2))(2)(mu-O(2)CAr(Tol))(2)(O(2)CAr(Tol))(2)L(2)] (2a-c), [Co(2)(mu-OH)(2)(mu-O(2)CAr(Tol))(2)(O(2)CAr(Tol))(2)L(2)] (3), [Ni(2)(mu-O(2)CAr(Tol))(4)L(2)] (4), [Ni(2)(mu-HO...H)(2)(mu-O(2)CAr(Tol))(2)(O(2)CAr(Tol))(2)L(2)] (5), and [Zn(2)(mu-O(2)CAr(Tol))(2)(O(2)CAr(Tol))(2)L(2)] (6), where Ar(Tol)CO(2)H = 2,6-di(p-tolyl)benzoic acid and L = pyridine, THF, or N,N-dibenzylethylenediamine. Structural analysis of these complexes revealed that additional bridging ligands can be readily accommodated within the M(2)(mu-O(2)CAr(Tol))(2) core, allowing a wide distribution of M...M distances from 2.5745(6) to 4.0169(9) A. Unprecedented bridging units M(2)(mu-OH(2))(2)(mu-O(2)CR)(2) and M(2)(mu-HO...H)(2)(mu-O(2)CR)(2) were identified in 2a-c and 5, respectively, in which strong hydrogen bonding accommodates shifts of protons from bridging water molecules toward the dangling oxygen atoms of terminal monodentate carboxylate groups. Such a proton shift along the O...H...O coordinate attenuates the donor ability of the anionic carboxylate ligand, which can translate into increased Lewis acidity at the metal centers. Such double activation of bridging water molecules by a Lewis acidic metal center and a metal-bound general base may facilitate the reactivity of metallohydrolases such as methionine aminopeptidase (MAP).

摘要

描述了羧酸盐桥联双金属配合物的合成与表征。通过使用间三联苯衍生的羧酸盐配体,合成了一系列二钴(II)、二钴(III)、二镍(II)和二锌(II)配合物。这些化合物分别为[Co(2)(μ - O(2)CAr(Tol))(2)(O(2)CAr(Tol))(2)L(2)] (1)、[Co(2)(μ - OH(2))(2)(μ - O(2)CAr(Tol))(2)(O(2)CAr(Tol))(2)L(2)] (2a - c)、[Co(2)(μ - OH)(2)(μ - O(2)CAr(Tol))(2)(O(2)CAr(Tol))(2)L(2)] (3)、[Ni(2)(μ - O(2)CAr(Tol))(4)L(2)] (4)、[Ni(2)(μ - HO...H)(2)(μ - O(2)CAr(Tol))(2)(O(2)CAr(Tol))(2)L(2)] (5)和[Zn(2)(μ - O(2)CAr(Tol))(2)(O(2)CAr(Tol))(2)L(2)] (6),其中Ar(Tol)CO(2)H = 2,6 - 二(对甲苯基)苯甲酸,L = 吡啶、四氢呋喃或N,N - 二苄基乙二胺。对这些配合物的结构分析表明,额外的桥联配体能够很容易地容纳在M(2)(μ - O(2)CAr(Tol))(2)核内,使得M...M距离在2.5745(6)至4.0169(9) Å范围内广泛分布。在2a - c和5中分别鉴定出了前所未有的桥联单元M(2)(μ - OH(2))(2)(μ - O(2)CR)(2)M(2)(μ - HO...H)(2)(μ - O(2)CR)(2),其中强氢键作用使得质子从桥联水分子向末端单齿羧酸盐基团的悬空氧原子发生转移。这种沿着O...H...O坐标的质子转移减弱了阴离子羧酸盐配体的给体能力,并可能转化为金属中心路易斯酸性的增强。路易斯酸性金属中心和金属结合的广义碱对桥联水分子的这种双重活化作用可能会促进诸如甲硫氨酸氨基肽酶(MAP)等金属水解酶的反应活性。

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