Boerzel Heidi, Koeckert Margery, Bu Weiming, Spingler Bernhard, Lippard Stephen J
Department of Chemistry, Massachusetts Institute of Technology, Cambridge 02139, USA.
Inorg Chem. 2003 Mar 10;42(5):1604-15. doi: 10.1021/ic025624f.
The mononuclear zinc thiolate complexes [(Tp(PhMe))Zn(S-R)], where Tp(PhMe) is hydrotris((3-methyl-5-phenyl)pyrazolyl)borate and (S-R) is benzyl thiolate, 4-nitrophenylthiolate, 4-trifluoromethylphenylthiolate, 4-chlorophenylthiolate, phenylthiolate, 2-methylphenylthiolate, 4-methylphenylthiolate, 4-methoxyphenylthiolate, or 4-hydroxyphenylthiolate, were synthesized. Representative members of the class were also characterized structurally. The benzyl thiolate complex undergoes a thiolate-disulfide exchange reaction with a variety of diphenyl and dipyridyl disulfides. Kinetic studies revealed that the reaction shows saturation behavior in both complex and disulfide for most of the disulfides studied. Combined with studies of the lability of the coordinated thiolate, a mechanism is proposed where the reactive species is the zinc-coordinated thiolate. When the free benzyl thiol was allowed to react with the same disulfides, the reaction was slower by a factor of 20-200 than that for the zinc-thiolate complex, depending on the particular disulfide employed. Since most metallo-beta-lactamases contain one or more cysteine residues, the one in the active site being coordinated to zinc, the present study was extended to examine whether disulfides can be used as inhibitors of these enzymes by selective oxidation of the metal-bound cysteine. Several disulfides allowed to react with metallo-beta-lactamase CcrA from Bacteroides fragilis were moderate to potent irreversible inhibitors of the enzyme.
合成了单核硫醇锌配合物[(Tp(PhMe))Zn(S-R)],其中Tp(PhMe)为氢三((3-甲基-5-苯基)吡唑基)硼酸酯,(S-R)为苄硫醇盐、4-硝基苯硫醇盐、4-三氟甲基苯硫醇盐、4-氯苯硫醇盐、苯硫醇盐、2-甲基苯硫醇盐、4-甲基苯硫醇盐、4-甲氧基苯硫醇盐或4-羟基苯硫醇盐。还对该类配合物的代表性成员进行了结构表征。苄硫醇盐配合物与多种二苯基和二吡啶基二硫化物发生硫醇盐-二硫化物交换反应。动力学研究表明,对于大多数所研究的二硫化物,该反应在配合物和二硫化物中均表现出饱和行为。结合对配位硫醇盐活性的研究,提出了一种反应机理,其中活性物种为锌配位的硫醇盐。当游离苄硫醇与相同的二硫化物反应时,根据所使用的特定二硫化物,反应速度比硫醇锌配合物慢20至200倍。由于大多数金属β-内酰胺酶含有一个或多个半胱氨酸残基,活性位点中的半胱氨酸残基与锌配位,因此本研究扩展到研究二硫化物是否可通过选择性氧化与金属结合的半胱氨酸用作这些酶的抑制剂。几种与脆弱拟杆菌的金属β-内酰胺酶CcrA反应的二硫化物是该酶的中度至强效不可逆抑制剂。