Hydrolysis of 4-nitrophenyl acetate by a (N2S(thiolate))zinc hydroxide complex:: A model of the catalytically active intermediate for the zinc form of peptide deformylase

被引:33
作者
diTargiani, RC
Chang, SC
Salter, MH
Hancock, RD
Goldberg, DP
机构
[1] Johns Hopkins Univ, Dept Chem, Baltimore, MD 21218 USA
[2] Univ N Carolina, Wilmington, NC 28403 USA
关键词
D O I
10.1021/ic034337o
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
A novel zinc(II) hydroxide complex with a rare alkylthiolate donor in the coordination sphere is formed in aqueous solution from the dissolution of the zinc alkyl precursor complex (PATH)ZnCH3 (PATH = 2-methyl-1-[methyl(2-pyridin-2-ylethyl)amino]propane-2-thiolate) in H2O and protonolysis of the Zn-C bond to give (PATH)ZnOH (1). The (PATH)ZnOH complex has been shown to promote the hydrolysis of 4-nitrophenyl acetate (4-NA) by a detailed kinetic study and is the first functional model for the zinc form of the enzyme peptide deformylase. From a fit of the sigmoidal pH-rate profile a kinetic pK(a) of 8.05(5) and a pH-independent second-order rate constant (k"(max)) of 0.089(3) M-1 s(-1) have been obtained. The kinetic pK(a) is similar to the pK(a) of 7.7(1) determined by a potentiometric study (25 degreesC, I = 0.1 (NaNO3)). Observation of both rate enhancement and turnover shows that 1 acts as a catalyst for the hydrolysis of 4-NA, although the turnovers are modest. Activation parameters have been obtained from a temperature-dependence study of the rate constants (E-a = 54.8 kJ mol(-1), DeltaH(double dagger) = 52.4 kJ mol(-1), and DeltaS(double dagger) = -90.0 J mol(-1) K-1), and support a reaction mechanism which depends on nucleophilic attack of 1 in the rate-determining step. This is the first kinetic and thermodynamic study of a 4-coordinate zinc hydroxide complex containing a thiolate donor. In addition it is only the second time that a complete set of activation parameters have been obtained for the zinc-promoted hydrolysis of a carboxylic ester. This study puts the basicity and nucleophilicity of a (N2S)ZnOH complex in context with those of other LnZnOH complexes and enzymes.
引用
收藏
页码:5825 / 5836
页数:12
相关论文
共 74 条
[31]   Structural basis for the design of antibiotics targeting peptide deformylase [J].
Hao, B ;
Gong, WM ;
Rajagopalan, PTR ;
Zhou, Y ;
Pei, DH ;
Chan, MK .
BIOCHEMISTRY, 1999, 38 (15) :4712-4719
[32]   Toward the development of metal-based synthetic nucleases and peptidases: a rationale and progress report in applying the principles of coordination chemistry [J].
Hegg, EL ;
Burstyn, JN .
COORDINATION CHEMISTRY REVIEWS, 1998, 173 :133-165
[33]   FAMILIES OF ZINC METALLOPROTEASES [J].
HOOPER, NM .
FEBS LETTERS, 1994, 354 (01) :1-6
[34]  
ISAACS N, 1995, PHYSICAL ORGANIC CHE
[35]   NONLINEAR STRUCTURE-REACTIVITY CORRELATIONS . REACTIVITY OF NUCLEOPHILIC REAGENTS TOWARD ESTERS [J].
JENCKS, WP ;
GILCHRIST, M .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1968, 90 (10) :2622-+
[36]   FUNCTIONAL-CHARACTERIZATION OF HUMAN CARBONIC-ANHYDRASE-II VARIANTS WITH ALTERED ZINC-BINDING SITES [J].
KIEFER, LL ;
FIERKE, CA .
BIOCHEMISTRY, 1994, 33 (51) :15233-15240
[37]   Structural studies of the [tris(imidazolyl)phosphine]metal nitrate complexes {[PimPri,But]M(NO3)}+ (M = Co, Cu, Zn, Cd, Hg):: Comparison of nitrate-binding modes in synthesis analogues of carbonic anhydrase [J].
Kimblin, C ;
Murphy, VJ ;
Hascall, T ;
Bridgewater, BM ;
Bonanno, JB ;
Parkin, G .
INORGANIC CHEMISTRY, 2000, 39 (05) :967-974
[38]   MACROCYCLIC POLYAMINE ZINC(II) COMPLEXES AS ADVANCED MODELS FOR ZINC(II) ENZYMES [J].
KIMURA, E .
PROGRESS IN INORGANIC CHEMISTRY, VOL 41, 1994, 41 :443-491
[39]   CARBOXYESTER HYDROLYSIS PROMOTED BY A NEW ZINC(II) MACROCYCLIC TRIAMINE COMPLEX WITH AN ALKOXIDE PENDANT - A MODEL STUDY FOR THE SERINE ALKOXIDE NUCLEOPHILE IN ZINC ENZYMES [J].
KIMURA, E ;
NAKAMURA, I ;
KOIKE, T ;
SHIONOYA, M ;
KODAMA, Y ;
IKEDA, T ;
SHIRO, M .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1994, 116 (11) :4764-4771
[40]   Model studies for molecular recognition of carbonic anhydrase and carboxypeptidase [J].
Kimura, E .
ACCOUNTS OF CHEMICAL RESEARCH, 2001, 34 (02) :171-179