Structural and functional models of nitrile hydratase

被引:255
作者
Mascharak, PK [1 ]
机构
[1] Univ Calif Santa Cruz, Dept Chem & Biochem, Santa Cruz, CA 95064 USA
基金
美国国家科学基金会;
关键词
nitrile hydratase; structural and functional models; hydration studies;
D O I
10.1016/S0010-8545(01)00413-1
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Nitrile hydratase, the enzyme involved in microbial nitrile assimilation, comprises either one non-heme low-spin iron(M) or a non-corrinoid cobalt(III) center at the active site. Two carboxamido nitrogens, one cysteine-sulfur, and two sulfurs from a cysteine-sulfenic (Cys-SO) and a cysteine-sulfinic (Cys-SO2) acid moiety respectively constitute the donor set around the metal center of this hydrolytic enzyme. Binding of one molecule of NO at the sixth site of the iron(III) center modulates the activity of the enzyme. It is suggested that a metal-bound hydroxide could be involved in the hydration of nitriles. Attack of water (or hydroxide) on a metal-bound nitrile is another possibility. During the past few years, modeling work by several groups have provided a great deal of insight into the structure and function of nitrile hydratase. Structural and spectroscopic studies on iron(III) and cobalt(III) complexes of various designed S,N-containing ligands have shown that the unusual coordination structure of the M(III) site (a) raises its potential and shuts off any redox activity, (b) allows binding of NO at the sixth site and oxidative modification of the bound S donors, and (c) brings the pK(a) of metal-bound water close to 7. Attempts to synthesize catalytically active model complexes have met with limited success. This review includes the results and implications of the modeling studies reported so far. (C) 2002 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:201 / 214
页数:14
相关论文
共 100 条
[31]   KINETICS AND MECHANISM OF NITRILE HYDRATION CATALYZED BY UNHINDERED HYDRIDOBIS(PHOSPHINE)PLATINUM(II) COMPLEXES - REGIOSELECTIVE HYDRATION OF ACRYLONITRILE [J].
JENSEN, CM ;
TROGLER, WC .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1986, 108 (04) :723-729
[32]   PURIFICATION AND PROPERTIES OF THE NITRILE HYDRATASE OF A NEW STRAIN OF RHODOCOCCUS SP [J].
KAAKEH, MR ;
LEGRAS, JL ;
DURAN, R ;
CHION, CKNCK ;
ARNAUD, A ;
GALZY, P .
ZENTRALBLATT FUR MIKROBIOLOGIE, 1991, 146 (02) :89-98
[33]   MICROBIAL HYDROLYSIS AS A POTENT METHOD FOR THE PREPARATION OF OPTICALLY-ACTIVE NITRILES, AMIDES AND CARBOXYLIC-ACIDS [J].
KAKEYA, H ;
SAKAI, N ;
SUGAI, T ;
OHTA, H .
TETRAHEDRON LETTERS, 1991, 32 (10) :1343-1346
[34]  
KIDD H, 1998, AGROCHEMICAL HDB
[35]   CLONING, NUCLEOTIDE-SEQUENCE AND EXPRESSION IN ESCHERICHIA-COLI OF 2 COBALT-CONTAINING NITRILE HYDRATASE GENES FROM RHODOCOCCUS-RHODOCHROUS J1 [J].
KOBAYASHI, M ;
NISHIYAMA, M ;
NAGASAWA, T ;
HORINOUCHI, S ;
BEPPU, T ;
YAMADA, H .
BIOCHIMICA ET BIOPHYSICA ACTA, 1991, 1129 (01) :23-33
[36]   Cobalt proteins [J].
Kobayashi, M ;
Shimizu, S .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1999, 261 (01) :1-9
[37]   Metalloenzyme nitrile hydratase: Structure, regulation, and application to biotechnology [J].
Kobayashi, M ;
Shimizu, S .
NATURE BIOTECHNOLOGY, 1998, 16 (08) :733-736
[38]   ENZYMATIC-SYNTHESIS OF ACRYLAMIDE - A SUCCESS STORY NOT YET OVER [J].
KOBAYASHI, M ;
NAGASAWA, T ;
YAMADA, H .
TRENDS IN BIOTECHNOLOGY, 1992, 10 (11) :402-408
[39]   How do oxidized thiolate ligands affect the electronic and reactivity properties of a nitrile hydratase model compound? [J].
Kung, I ;
Schweitzer, D ;
Shearer, J ;
Taylor, WD ;
Jackson, HL ;
Lovell, S ;
Kovacs, JA .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2000, 122 (34) :8299-8300
[40]   Mutagenicity, carcinogenicity, and teratogenicity of acrylonitrile [J].
Léonard, A ;
Gerber, GB ;
Stecca, C ;
Rueff, J ;
Borba, H ;
Farmer, PB ;
Sram, RJ ;
Czeizel, AE ;
Kalina, I .
MUTATION RESEARCH-REVIEWS IN MUTATION RESEARCH, 1999, 436 (03) :263-283