Human glutathione transferase T2-2 discloses some evolutionary strategies for optimization of substrate binding to the active site of glutathione transferases

被引:20
作者
Caccuri, AM
Antonini, G
Board, PG
Flanagan, J
Parker, MW
Paolesse, R
Turella, P
Federici, G
Lo Bello, M
Ricci, G
机构
[1] Univ Roma Tor Vergata, Dept Biol, I-00133 Rome, Italy
[2] Univ Aquila, Dept Basic & Appl Biol, I-67010 Coppito, Italy
[3] Univ Rome La Sapienza, Dept Biochem Sci, I-00185 Rome, Italy
[4] Australian Natl Univ, John Curtin Sch Med Res, Mol Genet Grp, Canberra, ACT 2601, Australia
[5] St Vincents Inst Med Res, Ian Potter Fdn Prot Crystallog Lab, Fitzroy, Vic 3065, Australia
[6] Univ Roma Tor Vergata, Dept Chem Sci & Technol, I-00133 Rome, Italy
[7] Childrens Hosp IRCCS Bambin Gesu, I-00165 Rome, Italy
关键词
D O I
10.1074/jbc.M002819200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Rapid kinetic, spectroscopic, and potentiometric studies have been performed on human Theta class glutathione transferase T2-2 to dissect the mechanism of interaction of this enzyme with its natural substrate GSH. Theta class glutathione transferases are considered to be older than Alpha, Pi, and Mu classes in the evolutionary pathway. As in the more recently evolved GSTs, the activation of GSH in the human Theta enzyme proceeds by a forced deprotonation of the sulfhydryl group (pK(alpha) = 6.1). The thiol proton is released quantitatively in solution, but above pH 6.5, a protein residue acts as an internal base. Unlike Alpha, Mu, and Pi class isoenzymes, the GSH-binding mechanism occurs via a simple bimolecular reaction with k(on) and k(off) values at least hundred times lower (k(on) = (2.7 +/- 0.8) x 10(4) M-1 s(-1) k(off) = 36 +/- 9 s(-1), at 37 degreesC). Replacement of Arg-107 by alanine, using site-directed mutagenesis, remarkably increases the pK alpha value of the bound GSH and modifies the substrate binding modality. Y107A mutant enzyme displays a mechanism and rate constants for GSH binding approaching those of Alpha, Mu, and Pi isoenzymes. Comparison of available crystallographic data for all these GSTs reveals an unexpected evolutionary trend in terms of flexibility, which provides a basis for understanding our experimental results.
引用
收藏
页码:5427 / 5431
页数:5
相关论文
共 21 条
[1]   Structure, catalytic mechanism, and evolution of the glutathione transferases [J].
Armstrong, RN .
CHEMICAL RESEARCH IN TOXICOLOGY, 1997, 10 (01) :2-18
[2]  
BJORNESTEDT R, 1995, J MOL BIOL, V247, P765
[3]  
Board PG, 1997, BIOCHEM J, V328, P929
[4]   Proton release upon glutathione binding to glutathione transferase P1-1: Kinetic analysis of a multistep glutathione binding process [J].
Caccuri, AM ;
Lo Bello, M ;
Nuccetelli, M ;
Nicotra, M ;
Rossi, P ;
Antonini, G ;
Federici, G ;
Ricci, G .
BIOCHEMISTRY, 1998, 37 (09) :3028-3034
[5]   Proton release on binding of glutathione to Alpha, Mu and Delta class glutathione transferases [J].
Caccuri, AM ;
Antonini, G ;
Board, PG ;
Parker, MW ;
Nicotra, M ;
Lo Bello, M ;
Federici, G ;
Ricci, G .
BIOCHEMICAL JOURNAL, 1999, 344 :419-425
[6]   Catalytic mechanism and role of hydroxyl residues in the active site of theta class glutathione S-transferases - Investigation of Ser-9 and Tyr-113 in a glutathione S-transferase from the Australian sheep blowfly, Lucilia cuprina [J].
Caccuri, AM ;
Antonini, G ;
Nicotra, M ;
Battistoni, A ;
LoBello, M ;
Board, PG ;
Parker, MW ;
Ricci, G .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (47) :29681-29686
[7]   FORMATION OF MERCAPTURIC ACIDS IN RATS AFTER ADMINISTRATION OF ARALKYL ESTERS [J].
CLAPP, JJ ;
YOUNG, L .
BIOCHEMICAL JOURNAL, 1970, 118 (05) :765-&
[8]   X-RAY CRYSTAL-STRUCTURES OF CYTOSOLIC GLUTATHIONE S-TRANSFERASES - IMPLICATIONS FOR PROTEIN ARCHITECTURE, SUBSTRATE RECOGNITION AND CATALYTIC FUNCTION [J].
DIRR, H ;
REINEMER, P ;
HUBER, R .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1994, 220 (03) :645-661
[9]   Mutagenic analysis of conserved arginine residues in and around the novel sulfate binding pocket of the human Theta class glutathione transferase T2-2 [J].
Flanagan, JU ;
Rossjohn, J ;
Parker, MW ;
Board, PG ;
Chelvanayagam, G .
PROTEIN SCIENCE, 1999, 8 (10) :2205-2212
[10]   Fast product formation and slow product release are important features in a hysteretic reaction mechanism of glutathione transferase T2-2 [J].
Jemth, P ;
Mannervik, B .
BIOCHEMISTRY, 1999, 38 (31) :9982-9991