Cysteine S-conjugate β-lyases: important roles in the metabolism of naturally occurring sulfur and selenium-containing compounds, xenobiotics and anticancer agents

被引:0
作者
Arthur J. L. Cooper
Boris F. Krasnikov
Zoya V. Niatsetskaya
John T. Pinto
Patrick S. Callery
Maria T. Villar
Antonio Artigues
Sam A. Bruschi
机构
[1] New York Medical College,Department of Biochemistry and Molecular Biology
[2] Columbia University,Department of Basic Pharmaceutical Sciences, School of Pharmacy
[3] West Virginia University,Department of Biochemistry and Molecular Biology
[4] University of Kansas Medical Center,undefined
[5] Laural Consulting,undefined
来源
Amino Acids | 2011年 / 41卷
关键词
Cysteine ; -conjugates; Cysteine ; -conjugate β-lyases; -(1,2-Dichlorovinyl)-; -cysteine; Glutamine transaminase K; Mitochondrial aspartate aminotransferase; -(1,1,2,2-tetrafluoroethyl)-; -cysteine;
D O I
暂无
中图分类号
学科分类号
摘要
Cysteine S-conjugate β-lyases are pyridoxal 5′-phosphate-containing enzymes that catalyze β-elimination reactions with cysteine S-conjugates that possess a good leaving group in the β-position. The end products are aminoacrylate and a sulfur-containing fragment. The aminoacrylate tautomerizes and hydrolyzes to pyruvate and ammonia. The mammalian cysteine S-conjugate β-lyases thus far identified are enzymes involved in amino acid metabolism that catalyze β-lyase reactions as non-physiological side reactions. Most are aminotransferases. In some cases the lyase is inactivated by reaction products. The cysteine S-conjugate β-lyases are of much interest to toxicologists because they play an important key role in the bioactivation (toxication) of halogenated alkenes, some of which are produced on an industrial scale and are environmental contaminants. The cysteine S-conjugate β-lyases have been reviewed in this journal previously (Cooper and Pinto in Amino Acids 30:1–15, 2006). Here, we focus on more recent findings regarding: (1) the identification of enzymes associated with high-Mr cysteine S-conjugate β-lyases in the cytosolic and mitochondrial fractions of rat liver and kidney; (2) the mechanism of syncatalytic inactivation of rat liver mitochondrial aspartate aminotransferase by the nephrotoxic β-lyase substrate S-(1,1,2,2-tetrafluoroethyl)-l-cysteine (the cysteine S-conjugate of tetrafluoroethylene); (3) toxicant channeling of reactive fragments from the active site of mitochondrial aspartate aminotransferase to susceptible proteins in the mitochondria; (4) the involvement of cysteine S-conjugate β-lyases in the metabolism/bioactivation of drugs and natural products; and (5) the role of cysteine S-conjugate β-lyases in the metabolism of selenocysteine Se-conjugates. This review emphasizes the fact that the cysteine S-conjugate β-lyases are biologically more important than hitherto appreciated.
引用
收藏
页码:7 / 27
页数:20
相关论文
共 466 条
[1]  
Abraham DG(1991)Glutamine transaminase K and cysteine Anal Biochem 197 421-427
[2]  
Cooper AJL(1996)-conjugate β-lyase activity stains Arch Biochem Biophys 335 311-320
[3]  
Abraham DG(1995)Cloning and expression of a rat kidney cytosolic glutamine transaminase K that has strong sequence homology to kynurenine-pyruvate aminotransferase J Biol Chem 270 180-188
[4]  
Cooper AJL(1995)Isolation from rat kidney of a high molecular weight cysteine Mol Pharmacol 48 855-860
[5]  
Abraham DG(2005)-conjugate β-lyase with activity toward leukotriene E Org Biomol Med 3 3357-3364
[6]  
Patel PP(1999)Glutamine transaminase K is not a major cysteine Int J Parasitol 29 543-548
[7]  
Cooper AJL(2000)-conjugate β-lyase of rat kidney mitochondria: Evidence that a high-molecular-weight enzyme fulfills this role Int J Parasitol 30 56-71
[8]  
Abraham DG(2009)Stereochemistry of reactions of the inhibitor/substrates Chem Eng News 87 50-54
[9]  
Thomas RJ(2004)- and Drug Metab Rev 36 583-594
[10]  
Cooper AJL(2008)-chloroalanine with β-mercaptoethanol catalysed by Chem Res Toxicol 21 145-159