Protein complexes in snake venom

被引:0
作者
R. Doley
R. M. Kini
机构
[1] National University of Singapore,Protein Science Laboratory, Department of Biological Sciences, Faculty of Science
[2] Tezpur University,Department of Molecular Biology and Biotechnology
[3] Virginia Commonwealth University,Department of Biochemistry, Medical College of Virginia
来源
Cellular and Molecular Life Sciences | 2009年 / 66卷
关键词
PLA; complexes; Metalloprotease complexes; Dimeric disintegrin; Serine protease complexes; Covalent and non-covalent three-finger toxin; Synergistic three-finger toxin;
D O I
暂无
中图分类号
学科分类号
摘要
Snake venom contains mixture of bioactive proteins and polypeptides. Most of these proteins and polypeptides exist as monomers, but some of them form complexes in the venom. These complexes exhibit much higher levels of pharmacological activity compared to individual components and play an important role in pathophysiological effects during envenomation. They are formed through covalent and/or non-covalent interactions. The subunits of the complexes are either identical (homodimers) or dissimilar (heterodimers; in some cases subunits belong to different families of proteins). The formation of complexes, at times, eliminates the non-specific binding and enhances the binding to the target molecule. On several occasions, it also leads to recognition of new targets as protein-protein interaction in complexes exposes the critical amino acid residues buried in the monomers. Here, we describe the structure and function of various protein complexes of snake venoms and their role in snake venom toxicity.
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页码:2851 / 2871
页数:20
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共 842 条
[1]  
Slotta K(1938)Schlangengifte-III. Mitteilung: Reinigung und Krystallisation des Klapperschlangen-Giftes Ber Dtsch Chem Ges 71 1076-1081
[2]  
Fraenkel-Conrat H(2003)Excitement ahead: structure, function and mechanism of snake venom phospholipase A2 enzymes Toxicon 42 827-840
[3]  
Kini RM(1963)Isolation of neurotoxins from the venom of Arch Int Pharmacodyn Ther 144 241-257
[4]  
Chang CC(1995) and their modes of neuromuscular blocking action J Chromatogr A 694 492-497
[5]  
Lee CY(1982)Resolution of isotoxins in the beta-bungarotoxin family J Biochem 91 1531-1548
[6]  
Chu CC(1994)Amino acid sequences of three beta-bungarotoxins (beta 3-, beta 4-, and beta 5- bungarotoxins) from Biochem J 303 171-176
[7]  
Li SH(1978) venom: amino acid substitutions in the A chains J Biochem (Tokyo) 84 1291-1300
[8]  
Chen YH(1979)The non-phospholipase A2 subunit of beta-bungarotoxin plays an important role in the phospholipase A2-independent neurotoxic effect: characterization of three isotoxins with a common phospholipase A2 subunit Eur J Biochem 99 471-481
[9]  
Kondo K(1995)Characterization of phospholipase A activity of beta1-bungarotoxin from Structure 3 1109-1119
[10]  
Toda H(1984) venom. I: its enzymatic properties and modification with p-bromophenacyl bromide Toxicon 22 631-640