Design of a highly potent inhibitory peptide acting as a competitive inhibitor of HMG-CoA reductase

被引:0
作者
Valeriy V. Pak
Minseon Koo
Dae Young Kwon
Lyubov Yun
机构
[1] Institute of the Chemistry of Plant Substances,Department of Organic Synthesis
[2] Korea Food Research Institute,Food Fusion and Complex Research Division
来源
Amino Acids | 2012年 / 43卷
关键词
Peptides; Design; Competitive inhibitor; HMG-CoA reductase; β-Turn conformation; Circular dichroism;
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摘要
This study presents a design of a highly potent and competitive inhibitory peptide for 3-hydroxy-3-methylglutaryl CoA reductase (HMGR). HMGR is the major regulatory enzyme of cholesterol biosynthesis and the target enzyme of many investigations aimed at lowering the rate of cholesterol biosynthesis. In previous studies, the two hypocholesterolemic peptides (LPYP and IAVPGEVA) were isolated and identified from soy protein. Based on these peptide sequences, a number of peptides were designed previously by using the correlation between the conformational flexibility and bioactivity. The design method that was applied in previous studies was slightly modified for the purpose of the current research and 12 new peptides were designed and synthesized. Among all peptides, SFGYVAE showed the highest ability to inhibit HMGR. A kinetic analysis revealed that this peptide is a competitive inhibitor of HMG-CoA with an equilibrium constant of inhibitor binding (Ki) of 12 ± 0.4 nM. This is an overall 14,500-fold increase in inhibitory activity compared to the first isolated LPYP peptide from soybeans. Conformational data support a conformation of the designed peptides close to the bioactive conformation of the previously synthesized active peptides.
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页码:2015 / 2025
页数:10
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共 77 条
[1]  
Becker OM(1997)Geometric versus topological clustering: an insight into conformational mapping Proteins 27 213-226
[2]  
Beker OM(2000)Flexibility, conformation space, and bioactivity J Phys Chem 104 2123-2135
[3]  
Levy Y(1976)A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein dye-binding Anal Biochem 72 248-254
[4]  
Ravitz O(2009)Low high-density lipoprotein cholesterol and increased cardiovascular disease risk: an analysis of statin clinical trials Am J Cardiol 104 3E-9E
[5]  
Bradford MM(1985)Development and use of quantum mechanical molecular models. 76. AM1: a new general purpose quantum mechanical molecular model J Am Chem Soc 107 3902-3909
[6]  
Deedwania P(1992)The discovery and development of HMG-CoA reductase inhibitors J Lipid Res 33 1569-1582
[7]  
Singh V(1991)HBTU activation for automated Fmoc solid-phase peptide synthesis Pept Res 4 95-101
[8]  
Davidson MH(1998)Conformational interconversions in peptide β-turns: analysis of turns in proteins and computational estimates of barriers J Mol Biol 284 1505-1516
[9]  
Dewar MJS(2003)Statin inhibition of HMG-CoA reductase: a 3-dimensional view Atheroscler Suppl 4 3-8
[10]  
Zoebish EG(1990)Protein secondary structure and circular dichroism: a practical guide Protein Struct Funct Genet 7 205-214