Arid
DOI10.1021/bi0517133
Enzyme : Substrate hydrogen bond shortening during the acylation phase of serine protease catalysis
Fodor, K; Harmat, V; Neutze, R; Szilagyi, L; Graf, L; Katona, G
通讯作者Graf, L
来源期刊BIOCHEMISTRY
ISSN0006-2960
出版年2006
卷号45期号:7页码:2114-2121
英文摘要

Atomic resolution (<= 1.2 angstrom) serine protease intermediate structures revealed that the strength of the hydrogen bonds between the enzyme and the substrate changed during catalysis. The well-conserved hydrogen bonds of antiparallel beta-sheet between the enzyme and the substrate become significantly shorter in the transition from a Michaelis complex analogue (Pontastacus leptodactylus (narrow-fingered crayfish) trypsin (CFT) in complex with Schistocerca gregaria (desert locust) trypsin inhibitor (SGTI) at 1.2 angstrom resolution) to an acyl-enzyme intermediate (N-acetyl-Asn-Pro-Ile acyl-enzyme intermediate of porcine pancreatic elastase at 0.95 angstrom resolution) presumably synchronously with the nucleophilic attack on the carbonyl carbon atom of the scissile peptide bond. This is interpreted as an active mechanism that utilizes the energy released from the stronger hydrogen bonds to overcome the energetic barrier of the nucleophilic attack by the hydroxyl group of the catalytic serine. In the CFT:SGTI: complex this hydrogen bond shortening may be hindered by the 271-321 disulfide bridge and Asn-151: of SGTI. The position of the catalytic histidine changes slightly as it adapts to the different nucleophilic attacker during the transition from the Michaelis complex to the acyl-enzyme state, and simultaneously its interaction with Asp-102 and Ser-214 becomes stronger. The oxyanion hole hydrogen bonds provide additional stabilization for acyl-ester bond in the acyl-enzyme than for scissile peptide bond of the Michaelis complex. Significant deviation from planarity is not observed in the reactive bonds of either the Michaelis complex or the acyl-enzyme. In the Michaelis complex the electron distribution of the carbonyl bond is distorted toward the oxygen atom compared to other peptide bonds in the structure, which indicates the polarization effect of the oxyanion hole.


类型Article
语种英语
国家Hungary ; Sweden ; France
收录类别SCI-E
WOS记录号WOS:000235451600014
WOS关键词SOYBEAN TRYPSIN-INHIBITOR ; ACTIVE-SITE ; SCHISTOCERCA-GREGARIA ; DESERT LOCUST ; TETRAHEDRAL INTERMEDIATE ; PROTEINASE-INHIBITORS ; ANGSTROM RESOLUTION ; CRYSTAL-STRUCTURE ; REACTIVE-SITE ; PEPTIDE-BOND
WOS类目Biochemistry & Molecular Biology
WOS研究方向Biochemistry & Molecular Biology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/150883
作者单位(1)Hungarian Acad Sci, Biotechnol Res Grp, H-1117 Budapest, Hungary;(2)Hungarian Acad Sci, Prot Modeling Grp, H-1117 Budapest, Hungary;(3)Chalmers Univ Technol, Dept Chem & Biosci, S-40530 Gothenburg, Sweden;(4)Eotvos Lorand Univ, Dept Biochem, H-1117 Budapest, Hungary;(5)Univ Grenoble 1, CNRS, CEA, LCCP,UMR 9015,IBS, F-38027 Grenoble 1, France
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GB/T 7714
Fodor, K,Harmat, V,Neutze, R,et al. Enzyme : Substrate hydrogen bond shortening during the acylation phase of serine protease catalysis[J],2006,45(7):2114-2121.
APA Fodor, K,Harmat, V,Neutze, R,Szilagyi, L,Graf, L,&Katona, G.(2006).Enzyme : Substrate hydrogen bond shortening during the acylation phase of serine protease catalysis.BIOCHEMISTRY,45(7),2114-2121.
MLA Fodor, K,et al."Enzyme : Substrate hydrogen bond shortening during the acylation phase of serine protease catalysis".BIOCHEMISTRY 45.7(2006):2114-2121.
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