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葫芦科胰蛋白酶抑制剂肽中独特CPRI结构基序的识别与稳定:基于分子动力学的同源建模,使用MCTI-II的X射线结构

Recognition and stabilization of a unique CPRI--structural motif in cucurbitaceae family trypsin inhibitor peptides: molecular dynamics based homology modeling using the X-ray structure of MCTI-II.

作者信息

Chakraborty S, Haldar U, Bera A K, Pal A K, Bhattacharya S, Ghosh S, Mukhopadhyay B P, Banerjee A

机构信息

Department of Biophysics, Bose Institute, Calcutta, India.

出版信息

J Biomol Struct Dyn. 2001 Feb;18(4):569-77. doi: 10.1080/07391102.2001.10506689.

DOI:10.1080/07391102.2001.10506689
PMID:11245252
Abstract

The high resolution crystallographic structure of MCTI-II complexed with beta trypsin (PDB entry 1MCT) was used to model the corresponding structures of the six inhibitor peptides belonging to Cucurbitaceae family (MCTI-I, LA-1, LA-2, CMTI-I, CMTI-III, CMTI-IV). Two model inhibitors, LA-1 and LA-2 were refined by molecular dynamics to estimate the average solution structure. The difference accessible surface area (DASA) study of the inhibitors with and without trypsin revealed the Arginine and other residues of the inhibitors which bind to trypsin. The hydration dynamics study of LA1 and LA2 also confirm the suitability of water molecules at the active Arg site. Moreover, the presence of a unique 3D-structural motif comprises with the four CPRI residues from the amino terminal is thought to be conserved in all the six studied inhibitors, which seems essential for the directional fixation for proper complexation of the Arg (5) residue towards the trypsin S1-binding pocket. The role of the disulphide linkage in the geometrical stabilization of CPRI (Cysteine, Proline, Arginine, Isoleucine) motif has also been envisaged from the comparative higher intra molecular Cys (3) -Cys (20) disulphide dihedral energies.

摘要

与β-胰蛋白酶复合的MCTI-II的高分辨率晶体结构(PDB条目1MCT)被用于构建葫芦科六种抑制肽(MCTI-I、LA-1、LA-2、CMTI-I、CMTI-III、CMTI-IV)的相应结构。通过分子动力学对两种模型抑制剂LA-1和LA-2进行了优化,以估计其平均溶液结构。对有和没有胰蛋白酶的抑制剂进行的可及表面面积差异(DASA)研究揭示了抑制剂中与胰蛋白酶结合的精氨酸和其他残基。LA1和LA2的水合动力学研究也证实了活性精氨酸位点水分子的适宜性。此外,所有六种研究的抑制剂中都存在一个独特的三维结构基序,该基序由来自氨基末端的四个CPRI残基组成,这似乎对于将精氨酸(5)残基正确定向固定到胰蛋白酶S1结合口袋中至关重要。从相对较高的分子内半胱氨酸(3)-半胱氨酸(20)二硫键二面角能量也可以设想二硫键在CPRI(半胱氨酸、脯氨酸、精氨酸、异亮氨酸)基序几何稳定中的作用。

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