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理性蛋白质组学II:短链氧化还原酶(SCOR)酶家族中辅因子偏好的静电性质

Rational proteomics II: electrostatic nature of cofactor preference in the short-chain oxidoreductase (SCOR) enzyme family.

作者信息

Pletnev Vladimir Z, Weeks Charles M, Duax William L

机构信息

Hauptman-Woodward Medical Research Institute and Department of Structural Biology, SUNY at Buffalo, Buffalo, New York 14203, USA.

出版信息

Proteins. 2004 Nov 1;57(2):294-301. doi: 10.1002/prot.20205.

Abstract

The dominant role of long-range electrostatic interatomic interactions in nicotinamide adenine dinucleotide/nicotinamide adenine dinucleotide phosphate (NAD/NADP) cofactor recognition has been shown for enzymes of the short-chain oxidoreductase (SCOR) family. An estimation of cofactor preference based only on the contribution of the electrostatic energy term to the total energy of enzyme-cofactor interaction has been tested for approximately 40 known three-dimensional (3D) crystal complexes and approximately 330 SCOR enzymes, with cofactor preference predicted by the presence of Asp or Arg recognition residues at specific 3D positions in the beta2alpha3 loop (Duax et al., Proteins 2003;53:931-943). The results obtained were found to be consistent with approximately 90% reliable cofactor assignments for those subsets. The procedure was then applied to approximately 170 SCOR enzymes with completely uncertain NAD/NADP dependence, due to the lack of Asp and Arg marker residues. The proposed 3D electrostatic approach for cofactor assignment ("3D_DeltaE(el)") has been implemented in an automatic screening procedure, and together with the use of marker residues proposed earlier (Duax et al., Proteins 2003;53:931-943), increases the level of reliable predictions for the putative SCORs from approximately 70% to approximately 90%. It is expected to be applicable for any NAD/NADP-dependent enzyme subset having at least 25-30% sequence identity, with at least one enzyme of known 3D crystal structure.

摘要

短链氧化还原酶(SCOR)家族的酶中,长程静电原子间相互作用在烟酰胺腺嘌呤二核苷酸/烟酰胺腺嘌呤二核苷酸磷酸(NAD/NADP)辅因子识别中起主导作用。仅基于静电能项对酶-辅因子相互作用总能量的贡献来估计辅因子偏好性,已在约40个已知的三维(3D)晶体复合物和约330种SCOR酶中进行了测试,通过β2α3环中特定3D位置存在Asp或Arg识别残基来预测辅因子偏好性(Duax等人,《蛋白质》2003年;53:931 - 943)。发现所得结果与这些亚组中约90%可靠的辅因子分配一致。然后将该程序应用于约170种由于缺乏Asp和Arg标记残基而完全不确定NAD/NADP依赖性的SCOR酶。用于辅因子分配的拟议3D静电方法(“3D_DeltaE(el)”)已在自动筛选程序中实现,并且与早期提出的标记残基的使用(Duax等人,《蛋白质》2003年;53:931 - 943)一起,将推定SCORs可靠预测的水平从约70%提高到约90%。预计它适用于任何具有至少25 - 30%序列同一性且至少有一种已知3D晶体结构的酶的NAD/NADP依赖性酶亚组。

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