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3
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J Am Chem Soc. 2012 Jan 11;134(1):525-31. doi: 10.1021/ja208827q. Epub 2011 Dec 22.
4
Mechanism of the orotidine 5'-monophosphate decarboxylase-catalyzed reaction: importance of residues in the orotate binding site.鸟苷 5'-单磷酸脱羧酶催化反应的机制:位于乳清酸盐结合部位的残基的重要性。
Biochemistry. 2011 Oct 4;50(39):8497-507. doi: 10.1021/bi2012355. Epub 2011 Sep 6.
5
On the relationship between catalytic residues and their protein contact number.关于催化残基与其蛋白质接触数之间的关系。
Curr Protein Pept Sci. 2011 Sep;12(6):574-9. doi: 10.2174/138920311796957676.
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OMP decarboxylase: phosphodianion binding energy is used to stabilize a vinyl carbanion intermediate.OMP 脱羧酶:磷酰二阴离子结合能被用来稳定乙烯基碳负离子中间体。
J Am Chem Soc. 2011 May 4;133(17):6545-8. doi: 10.1021/ja201734z. Epub 2011 Apr 12.
7
Conformational changes in orotidine 5'-monophosphate decarboxylase: "remote" residues that stabilize the active conformation.乳清酸 5′-单磷酸脱羧酶构象变化:稳定活性构象的“远程”残基。
Biochemistry. 2010 May 4;49(17):3514-6. doi: 10.1021/bi100443a.
8
Crystal structure of the cystic fibrosis transmembrane conductance regulator inhibitory factor Cif reveals novel active-site features of an epoxide hydrolase virulence factor.囊性纤维化跨膜电导调节剂抑制因子 Cif 的晶体结构揭示了一种环氧化物水解酶毒力因子的新的活性位点特征。
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9
Evolution of protein phosphatases in plants and animals.植物和动物中蛋白质磷酸酶的进化
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10
Uroporphyrinogen decarboxylation as a benchmark for the catalytic proficiency of enzymes.尿卟啉原脱羧作用作为酶催化能力的一个基准。
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利用催化原子图预测酶活性位点中存在的催化功能。

Using catalytic atom maps to predict the catalytic functions present in enzyme active sites.

机构信息

Department of Chemistry and Biochemistry, University of California, Los Angeles, California 90095-1569, United States.

出版信息

Biochemistry. 2012 Sep 18;51(37):7321-9. doi: 10.1021/bi3008438. Epub 2012 Aug 30.

DOI:10.1021/bi3008438
PMID:22909276
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3454523/
Abstract

Catalytic atom maps (CAMs) are minimal models of enzyme active sites. The structures in the Protein Data Bank (PDB) were examined to determine if proteins with CAM-like geometries in their active sites all share the same catalytic function. We combined the CAM-based search protocol with a filter based on the weighted contact number (WCN) of the catalytic residues, a measure of the "crowdedness" of the microenvironment around a protein residue. Using this technique, a CAM based on the Ser-His-Asp catalytic triad of trypsin was able to correctly identify catalytic triads in other enzymes within 0.5 Å rmsd of the CAM with 96% accuracy. A CAM based on the Cys-Arg-(Asp/Glu) active site residues from the tyrosine phosphatase active site achieved 89% accuracy in identifying this type of catalytic functionality. Both of these CAMs were able to identify active sites across different fold types. Finally, the PDB was searched to locate proteins with catalytic functionality similar to that present in the active site of orotidine 5'-monophosphate decarboxylase (ODCase), whose mechanism is not known with certainty. A CAM, based on the conserved Lys-Asp-Lys-Asp tetrad in the ODCase active site, was used to search the PDB for enzymes with similar active sites. The ODCase active site has a geometry similar to that of Schiff base-forming Class I aldolases, with lowest aldolase rmsd to the ODCase CAM at 0.48 Å. The similarity between this CAM and the aldolase active site suggests that ODCase has the correct catalytic functionality present in its active site for the generation of a nucleophilic lysine.

摘要

催化原子图(CAM)是酶活性位点的最小模型。检查蛋白质数据库(PDB)中的结构,以确定其活性位点具有 CAM 样几何形状的蛋白质是否都具有相同的催化功能。我们将基于 CAM 的搜索协议与基于催化残基加权接触数(WCN)的过滤器结合使用,WCN 是衡量蛋白质残基周围微环境拥挤程度的指标。使用该技术,基于胰蛋白酶的 Ser-His-Asp 催化三联体的 CAM 能够以 0.5 Å rmsd 的精度正确识别其他酶中的催化三联体,准确率为 96%。基于酪氨酸磷酸酶活性位点的 Cys-Arg-(Asp/Glu)活性位点残基的 CAM 能够以 89%的准确率识别这种类型的催化功能。这两种 CAM 都能够识别不同折叠类型的活性位点。最后,搜索 PDB 以定位具有类似于鸟苷 5'-单磷酸脱羧酶(ODCase)活性位点中存在的催化功能的蛋白质,其机制尚不确定。基于 ODCase 活性位点中保守的 Lys-Asp-Lys-Asp 四联体的 CAM 用于搜索具有相似活性位点的酶。ODCase 活性位点的几何形状与形成 Schiff 碱的 I 类醛缩酶相似,与 ODCase CAM 的最低醛缩酶 rmsd 为 0.48 Å。该 CAM 与醛缩酶活性位点之间的相似性表明,ODCase 在其活性位点中具有产生亲核赖氨酸的正确催化功能。