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Analysis of HSP90-related folds with MED-SuMo classification approach

机译:MED-SuMo分类法分析HSP90相关折叠

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摘要

Three-dimensional structural information is critical for understanding functional protein properties and the precise mechanisms of protein functions implicated in physiological and pathological processes. Comparison and detection of protein binding sites are key steps for annotating structures with functional predictions and are extremely valuable steps in a drug design process. In this research area, MED-SuMo is a powerful technology to detect and characterize similar local regions on protein surfaces. Each amino acid residue’s potential chemical interactions are represented by specific surface chemical features (SCFs). The MED-SuMo heuristic is based on the representation of binding sites by a graph structure suitable for exploration by an efficient comparison algorithm. We use this approach to analyze one particular SCOP superfamily which includes HSP90 chaperone, MutL/DNA topoisomerase, histidine kinases, and α-ketoacid dehydrogenase kinase C (BCK). They share a common fold and a common region for ATP-binding. To analyze both similar and differing features of this fold, we use a novel classification method, the MED-SuMo multi approach (MED-SMA). We highlight common and distinct features of these proteins. The different clusters created by MED-SMA yield interesting observations. For instance, one cluster gathers three types of proteins (HSP90, topoisomerase VI, and BCK) which all bind the drug radicicol.
机译:三维结构信息对于理解蛋白质功能特性以及涉及生理和病理过程的蛋白质功能的精确机制至关重要。蛋白质结合位点的比较和检测是用功能预测注释结构的关键步骤,并且在药物设计过程中是极其有价值的步骤。在这个研究领域,MED-SuMo是一项强大的技术,可以检测和表征蛋白质表面上的相似局部区域。每个氨基酸残基的潜在化学相互作用都由特定的表面化学特征(SCF)表示。 MED-SuMo启发式方法基于适合于通过有效比较算法进行探索的图形结构表示的结合位点。我们使用这种方法来分析一个特定的SCOP超家族,包括HSP90伴侣,MutL / DNA拓扑异构酶,组氨酸激酶和α-酮酸脱氢酶激酶C(BCK)。它们具有相同的折叠和ATP结合的共同区域。要分析此折叠的相似和不同特征,我们使用一种新颖的分类方法,即MED-SuMo多方法(MED-SMA)。我们强调这些蛋白质的共同和独特的特征。 MED-SMA创建的不同簇产生有趣的观察结果。例如,一个簇聚集了三种类型的蛋白质(HSP90,拓扑异构酶VI和BCK),这些蛋白质均与药物radicicol结合。

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