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Comparative Structural Modeling of Six Old Yellow Enzymes (OYEs) from the Necrotrophic Fungus Ascochyta rabiei : Insight into Novel OYE Classes with Differences in Cofactor Binding Organization of Active Site Residues and Stereopreferences

机译:坏死性真菌Ascochyta rabiei的六个旧黄色酶(OYEs)的比较结构模型:洞察到具有辅助因子结合活性位点残基和立体定向差异的新型OYE类

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摘要

Old Yellow Enzyme (OYE1) was the first flavin-dependent enzyme identified and characterized in detail by the entire range of physical techniques. Irrespective of this scrutiny, true physiological role of the enzyme remains a mystery. In a recent study, we systematically identified OYE proteins from various fungi and classified them into three classes viz. Class I, II and III. However, there is no information about the structural organization of Class III OYEs, eukaryotic Class II OYEs and Class I OYEs of filamentous fungi. Ascochyta rabiei, a filamentous phytopathogen which causes Ascochyta blight (AB) in chickpea possesses six OYEs (ArOYE1-6) belonging to the three OYE classes. Here we carried out comparative homology modeling of six ArOYEs representing all the three classes to get an in depth idea of structural and functional aspects of fungal OYEs. The predicted 3D structures of A. rabiei OYEs were refined and evaluated using various validation tools for their structural integrity. Analysis of FMN binding environment of Class III OYE revealed novel residues involved in interaction. The ligand para-hydroxybenzaldehyde (PHB) was docked into the active site of the enzymes and interacting residues were analyzed. We observed a unique active site organization of Class III OYE in comparison to Class I and II OYEs. Subsequently, analysis of stereopreference through structural features of ArOYEs was carried out, suggesting differences in R/S selectivity of these proteins. Therefore, our comparative modeling study provides insights into the FMN binding, active site organization and stereopreference of different classes of ArOYEs and indicates towards functional differences of these enzymes. This study provides the basis for future investigations towards the biochemical and functional characterization of these enigmatic enzymes.
机译:老黄酶(OYE1)是第一个黄酮依赖性酶,已通过整个物理技术范围进行了详细鉴定和表征。不管进行这种检查,该酶的真正生理作用仍然是一个谜。在最近的研究中,我们系统地从各种真菌中鉴定了OYE蛋白,并将它们分为三类。 I,II和III类。但是,没有关于丝状真菌的III类OYE,真核II类OYE和I类OYE的结构组织的信息。狂犬病菌Ascochyta rabiei,一种引起鹰嘴豆枯萎病(AB)的丝状植物病原体,具有六个属于三个OYE类的OYE(ArOYE1-6)。在这里,我们对代表所有三个类别的六个ArOYE进行了比较同源性建模,以深入了解真菌OYE的结构和功能方面。使用各种验证工具对阿拉伯曲霉OYE的预测3D结构进行完善和评估,以确保其结构完整性。对三类OYE的FMN结合环境的分析揭示了参与相互作用的新残基。将配体对羟基苯甲醛(PHB)对接至酶的活性位点,并分析相互作用的残基。与I类和II类OYE相比,我们观察到了III类OYE的独特活动站点组织。随后,通过ArOYE的结构特征进行了立体偏好分析,表明这些蛋白质在R / S选择性方面存在差异。因此,我们的比较模型研究为不同类别的ArOYE的FMN结合,活性位点组织和立体偏好提供了见识,并指出了这些酶的功能差异。这项研究为这些神秘酶的生化和功能表征的未来研究提供了基础。

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