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Crystal structure of the apo form of a β‐transaminase from Mesorhizobium Mesorhizobium sp. strain LUK

机译:叶氏辛钙苏氏苏氏苏氏植物β-转氨酶A APO形式的晶体结构。 拉卢克菌株

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摘要

Abstract Pyridoxal 5′‐phosphate (PLP)‐dependent β‐transaminases (βTAs) reversibly catalyze transamination reactions by recognizing amino groups linked to the β‐carbon atoms of their substrates. Although several βTA structures have been determined as holo forms containing PLP, little is known about the effect of PLP on the conversion of the apo structure to the holo structure. We determined the crystal structure of the apo form of a βTA from Mesorhizobium sp. strain LUK at 2.2 ? resolution to elucidate how PLP affects the βTA structure. The structure revealed three major disordered regions near the active site. Structural comparison with the holo form also showed that the disordered regions in the apo form are ordered and partially adopt secondary structures in the holo form. These findings suggest that PLP incorporation into the active site contributes to the structural stability of the active site architecture, thereby forming the complete active site. Our results provide novel structural insights into the role of PLP in terms of active site formation.
机译:摘要吡哆醛5'-磷酸(PLP) - 依赖性β-转氨酶(β-转氨酶(βTA)通过识别与其基质的β-碳原子连接的氨基可逆地催化崩解反应。尽管已经确定了几种βTA结构作为含PLP的Holo形式,但是关于PLP对HOLO结构的APO结构转化的影响几乎是已知的。我们确定了来自Mesorhizobium SP的APO形式的APO形式的晶体结构。菌株Luk在2.2?解决方法以阐明PLP如何影响βTA结构。该结构揭示了在活性位点附近的三个主要无序区域。与HOLO形式的结构比较也表明,APO形式中的无序区域被排序并部分地采用HOLO形式中的二级结构。这些发现表明,PLP掺入有源站点的有助于主动站点架构的结构稳定性,从而形成完整的活动位点。我们的结果为PLP在有源场地形成方面提供了新的结构性见解。

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