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Structural insights into the enzyme specificity of a novel omega-transaminase from the thermophilic bacterium Sphaerobacter thermophilus

机译:从嗜热嗜热嗜热嗜热嗜热嗜热嗜热嗜热嗜热嗜热嗜热菌中达到酶特异性的结构见解

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摘要

Transaminases are pyridoxal 5'-phosphate-dependent enzymes that reversibly catalyze transamination reactions from an amino group donor substrate to an amino group acceptor substrate. omega-Transaminases (omega TAs) utilize compounds with an amino group not at alpha-carbon position as their amino group donor substrates. Recently, a novel omega TA with broad substrate specificity and high thermostability from the thermophilic bacterium Sphaerobacter thermophilus (St-omega TA) has been reported. Although St-omega TA has been biochemically characterized, little is known about its determinants of substrate specificity. In the present study, we determined the crystal structure of St-omega TA at 1.9 angstrom resolution to clarify in detail its mechanism of substrate recognition. The structure of St-omega TA revealed that it has a voluminous active site resulting from the unique spatial arrangement of residues comprising its active site. In addition, our molecular docking simulation results suggest that substrate compounds may bind to active site residues via electrostatic interactions or hydrophobic interactions that can be induced by subtle rearrangements of active site residues. On the basis of these structural analyses, we propose a plausible working model of the enzymatic mechanism of St-omega TA. Our results provide profound structural insights into the substrate specificity of St-omega TA and extend the boundaries of knowledge of TAs.
机译:转氨酶是吡哆醛5'-磷酸依赖性酶,其可逆地催化来自氨基供体基质到氨基受体底物的衍生反应。 Omega-转氨酶(OMEGA TAS)利用具有氨基的化合物,而不是在α-碳位置作为其氨基供体底物。最近,已经报道了具有宽底物特异性和来自嗜热嗜热嗜热嗜热嗜热嗜热杆菌(ST-Omega TA)的新型ωA。虽然ST-Omega TA已经生物化学表征,但对其基质特异性的决定簇知之甚少。在本研究中,我们确定了基于1.9埃分辨率的ST-Omega Ta的晶体结构,以详细阐明其基板识别的机制。 ST-Omega Ta的结构显示,它具有由包含其活性位点的独特空间排列产生的体积活性位点。此外,我们的分子对接模拟结果表明,衬底化合物可以通过静电相互作用或疏水相互作用与活性位点残留物结合,所述静电相互作用可以通过活性位点残留物的细微重排诱导。在这些结构分析的基础上,我们提出了一种合理的ST-Omega TA酶机的工作模型。我们的结果为ST-Omega TA的底物特异性提供了深刻的结构见解,并延长了TA的知识界限。

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