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Structures of apo and holo tyrosine phenol-lyase reveal a catalytically critical closed conformation and suggest a mechanism for activation by K+ ions

机译:载脂蛋白和全酪氨酸酚裂解酶的结构揭示了催化关键的闭合构象并提出了由K +离子激活的机制

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摘要

Tyrosine phenol-lyase, a tetrameric pyridoxal-5′-phosphate dependent enzyme, catalyses the reversible hydrolytic cleavage of l-tyrosine to phenol and ammonium pyruvate. Here we describe the crystal structure of the Citrobacter freundii holoenzyme at 1.9 Å resolution. The structure reveals a network of protein interactions with the cofactor, pyridoxal-5′-phosphate, and details of coordination of the catalytically important K+ ion. We also present the structure of the apoenzyme at 1.85 Å resolution. Both structures were determined using crystals grown at pH 8.0, which is close to the pH of the maximal enzymatic activity (8.2). Comparison of the apoenzyme structure with the one previously determined at pH 6.0 reveals significant differences. The data suggest that the decrease of the enzymatic activity at pH 6.0 may be caused by conformational changes in the active site residues Tyr71, Tyr291, Arg381 and in the monovalent cation binding residue Glu69. Moreover, at pH 8.0 we observe two different active-site conformations: open – which was characterised before, and closed – which is observed for the first time in β-eliminating lyases. In the closed conformation a significant part of the small domain undergoes an extraordinary motion of up to 12 Å towards the large domain, closing the active site cleft and bringing the catalytically important Arg381 and Phe448 into the active site. The closed conformation allows rationalisation of the results of previous mutational studies and suggests that the observed active-site closure is critical for the course of the enzymatic reaction and for the enzyme's specificity towards its physiological substrate. Finally, the closed conformation allows us to model keto(imino)quinonoid, the key transition intermediate.
机译:酪氨酸苯酚裂解酶,一种四聚体的吡ido醛-5'-磷酸依赖性酶,催化1-酪氨酸的可逆水解裂解为苯酚和丙酮酸铵。在这里,我们以1.9Å的分辨率描述了弗氏柠檬酸全酶的晶体结构。该结构揭示了蛋白质与辅因子吡ido醛5'-磷酸相互作用的网络,以及催化重要的K + 离子的配位细节。我们还以1.85Å的分辨率展示了脱辅酶的结构。使用在pH 8.0时生长的晶体来确定两个结构,该晶体接近最大酶活性的pH(8.2)。载脂酶结构与先前在pH 6.0下测定的结构相比,显示出显着差异。数据表明,pH 6.0下酶活性的降低可能是由于活性位点残基Tyr71,Tyr291,Arg381和单价阳离子结合残基Glu69的构象变化引起的。此外,在pH 8.0时,我们观察到两种不同的活性位点构象:打开(之前已表征)和关闭(首次在β消除裂解酶中观察到)。在闭合构象中,小结构域的很大一部分朝着大结构域进行高达12Å的异常运动,从而关闭了活性位点裂口,并将具有催化作用的重要Arg381和Phe448引入了活性位点。封闭的构象可以合理化先前突变研究的结果,并表明观察到的活性位点封闭对于酶促反应的过程以及酶对其生理底物的特异性至关重要。最后,闭合构象使我们能够建模酮(亚氨基)醌类,这是关键的过渡中间体。

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