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首页> 外文期刊>Journal of Molecular Biology >Closed conformation of the active site loop of rabbit muscle triosephosphate isomerase in the absence of substrate: evidence of conformational heterogeneity.
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Closed conformation of the active site loop of rabbit muscle triosephosphate isomerase in the absence of substrate: evidence of conformational heterogeneity.

机译:在没有底物的情况下,兔肌肉磷酸三糖磷酸异构酶活性位点环的闭合构象:构象异质性的证据。

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摘要

The active site loop of triosephosphate isomerase (TIM) exhibits a hinged-lid motion, alternating between the two well defined "open" and closed observed in protein complexes with substrate analogues. Here, we present the first rabbit muscle apo TIM structure, refined to 1.5A resolution, in which the active site loop is either in the open or in the closed conformation in different subunits of the enzyme. In the closed conformation described here, the lid loop residues participate in stabilizing hydrogen bonds characteristic of holo TIM structures, whereas chemical interactions observed in the open loop conformation are similar to those found in the apo structures of TIM. In the closed conformation, a number of water molecules are observed at the projected ligand atom positions that are hydrogen bonded to the active site residues. Additives used during crystallization (DMSO and Tris molecules and magnesium atoms) were modeled in the electron density maps. However, no specific binding of these molecules is observed at, or close to, the active site and the lid loop. To further investigate this unusual closed conformation of the apo enzyme, two more rabbit muscle TIM structures, one in the same and another in a different crystal form, were determined. These structures present the open lid conformation only, indicating that the closed conformation cannot be explained by crystal contact effects. To rationalize why the active site loop is closed in the absence of ligand in one of the subunits, extensive comparison with previously solved TIM structures was carried out, supported by the bulk of available experimental information about enzyme kinetics and reaction mechanism of TIM. The observation of both open and closed lid conformations in TIM crystals might be related to a persistent conformational heterogeneity of this protein in solution.
机译:磷酸甘油糖异构酶(TIM)的活性位点环表现出铰接盖运动,在带有底物类似物的蛋白质复合物中观察到的两个明确定义的“开放”和闭合之间交替。在这里,我们介绍了第一个兔肌肉载脂蛋白TIM结构,精制到1.5A分辨率,其中活性位点环处于酶不同亚基的开放或封闭构象中。在此处描述的闭合构象中,盖环残基参与稳定整体TIM结构特征性的氢键,而在开环构象中观察到的化学相互作用类似于在TIM载脂蛋白结构中发现的化学相互作用。在闭合构象中,在投影的配体原子位置上观察到许多水分子,它们与氢键合到活性位点残基上。在电子密度图中对结晶过程中使用的添加剂(DMSO和Tris分子以及镁原子)进行了建模。然而,在活性位点和盖环处或附近没有观察到这些分子的特异性结合。为了进一步研究载脂酶的这种异常闭合构象,确定了另外两个兔肌肉TIM结构,一个结构相同,另一个结构不同。这些结构仅呈现开盖的构象,表明不能通过晶体接触效应来解释封闭的构象。为了合理化为什么在一个亚基中没有配体的情况下封闭活性位点环的原因,在大量有关TIM酶动力学和反应机理的可用实验信息的支持下,与以前解决的TIM结构进行了广泛的比较。 TIM晶体中打开和关闭盖构象的观察可能与该蛋白在溶液中的持久构象异质性有关。

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