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Insight into the Mechanism of Domain Movements and their Role in Enzyme Function: Example of 3-Phosphoglycerate Kinase

机译:洞察域运动的机制及其在酶功能中的作用:3-磷酸甘油酸激酶实例

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Coupling of structural flexibility and biological function is an essential feature of proteins. The role of relative domain movements in enzyme function has been evidenced in many cases. However, the way of communication between protein domains and its manifestation in their movements as well as in the biological function are rarely delineated. In this review we summarize comprehensive studies with a typical hinge-bending two-domain enzyme, 3-phosphoglycerate kinase. A possible mechanism is proposed by which the two substrates that bind to different domains trigger the operation of the molecular hinges, located in the interdomain region. Various crystal structures of the enzyme have been determined with different relative domain positions, suggesting that domain closure brings the two substrates together for the catalysis. Substrate-caused conformational changes in the binary and the ternary complexes have been tested with the solubi-lized enzyme using physical methods, such as differential scanning calorimetry, small angle X-ray scattering and infrared spectroscopy. The results indicated the existence of strong cooperativity between the two domains and that the presence of both substrates is necessary for the domain closure. Comparison of the atomic contacts in the structures has led to selection of conserved side-chains, which may be involved in the domain movement. On this basis a hypothesis was put forward about the molecular mechanism of interdomain co-operation. Enzyme kinetic, ligand binding and small angle X-ray scattering studies with various site-directed mutants have confirmed this hypothesis. Namely, a special H-bonding network (a double molecular switch) seems to be responsible for operation of the main molecular hinge at the P-strand L under the concerted action of both substrates.
机译:结构柔韧性和生物学功能的结合是蛋白质的基本特征。在许多情况下已证明相对域运动在酶功能中的作用。然而,很少描述蛋白质结构域之间的交流方式及其在其运动以及生物学功能中的表现。在这篇综述中,我们总结了对典型的铰链弯曲两结构域酶3-磷酸甘油酸激酶的全面研究。提出了一种可能的机制,通过该机制,与不同结构域结合的两个底物触发位于结构域间区域的分子铰链的操作。已经确定了具有不同相对结构域位置的酶的各种晶体结构,这表明结构域闭合将两种底物聚集在一起进行催化。已使用增溶酶通过物理方法(例如差示扫描量热法,小角度X射线散射和红外光谱法)测试了溶解酶引起的二元和三元复合物中底物引起的构象变化。结果表明两个域之间存在强大的合作性,并且两个底物的存在对于域闭合是必需的。结构中原子接触的比较导致选择保守的侧链,这可能与域运动有关。在此基础上,提出了域间合作的分子机制的假说。各种定点突变体的酶动力学,配体结合和小角度X射线散射研究都证实了这一假设。即,在两个底物的共同作用下,似乎特殊的H键网络(双分子开关)负责P链L上的主分子铰链的操作。

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