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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Binding Kinetics of the Intrinsically Disordered p53 Family Transactivation Domains and MDM2
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Binding Kinetics of the Intrinsically Disordered p53 Family Transactivation Domains and MDM2

机译:具有本质无序的P53家族转移域和MDM2的结合动力学

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Because of their prominent roles in cell-cycle regulation and cancer, the interaction between MDM2 and the intrinsically disordered transactivation domain (TAD) of p53 is exceptionally well-studied. However, although there are numerous computational studies on the interaction mechanism, there is a paucity of experimental data regarding the kinetics and mechanism. We have used stopped flow fluorescence to investigate the binding reaction between MDM2 and TAD from p53 as well as from its paralogs p63 and p73, and in particular, focused on the salt dependence of the interaction. The observed kinetics are consistent with a two-state mechanism within the time frame of the stopped flow methodology; thus, any conformational changes including the previously identified MDM2 lid dynamics must occur on a time scale 5 ms at 10 degrees C. The association rate constants are similar for the three TADs, and differences in the dissociation rate constants determine the various affinities with MDM2. In contrast to previous studies, we found a relatively small ionic-strength dependence for all three interactions, highlighting the large variation in the role of electrostatics among binding reactions of intrinsically disordered proteins (IDPs). The basal association rate constants in the absence of electrostatic interactions were relatively high (= 2 X 10(6) s(-1) at 10 degrees C), suggesting that a large number of initial contacts may lead to a productive complex. Our findings support an emerging picture of "conformational funneling" occurring in the initial stages of interactions involving IDPs and that these early binding events can rely on hydrophobic as well as charge-charge interactions.
机译:由于它们在细胞周期调节和癌症中的突出作用,MDM2之间的相互作用和P53的本质上无序域(TAD)的相互作用是特别的研究。然而,尽管对相互作用机制有许多计算研究,但是存在关于动力学和机制的实验数据的缺乏。我们已经使用停止的流量荧光来研究MDM2和TAD之间的结合反应,以及来自其副葡萄球菌P63和P73,特别是聚焦对相互作用的含盐依赖性。观察到的动力学与停止流动方法的时间框架内的两个状态机制一致;因此,包括先前所识别的MDM2盖动力学的任何构象变化必须在10摄氏度下在时间尺度<5ms上发生。结合速率常数类似于三次TAD,并且解离速率常数的差异决定了各种亲和力MDM2。与先前的研究相比,我们发现对所有三种相互作用的相对较小的离子强度依赖性,突出了静电蛋白(IDPS)结合反应中静电的作用的大变化。在不存在静电相互作用的基础缔合率常数在10摄氏度下相对较高(& = 2×10(6)秒(-1)),表明大量初始触点可能导致生产力复合物。我们的研究结果支持在涉及IDP的初始相互作用的初始阶段中出现的“构象漏斗”的新兴图片,并且这些早期结合事件可以依赖于疏水性以及电荷相互作用。

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