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Enhanced sampling of interdomain motion using map-restrained Langevin Dynamics and NMR: application to Pin1

机译:使用地图约束的兰格文动力学和NMR增强域间运动的采样:在Pin1中的应用

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摘要

Many signaling proteins consist of globular domains connected by flexible linkers that allow for substantial domain motion. Because these domains often serve as complementary functional modules, the possibility of functionally important domain motions arises. To explore this possibility, we require knowledge of the ensemble of protein conformations sampled by interdomain motion.Measurements of NMR residual dipolar couplings (RDCs) of backbone NH bonds offer a per-residue characterization of interdomain dynamics, as the couplings are sensitive to domain orientation. A challenge in reaching this potential is the need to interpret the RDCs as averages over dynamic ensembles of domain conformations.Here, we address this challenge by introducing an efficient protocol for generating conformational ensembles appropriate for flexible, multi-domain proteins. The protocol uses map-restrained self-guided Langevin dynamics simulations to promote collective, interdomain motion while restraining the internal domain motion to near rigidity. Critically, the simulations retain an all-atom description for facile inclusion of site-specific NMR RDC restraints. The result is the rapid generation of conformational ensembles consistent with the RDC data.We illustrate this protocol on human Pin1, a two-domain peptidyl-prolyl isomerase relevant for cancer and Alzheimer’s disease. The results include the ensemble of domain orientations sampled by Pin1, as well as those of a dysfunctional variant, I28A-Pin1. The differences between the ensembles corroborate our previous spin relaxation results that showed weakened interdomain contact in the I28A variant relative to wild type. Our protocol extends our abilities to explore the functional significance of protein domain motions.
机译:许多信号蛋白由通过柔性接头连接的球形结构域组成,从而允许大量的结构域运动。因为这些域通常充当互补的功能模块,所以出现了功能上重要的域运动的可能性。为了探索这种可能性,我们需要了解通过域间运动采样的蛋白质构象的集合。主链NH键的NMR残留偶极偶合(RDC)的测量提供了域间动力学的每个残基表征,因为这些耦合对域取向敏感。实现这一潜力的挑战是需要将RDC解释为域构象动态集成的平均值。在此,我们通过引入一种有效的协议来生成适用于灵活的多域蛋白的构象集成的方法来应对这一挑战。该协议使用地图约束的自导式Langevin动力学仿真来促进集体域间运动,同时将内部域运动约束到接近刚度。至关重要的是,该模拟保留了所有原子的描述,以方便地包含位点特定的NMR RDC约束。结果是与RDC数据一致的构象集合的快速生成。我们在人类Pin1上阐明了该方案,Pin1是与癌症和阿尔茨海默氏病相关的两结构域肽基脯氨酰异构酶。结果包括Pin1采样的域方向的集合,以及功能异常的变体I28A-Pin1的集合。整体之间的差异证实了我们先前的自旋弛豫结果,该结果表明相对于野生型,I28A变体的域间接触减弱。我们的协议扩展了我们探索蛋白质域运动功能意义的能力。

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