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GroPBS: Fast Solver for Implicit Electrostatics of Biomolecules

机译:GroPBS:快速求解器的隐式静电生物分子。

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摘要

Knowledge about the electrostatic potential on the surface of biomolecules or biomembranes under physiological conditions is an important step in the attempt to characterize the physico-chemical properties of these molecules and, in particular, also their interactions with each other. Additionally, knowledge about solution electrostatics may also guide the design of molecules with specified properties. However, explicit water models come at a high computational cost, rendering them unsuitable for large design studies or for docking purposes. Implicit models with the water phase treated as a continuum require the numerical solution of the Poisson–Boltzmann equation (PBE). Here, we present a new flexible program for the numerical solution of the PBE, allowing for different geometries, and the explicit and implicit inclusion of membranes. It involves a discretization of space and the computation of the molecular surface. The PBE is solved using finite differences, the resulting set of equations is solved using a Gauss–Seidel method. It is shown for the example of the sucrose transporter ScrY that the implicit inclusion of a surrounding membrane has a strong effect also on the electrostatics within the pore region and, thus, needs to be carefully considered, e.g., in design studies on membrane proteins.
机译:关于在生理条件下生物分子或生物膜表面的静电势的知识是试图表征这些分子的物理化学性质,尤其是它们彼此之间相互作用的重要步骤。另外,关于溶液静电的知识也可以指导具有特定性质的分子的设计。但是,显式水模型的计算成本很高,使其不适用于大型设计研究或对接目的。将水相视为连续体的隐式模型需要Poisson–Boltzmann方程(PBE)的数值解。在这里,我们为PBE的数值解决方案提供了一个新的灵活程序,允许使用不同的几何形状以及显式和隐式包含膜。它涉及空间的离散化和分子表面的计算。使用有限差分求解PBE,使用高斯-赛德尔(Gauss-Seidel)方法求解方程组。对于蔗糖转运蛋白ScrY的例子表明,周围膜的隐含包合物也对孔区域内的静电也有强烈影响,因此,例如在膜蛋白的设计研究中需要仔细考虑。

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