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Membrane Permeability in Biological Systems: A Systems Biology Perspective

机译:生物系统中的膜渗透性:系统生物学的角度

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A full understanding of biological function emerges only if we are able to integrate all relevant information at multiple levels of organization to recreate dynamic interactions. These dynamic interactions cannot be recreated purely by experimental observation and the only feasible approach is to develop mathematical and computational models which couple together the underlying complex interacting non-linear processes. It is thus particularly encouraging to revisit the force field parameterization on the basis of extended QM calculations (structures, energetics and phase transitions) in conjunction with available experimental information. Further levels of approximation can be built with the combination of important advances in methodology and computer codes. Moreover, the error controlled strategy applied for optimizing an empirical method for phospholipids is novel in this domain. Combining these strengths in an approach that builds membrane models, integrating adequate atomistic and electronic information, will represent a huge advance towards describing real membrane systems on a solid basis.
机译:只有当我们能够在组织的多个层次上整合所有相关信息以重新创建动态交互时,才能对生物学功能有全面的了解。这些动态的相互作用不能完全通过实验观察来重建,唯一可行的方法是开发将潜在的复杂相互作用的非线性过程耦合在一起的数学和计算模型。因此,特别令人鼓舞的是,在扩展的QM计算(结构,能量学和相变)的基础上,结合可用的实验信息,重新研究力场参数化。结合方法学和计算机代码的重要进步,可以建立进一步的近似水平。此外,在该领域中,用于优化磷脂的经验方法的错误控制策略是新颖的。在构建膜模型,整合足够的原子信息和电子信息的方法中结合这些优势,将代表着在坚实基础上描述真实膜系统的巨大进步。

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