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功能模型蛋白的种群动态模拟。

Population dynamics simulations of functional model proteins.

作者信息

Blackburne Benjamin P, Hirst Jonathan D

机构信息

Division of Mathematical Biology, National Institute for Medical Research, The Ridgeway, Mill Hill, London NW7 1AA.

出版信息

J Chem Phys. 2005 Oct 15;123(15):154907. doi: 10.1063/1.2056545.

Abstract

In order to probe the fundamental principles that govern protein evolution, we use a minimalist model of proteins to provide a mapping from genotype to phenotype. The model is based on physically realistic forces of protein folding and includes an explicit definition of protein function. Thus, we can find the fitness of a sequence from its ability to fold to a stable structure and perform a function. We study the fitness landscapes of these functional model proteins, that is, the set of all sequences mapped on to their corresponding fitnesses and connected to their one mutant neighbors. Through population dynamics simulations we directly study the influence of the nature of the fitness landscape on evolution. Populations are observed to move to a steady state, the distribution of which can often be predicted prior to the population dynamics simulations from the nature of the fitness landscape and a quantity analogous to a partition function. In this paper, we develop a scheme for predicting the steady-state population on a fitness landscape, based on the nature of the fitness landscape, thereby obviating the need for explicit population dynamics simulations and providing some insight into the impact on molecular evolution of the nature of fitness landscapes. Poor predictions are indicative of fitness landscapes that consist of a series of weakly connected sublandscapes.

摘要

为了探究支配蛋白质进化的基本原理,我们使用一种极简蛋白质模型来提供从基因型到表型的映射。该模型基于蛋白质折叠的物理现实力,并包含蛋白质功能的明确定义。因此,我们可以根据序列折叠成稳定结构并执行功能的能力来确定其适应性。我们研究这些功能模型蛋白质的适应性景观,即所有映射到其相应适应性并与其一个突变邻居相连的序列集合。通过种群动态模拟,我们直接研究适应性景观的性质对进化的影响。观察到种群会移动到一个稳态,其分布通常可以在种群动态模拟之前,根据适应性景观的性质以及一个类似于配分函数的量来预测。在本文中,我们基于适应性景观的性质开发了一种预测适应性景观上稳态种群的方案,从而无需进行明确的种群动态模拟,并对适应性景观的性质对分子进化的影响提供一些见解。预测不佳表明适应性景观由一系列弱连接的子景观组成。

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