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Modeling evolutionary landscapes: Mutational stability topology and superfunnels in sequence space

机译:建模进化景观:序列空间中的变异稳定性拓扑和超漏斗

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摘要

Random mutations under neutral or near-neutral conditions are studied by considering plausible evolutionary trajectories on “neutral nets”—i.e., collections of sequences (genotypes) interconnected via single-point mutations encoding for the same ground-state structure (phenotype). We use simple exact lattice models for the mapping between sequence and conformational spaces. Densities of states based on model intrachain interactions are determined by exhaustive conformational enumeration. We compare results from two very different interaction schemes to ascertain robustness of the conclusions. In both models, sequences in a majority of neutral nets center around a single “prototype sequence” of maximum mutational stability, tolerating the largest number of neutral mutations. General analytical considerations show that these topologies by themselves lead to higher steady-state evolutionary populations at prototype sequences. On average, native thermodynamic stability increases toward a maximum at the prototype sequence, resulting in funnel-like arrangements of native stabilities in sequence space. These observations offer a unified perspective on sequence design, native stability, and mutational stability of proteins. These principles are generalizable from native stability to any measure of fitness provided that its variation with respect to mutations is essentially smooth.
机译:通过考虑“中性网络”上可能出现的进化轨迹来研究中性或接近中性条件下的随机突变,即通过编码相同基态结构(表型)的单点突变相互联系的序列(基因型)的集合。我们使用简单的精确晶格模型进行序列和构象空间之间的映射。通过详尽的构象枚举确定基于模型链内相互作用的状态密度。我们比较了两种截然不同的交互方案的结果,以确定结论的可靠性。在这两个模型中,大多数中性网络中的序列都围绕单个具有最大突变稳定性的“原型序列”,从而可以承受最大数量的中性突变。一般的分析考虑表明,这些拓扑本身会在原型序列上导致更高的稳态进化种群。平均而言,原始热力学稳定性在原型序列处朝着最大值增加,从而导致序列空间中的原始稳定性呈漏斗状排列。这些观察为蛋白质的序列设计,天然稳定性和突变稳定性提供了统一的观点。这些原则可以从自然稳定性推广到任何适用的度量标准,只要其关于突变的变化基本上是平滑的即可。

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