蛋白质进化
生物
蛋白质功能
定向分子进化
计算生物学
定向进化
序列空间
适应性进化
功能(生物学)
实验进化
蛋白质工程
进化生物学
蛋白质结构
分子进化
蛋白质折叠
表型
遗传学
基因
系统发育学
突变体
细胞生物学
酶
生物化学
数学
纯数学
巴拿赫空间
作者
Vijay Jayaraman,Saacnicteh Toledo-Patiño,Lianet Noda-García,Paola Laurino
摘要
How do proteins evolve? How do changes in sequence mediate changes in protein structure, and in turn in function? This question has multiple angles, ranging from biochemistry and biophysics to evolutionary biology. This review provides a brief integrated view of some key mechanistic aspects of protein evolution. First, we explain how protein evolution is primarily driven by randomly acquired genetic mutations and selection for function, and how these mutations can even give rise to completely new folds. Then, we also comment on how phenotypic protein variability, including promiscuity, transcriptional and translational errors, may also accelerate this process, possibly via "plasticity-first" mechanisms. Finally, we highlight open questions in the field of protein evolution, with respect to the emergence of more sophisticated protein systems such as protein complexes, pathways, and the emergence of pre-LUCA enzymes.
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