Shivange Amol V, Marienhagen Jan, Mundhada Hemanshu, Schenk Alexander, Schwaneberg Ulrich
RWTH Aachen University, Germany.
Curr Opin Chem Biol. 2009 Feb;13(1):19-25. doi: 10.1016/j.cbpa.2009.01.019. Epub 2009 Mar 2.
Despite advances in screening technologies, only a very small fraction of theoretical protein sequence can be sampled in directed evolution experiments. At the current state of random mutagenesis technologies mutation frequencies have often been adjusted to values that cause a limited number of amino acid changes (often one to four amino acid changes per protein). For harvesting the power of directed evolution algorithms it is therefore important that generated mutant libraries are rich in diversity and enriched in active population. Insufficient knowledge about protein traits, mutational robustness of protein folds and technological limitations in diversity generating methods are main challenges for managing the complexity of protein sequence space. This review covers computational and experimental advances for high quality mutant library generation that have been achieved in the past two years.
尽管筛选技术取得了进展,但在定向进化实验中,理论上的蛋白质序列只有极小一部分能够被采样。在随机诱变技术的当前状态下,突变频率常常被调整到导致有限数量氨基酸变化的值(通常每个蛋白质有一到四个氨基酸变化)。因此,为了充分发挥定向进化算法的威力,所生成的突变文库丰富多样且活性群体富集是很重要的。对蛋白质特性、蛋白质折叠的突变稳健性的了解不足以及多样性生成方法中的技术限制,是管理蛋白质序列空间复杂性的主要挑战。本综述涵盖了过去两年在高质量突变文库生成方面取得的计算和实验进展。