Whitehead Timothy A, Baker David, Fleishman Sarel J
Department of Chemical Engineering and Materials Science, Michigan State University, East Lansing, Michigan, USA.
Methods Enzymol. 2013;523:1-19. doi: 10.1016/B978-0-12-394292-0.00001-1.
Computational design of novel protein binders has recently emerged as a useful technique to study biomolecular recognition and generate molecules for use in biotechnology, research, and biomedicine. Current limitations in computational design methodology have led to the adoption of high-throughput screening and affinity maturation techniques to diagnose modeling inaccuracies and generate high activity binders. Here, we scrutinize this combination of computational and experimental aspects and propose areas for future methodological improvements.
新型蛋白质结合剂的计算设计最近已成为一种有用的技术,可用于研究生物分子识别并生成用于生物技术、研究和生物医学的分子。计算设计方法目前的局限性导致采用高通量筛选和亲和力成熟技术来诊断建模不准确之处并生成高活性结合剂。在此,我们仔细研究了计算和实验方面的这种结合,并提出了未来方法改进的领域。