Biophysics of Tropical Diseases, Max Planck Tandem Group, University of Antioquia, Medellín, 050010, Colombia.
Medicinal Chemistry, Boehringer Ingelheim Pharma GmbH & Co KG, 88397, Biberach/Riss, Germany.
J Comput Aided Mol Des. 2022 Nov;36(11):825-835. doi: 10.1007/s10822-022-00482-1. Epub 2022 Oct 19.
Peptides are commonly used as therapeutic agents. However, they suffer from easy degradation and instability. Replacing natural by non-natural amino acids can avoid these problems, and potentially improve the affinity towards the target protein. Here, we present a computational pipeline to optimize peptides based on adding non-natural amino acids while improving their binding affinity. The workflow is an iterative computational evolution algorithm, inspired by the PARCE protocol, that performs single-point mutations on the peptide sequence using modules from the Rosetta framework. The modifications can be guided based on the structural properties or previous knowledge of the biological system. At each mutation step, the affinity to the protein is estimated by sampling the complex conformations and applying a consensus metric using various open protein-ligand scoring functions. The mutations are accepted based on the score differences, allowing for an iterative optimization of the initial peptide. The sampling/scoring scheme was benchmarked with a set of protein-peptide complexes where experimental affinity values have been reported. In addition, a basic application using a known protein-peptide complex is also provided. The structure- and dynamic-based approach allows users to optimize bound peptides, with the option to personalize the code for further applications. The protocol, called mPARCE, is available at: https://github.com/rochoa85/mPARCE/ .
肽通常被用作治疗剂。然而,它们容易降解和不稳定。用非天然氨基酸替代天然氨基酸可以避免这些问题,并有可能提高对靶蛋白的亲和力。在这里,我们提出了一种基于添加非天然氨基酸来优化肽的计算流程,同时提高其结合亲和力。该工作流程是一种受 PARCE 协议启发的迭代计算进化算法,它使用 Rosetta 框架中的模块对肽序列进行单点突变。可以根据生物系统的结构特性或先前的知识来指导修改。在每个突变步骤中,通过对复合物构象进行采样并使用各种开放的蛋白配体打分函数应用共识度量来估计与蛋白的亲和力。根据得分差异接受突变,从而允许对初始肽进行迭代优化。采样/打分方案通过一组已报道实验亲和力值的蛋白-肽复合物进行了基准测试。此外,还提供了一个使用已知蛋白-肽复合物的基本应用。基于结构和动力学的方法允许用户优化结合肽,并可以选择为进一步的应用定制代码。该协议称为 mPARCE,可在 https://github.com/rochoa85/mPARCE/ 获得。