Dias Ana Margarida Gonçalves Carvalho, Teixeira Gonçalo Duarte Gomes, Barbosa Arménio Jorge Moura, Goncalves Joao, Iranzo Olga, Roque Ana Cecília Afonso
Associate Laboratory i4HB-Institute for Health and Bioeconomy, Chemistry Department, NOVA School of Science and Technology, Caparica, Portugal.
UCIBIO-Applied Molecular Biosciences Unit, Department of Chemistry, NOVA School of Science and Technology, NOVA University Lisbon, Caparica, Portugal.
Protein Sci. 2025 Jun;34(6):e70164. doi: 10.1002/pro.70164.
Protein engineering is a powerful tool in biotechnology and the basis to create unprecedented sequences, structures, and functions. The WW domains are a family of naturally occurring proteins involved in the molecular recognition of proline-rich and phosphorylated peptide sequences with relevance in cellular processes involved in human diseases. Due to their small size, WW domains represent appealing small protein domains for protein engineering and to generate novel functions as binders to non-cognate targets. Here, we designed a synthetic protein scaffold library based on the WW prototype sequence in which the loops were extended and randomized while maintaining structural stability. Using in vitro evolution by phage display against human serum albumin (HSA), we found a lead candidate that was produced by biological and chemical means and further characterized using experimental and computational tools. As a potential application for the lead binder, it was immobilized on a matrix and used to capture the target HSA. Overall, this work shows the versatility of WW domains as peptide scaffolds amenable for in vitro evolution against non-cognate targets.
蛋白质工程是生物技术中的一种强大工具,也是创造前所未有的序列、结构和功能的基础。WW结构域是一类天然存在的蛋白质家族,参与富含脯氨酸和磷酸化肽序列的分子识别,与人类疾病相关的细胞过程有关。由于其尺寸小,WW结构域是蛋白质工程中颇具吸引力的小蛋白质结构域,可作为与非同源靶标的结合物产生新功能。在此,我们基于WW原型序列设计了一个合成蛋白质支架文库,其中环被延伸并随机化,同时保持结构稳定性。通过针对人血清白蛋白(HSA)的噬菌体展示进行体外进化,我们发现了一个先导候选物,该候选物通过生物学和化学方法产生,并使用实验和计算工具进行进一步表征。作为先导结合物的潜在应用,它被固定在基质上并用于捕获靶标HSA。总体而言,这项工作展示了WW结构域作为适合针对非同源靶标进行体外进化的肽支架的多功能性。