Peña-Guerrero José, Fernández-Rubio Celia, García-Sosa Alfonso T, Nguewa Paul A
ISTUN Institute of Tropical Health, Department of Microbiology and Parasitology, University of Navarra, IdiSNA (Navarra Institute for Health Research), E-31008 Pamplona, Navarra, Spain.
Chair of Molecular Technology, Institute of Chemistry, University of Tartu, Ravila 14a, 50411 Tartu, Estonia.
Pharmaceutics. 2023 Jun 27;15(7):1839. doi: 10.3390/pharmaceutics15071839.
The search for new therapeutic targets and their implications in drug development remains an emerging scientific topic. BRCT-bearing proteins are found in Archaea, Bacteria, Eukarya, and viruses. They are traditionally involved in DNA repair, recombination, and cell cycle control. To carry out these functions, BRCT domains are able to interact with DNA and proteins. Moreover, such domains are also implicated in several pathogenic processes and malignancies including breast, ovarian, and lung cancer. Although these domains exhibit moderately conserved folding, their sequences show very low conservation. Interestingly, sequence variations among species are considered positive traits in the search for suitable therapeutic targets, since non-specific drug interactions might be reduced. These main characteristics of BRCT, as well as its critical implications in key biological processes in the cell, have prompted the study of these domains as therapeutic targets. This review explores the possible roles of BRCT domains as therapeutic targets for drug discovery. We describe their common structural features and relevant interactions and pathways, as well as their implications in pathologic processes. Drugs commonly used to target these domains are also presented. Finally, based on their structures, we describe new drug design possibilities using modern and innovative techniques.
寻找新的治疗靶点及其在药物开发中的意义仍然是一个新兴的科学课题。含BRCT的蛋白质存在于古细菌、细菌、真核生物和病毒中。它们传统上参与DNA修复、重组和细胞周期控制。为了执行这些功能,BRCT结构域能够与DNA和蛋白质相互作用。此外,这些结构域还与包括乳腺癌、卵巢癌和肺癌在内的多种致病过程和恶性肿瘤有关。尽管这些结构域表现出适度保守的折叠,但它们的序列显示出非常低的保守性。有趣的是,物种间的序列变异在寻找合适的治疗靶点时被认为是积极的特征,因为非特异性药物相互作用可能会减少。BRCT的这些主要特征及其在细胞关键生物学过程中的关键意义,促使人们将这些结构域作为治疗靶点进行研究。本综述探讨了BRCT结构域作为药物发现治疗靶点的可能作用。我们描述了它们常见的结构特征、相关的相互作用和途径,以及它们在病理过程中的意义。还介绍了常用于靶向这些结构域的药物。最后,基于它们的结构,我们描述了使用现代和创新技术进行新药设计的可能性。