Kang Sung-Min
College of Pharmacy, Duksung Women's University, Seoul 01369, Republic of Korea.
Biomimetics (Basel). 2023 Sep 6;8(5):412. doi: 10.3390/biomimetics8050412.
Tuberculosis, caused by , is a lethal infectious disease of significant public health concern. The rise of multidrug-resistant and drug-tolerant strains has necessitated novel approaches to combat the disease. Toxin-antitoxin (TA) systems, key players in bacterial adaptive responses, are prevalent in prokaryotic genomes and have been linked to tuberculosis. The genome of strains harbors an unusually high number of TA systems, prompting questions about their biological roles. The VapBC family, a representative type II TA system, is characterized by the VapC toxin, featuring a PilT N-terminal domain with nuclease activity. Its counterpart, VapB, functions as an antitoxin, inhibiting VapC's activity. Additionally, we explore peptide mimics designed to replicate protein helical structures in this review. Investigating these synthetic peptides offers fresh insights into molecular interactions, potentially leading to therapeutic applications. These synthetic peptides show promise as versatile tools for modulating cellular processes and protein-protein interactions. We examine the rational design strategies employed to mimic helical motifs, their biophysical properties, and potential applications in drug development and bioengineering. This review aims to provide an in-depth understanding of TA systems by introducing known complex structures, with a focus on both structural aspects and functional and molecular details associated with each system.
由……引起的结核病是一种严重威胁公众健康的致命传染病。耐多药和耐药物菌株的出现使得对抗该疾病需要新的方法。毒素-抗毒素(TA)系统是细菌适应性反应的关键参与者,在原核生物基因组中普遍存在,并且与结核病有关。……菌株的基因组含有异常大量的TA系统,这引发了关于它们生物学作用的问题。VapBC家族是一种典型的II型TA系统,其特征在于VapC毒素,具有带有核酸酶活性的PilT N末端结构域。其对应物VapB作为抗毒素发挥作用,抑制VapC的活性。此外,在本综述中我们还探讨了旨在复制蛋白质螺旋结构的肽模拟物。研究这些合成肽为分子相互作用提供了新的见解,可能会带来治疗应用。这些合成肽有望成为调节细胞过程和蛋白质-蛋白质相互作用的通用工具。我们研究了用于模拟螺旋基序的合理设计策略、它们的生物物理性质以及在药物开发和生物工程中的潜在应用。本综述旨在通过介绍已知的复杂结构,深入了解TA系统,重点关注每个系统的结构方面以及与之相关的功能和分子细节。