Ożga Katarzyna, Berlicki Łukasz
Department of Bioorganic Chemistry, Wrocław University of Science and Technology, Wyb. Wyspiańskiego 27, 50-370 Wrocław, Poland.
ACS Bio Med Chem Au. 2022 Apr 28;2(4):316-327. doi: 10.1021/acsbiomedchemau.2c00008. eCollection 2022 Aug 17.
The potential of miniproteins in the biological and chemical sciences is constantly increasing. Significant progress in the design methodologies has been achieved over the last 30 years. Early approaches based on propensities of individual amino acid residues to form individual secondary structures were subsequently improved by structural analyses using NMR spectroscopy and crystallography. Consequently, computational algorithms were developed, which are now highly successful in designing structures with accuracy often close to atomic range. Further perspectives include construction of miniproteins incorporating non-native secondary structures derived from sequences with units other than α-amino acids. Noteworthy, miniproteins with extended structures, which are now feasibly accessible, are excellent scaffolds for construction of functional molecules.
微型蛋白质在生物科学和化学科学中的潜力正在不断增加。在过去30年里,设计方法取得了重大进展。早期基于单个氨基酸残基形成单个二级结构倾向的方法,随后通过使用核磁共振光谱和晶体学的结构分析得到了改进。因此,开发了计算算法,这些算法现在在设计精度常常接近原子水平的结构方面非常成功。进一步的前景包括构建包含源自非α-氨基酸单元序列的非天然二级结构的微型蛋白质。值得注意的是,现在可以轻易获得的具有延伸结构的微型蛋白质,是构建功能分子的优秀支架。