Institute of Chemistry and Biochemistry-Organic Chemistry, Freie Universität Berlin, Takustrasse 3, 14195, Berlin, Germany.
Org Biomol Chem. 2010 Mar 21;8(6):1382-6. doi: 10.1039/b917205j. Epub 2010 Jan 12.
Phage display technology has been applied to screen for preferred interaction partners of fluoroalkyl-substituted amino acids from the pool of the 20 canonical amino acids. A parallel, heterodimeric alpha-helical coiled coil was designed such that one peptide strand contained one of three different fluorinated amino acids within the hydrophobic core. The direct interaction partners within the second strand of the dimer were randomized and coiled coil pairing selectivity was used as a parameter to screen for the best binding partners within the peptide library. It was found that despite their different structures, polarities and fluorine contents, the three non-natural amino acids used in this study prefer the same interaction partners as the canonical, hydrophobic amino acids. The same technology can be used to study any kind of non-canonical amino acids. The emerging results will provide the basis not only for a profound understanding of the properties of these building blocks, but also for the de novo design of proteins with superior properties and new functions.
噬菌体展示技术已被应用于从 20 种标准氨基酸库中筛选氟代烷基取代氨基酸的优先相互作用伙伴。设计了一种平行的异二聚体α-螺旋卷曲螺旋,使得一条肽链在疏水性核心中包含三种不同的氟代氨基酸之一。二聚体第二链内的直接相互作用伙伴被随机化,卷曲螺旋配对选择性被用作筛选肽库中最佳结合伙伴的参数。研究发现,尽管这三种非天然氨基酸的结构、极性和氟含量不同,但它们都优先与标准的疏水性氨基酸相互作用。这项技术可用于研究任何类型的非标准氨基酸。新兴的研究结果不仅为深入了解这些构建块的性质提供了基础,也为具有优越性能和新功能的蛋白质的从头设计提供了基础。