Mei Yuxiao, Quan Jiaxin, Gu Yulin, Yang Yuxia, Huang Jinmei, Sun Kunpeng, Li Haibing
National Engineering Research Center for Fine Petrochemical Intermediates, Lanzhou Institute of Chemical Physics, Chinese Academic Sciences, Lanzhou, 730000, P. R. China.
Key Laboratory of Pesticide and Chemical Biology (CCNU), Ministry of Education, College of Chemistry, Central China Normal University, Wuhan, 430079, P. R. China.
ACS Appl Bio Mater. 2020 Feb 17;3(2):1226-1232. doi: 10.1021/acsabm.9b01114. Epub 2020 Jan 23.
Chiral-specific assembly is involved in many biochemical processes, such as DNA hybridization, protein adhesion, and sugar recognition. However, the signals of chiral interaction are usually very weak, and it is difficult to investigate the enantioselective behaviors. Therefore, it is necessary to construct the functional materials to regulate the selective behaviors of protein droplets via weak chiral interaction, which is also significant for the biological process of protein adhesive behaviors and proteinic drug delivery. Here, S- and R-amino alcohol derivative of calix[4]arene enantiomers (R/S-AC4) were synthesized and modified onto Au-surfaces to fabricate the enantiomer's materials and investigate the chiral selective adhesion of protein droplets. Through the experiment of fluorescence titration and molecular docking simulation, bovine serum albumin (BSA) showed the stronger interaction with R-amino alcohol-calix[4]arene than S-amino alcohol-calix[4]arene on the molecular level. Notably, the sliding angle showed that the droplet of BSA selectively adhered to the R-amino alcohol-calix[4]arene-modified surface, while it released rapidly from S-amino alcohol-calix[4]arene-modified surface by virtue of chiral selectivity. This result not only provides an easy and convenient model to regulate the selective adhesion and release of protein from chemical view, but also realizes the signal transduction through the weak chiral interaction.
手性特异性组装参与了许多生物化学过程,如DNA杂交、蛋白质粘附和糖识别。然而,手性相互作用的信号通常非常微弱,难以研究对映选择性行为。因此,有必要构建功能材料,通过弱手性相互作用来调节蛋白质液滴的选择性行为,这对于蛋白质粘附行为和蛋白质药物递送的生物学过程也具有重要意义。在此,合成了杯[4]芳烃对映体的S-和R-氨基醇衍生物(R/S-AC4),并将其修饰在金表面以制备对映体材料,研究蛋白质液滴的手性选择性粘附。通过荧光滴定实验和分子对接模拟,在分子水平上,牛血清白蛋白(BSA)与R-氨基醇-杯[4]芳烃的相互作用比与S-氨基醇-杯[4]芳烃的相互作用更强。值得注意的是,滑动角表明,BSA液滴选择性地粘附在R-氨基醇-杯[4]芳烃修饰的表面,而由于手性选择性,它从S-氨基醇-杯[4]芳烃修饰的表面迅速释放。这一结果不仅从化学角度提供了一个简便的模型来调节蛋白质的选择性粘附和释放,还通过弱手性相互作用实现了信号转导。