Saghyan Ashot S, Simonyan Hayarpi M, Petrosyan Satenik G, Geolchanyan Arpine V, Roviello Giovanni N, Musumeci Domenica, Roviello Valentina
Department of Pharmaceutical Chemistry, Yerevan State University, 1 A. Manoogian Str., 0025, Yerevan, Armenia.
Amino Acids. 2014 Oct;46(10):2325-32. doi: 10.1007/s00726-014-1782-3. Epub 2014 Jun 22.
In this work, we report the asymmetric synthesis and characterization of an artificial amino acid based on triazolyl-thione L-alanine, which was modified with a thiophenyl-substituted moiety, as well as in vitro studies of its nucleic acid-binding ability. We found, by dynamic light scattering studies, that the synthetic amino acid was able to form supramolecular aggregates having a hydrodynamic diameter higher than 200 nm. Furthermore, we demonstrated, by UV and CD experiments, that the heteroaromatic amino acid, whose enzymatic stability was demonstrated by HPLC analysis also after 24 h of incubation in human serum, was able to bind a RNA complex, which is a feature of biomedical interest in view of innovative antiviral strategies based on modulation of RNA-RNA molecular recognition.
在本研究中,我们报道了基于三唑基硫酮L-丙氨酸的人工氨基酸的不对称合成与表征,该氨基酸用噻吩基取代部分进行了修饰,以及对其核酸结合能力的体外研究。通过动态光散射研究,我们发现合成氨基酸能够形成流体动力学直径大于200 nm的超分子聚集体。此外,通过紫外和圆二色实验,我们证明了这种杂环芳香族氨基酸在人血清中孵育24小时后通过高效液相色谱分析也显示出酶稳定性,它能够结合RNA复合物,鉴于基于RNA-RNA分子识别调控的创新抗病毒策略,这一特性具有生物医学意义。