Moriuchi Toshiyuki, Nishiyama Taiki, Nobu Masaki, Hirao Toshikazu
Department of Applied Chemistry, Graduate School of Engineering, Osaka University, Yamada-oka, Suita, Osaka, 565-0871, Japan.
Chemistry. 2017 Sep 18;23(52):12704-12708. doi: 10.1002/chem.201703102. Epub 2017 Aug 11.
Controlling helical chirality and creating protein secondary structures in cyclic/acyclic ferrocene-dipeptide bioorganometallic conjugates were achieved by adjusting the conformational flexibility of the dipeptide chains. In systems reported to date, the helical chirality of a conjugate was determined by the absolute configuration of the adjacent amino acid reside. In contrast, it was possible to induce both M- and P-helical chirality, even when the configuration of the adjacent amino acid was the same. It is particularly interesting to note that M-helical chirality was produced in a cyclic ferrocene-dipeptide conjugate composed of the l-Ala-d-Pro-cystamine-d-Pro-l-Ala dipeptide sequence (1), in which a type II β-turn-like secondary structure was established.
通过调节二肽链的构象灵活性,实现了在环状/非环状二茂铁 - 二肽生物有机金属共轭物中控制螺旋手性并形成蛋白质二级结构。在迄今为止报道的体系中,共轭物的螺旋手性由相邻氨基酸残基的绝对构型决定。相比之下,即使相邻氨基酸的构型相同,也有可能诱导出M型和P型螺旋手性。特别值得注意的是,在由l-Ala-d-Pro-胱胺-d-Pro-l-Ala二肽序列(1)组成的环状二茂铁 - 二肽共轭物中产生了M型螺旋手性,其中形成了II型β-转角样二级结构。