Kaibara K, Akinari Y, Okamoto K, Uemura Y, Yamamoto S, Kodama H, Kondo M
Department of Chemistry, Faculty of Science, Kyushu University, Fukuoka, Japan.
Biopolymers. 1996 Aug;39(2):189-98. doi: 10.1002/(sici)1097-0282(199608)39:2<189::aid-bip7>3.0.co;2-l.
Ion transport characteristics across a macrocoacervate layer membrane composed of aqueous elastin model polypeptides with a specific repeating pentapeptide sequence, H-(Val-Pro-Gly-Val-Gly)n-Val-OMe (n > or = 40), were investigated. Transmembrane potential responses for NaCl. MgCl2, and CaCl2 concentration-cell systems were measured and examined systematically by comparing with those across a coacervate membrane composed of bovine neck ligamental alpha-elastin. In the case of the NaCl and MgCl2 systems, potential responses across these protein liquid membranes were different noticeably from each other depending upon the molecular structure with and without charged peptide side chains, whereas in the CaCl2 systems the transmembrane potential responses across the noncharged polypentapeptide coacervate membrane were comparable with those across the alpha-elastin coacervate membrane carrying both the positively and negatively charged amino acid residues as an amphoteric ion-exchange membrane. These results indicated that mechanisms of major Ca2+ ion transport are based on the specific and selective interactions with electrically neutral sites of elastin, such as the polypentapeptide backbone chain.
研究了离子通过由具有特定重复五肽序列H-(Val-Pro-Gly-Val-Gly)n-Val-OMe(n≥40)的水性弹性蛋白模型多肽组成的大凝聚层膜的传输特性。测量并系统研究了NaCl、MgCl2和CaCl2浓度电池系统的跨膜电位响应,并与通过由牛颈部韧带α-弹性蛋白组成的凝聚层膜的跨膜电位响应进行了比较。在NaCl和MgCl2系统中,这些蛋白质液膜的电位响应根据有无带电肽侧链的分子结构而明显不同,而在CaCl2系统中,不带电的聚五肽凝聚层膜的跨膜电位响应与作为两性离子交换膜同时携带正电荷和负电荷氨基酸残基的α-弹性蛋白凝聚层膜的跨膜电位响应相当。这些结果表明,主要的Ca2+离子传输机制基于与弹性蛋白电中性位点(如聚五肽主链)的特异性和选择性相互作用。