Karlsruhe Institute of Technology, Institute of Organic Chemistry, Fritz-Haber-Weg 6, 76131 Karlsruhe, Germany.
Karlsruhe Institute of Technology, Institute of Biological Interfaces (IBG-2), POB 3640, 76021 Karlsruhe, Germany.
Biochim Biophys Acta Biomembr. 2017 Dec;1859(12):2505-2515. doi: 10.1016/j.bbamem.2017.09.021. Epub 2017 Sep 27.
For the first time, the photoisomerization of a diarylethene moiety (DAET) in peptide conjugates was used to probe the effects of molecular rigidity/flexibility on the structure and behavior of model peptides bound to lipid membranes. The DAET unit was incorporated into the backbones of linear peptide-based constructs, connecting two amphipathic sequences (derived from the β-stranded peptide (KIGAKI) and/or the α-helical peptide BP100). A β-strand-DAET-α-helix and an α-helix-DAET-α-helix models were synthesized and studied in phospholipid membranes. Light-induced photoisomerization of the linker allowed the generation of two forms of each conjugate, which differed in the conformational mobility of the junction between the α-helical and/or the β-stranded part of these peptidomimetic molecules. A detailed study of their structural, orientational and conformational behavior, both in isotropic solution and in phospholipid model membranes, was carried out using circular dichroism and solid-state F-NMR spectroscopy. The study showed that the rigid and flexible forms of the two conjugates had appreciably different structures only when embedded in an anisotropic lipid environment and only in the gel phase. The influence of the rigidity/flexibility of the studied conjugates on the lipid thermotropic phase transition was also investigated by differential scanning calorimetry. Both models were found to destabilize the lamellar gel phases.
首次利用二芳乙烯部分(DAET)的光致异构化来探测分子刚性/柔性对结合到脂质膜的模型肽的结构和行为的影响。DAET 单元被整合到基于线性肽的构建物的主链中,连接两个两亲序列(源自β-折叠肽(KIGAKI)和/或α-螺旋肽 BP100)。合成并研究了β-折叠-DAET-α-螺旋和α-螺旋-DAET-α-螺旋模型在磷脂膜中。连接物的光诱导光致异构化允许每种缀合物生成两种形式,它们在这些肽模拟分子的α-螺旋和/或β-折叠部分之间的连接的构象迁移性方面有所不同。使用圆二色性和固态 F-NMR 光谱法对它们在各向同性溶液和磷脂模型膜中的结构、取向和构象行为进行了详细研究。研究表明,只有在各向异性脂质环境中和仅在凝胶相中,两种缀合物的刚性和柔性形式才具有明显不同的结构。还通过差示扫描量热法研究了所研究的缀合物的刚性/柔性对脂质热相变的影响。发现这两个模型都使层状凝胶相失稳。