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首页> 外文期刊>European Biophysics Journal >Arginine-,D-arginine-vasopressin, and their inverso analogues in micellar and liposomic models of cell membrane: CD, NMR, and molecular dynamics studies
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Arginine-,D-arginine-vasopressin, and their inverso analogues in micellar and liposomic models of cell membrane: CD, NMR, and molecular dynamics studies

机译:细胞膜的胶束和脂质体模型中的精氨酸,D-精氨酸-加压素及其逆式类似物:CD,NMR和分子动力学研究

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摘要

We describe the synthesis, pharmacological properties, and structures of antidiuretic agonists, arginine vasopressin (AVP) and [d-Arg(8)]-vasopressin (DAVP), and their inverso analogues. The structures of the peptides are studied based on micellar and liposomic models of cell membranes using CD spectroscopy. Additionally, three-dimensional structures in mixed anionic-zwitterionic micelles are obtained using NMR spectroscopy and molecular dynamics simulations. NMR data have shown that AVP and DAVP tend to adopt typical of vasopressin-like peptides beta-turns: in the 2-5 and 3-6 fragments. The inverso-analogues also adopt beta-turns in the 3-6 fragments. For this reason, their inactivity seems to be due to the difference in side chains orientations of Tyr(2), Phe(3), and Arg(8), important for interactions with the receptors. Again, the potent antidiuretic activity of DAVP can be explained by CD data suggesting differences in mutual arrangement of the aromatic side chains of Tyr(2) and Phe(3) in this peptide in liposomes rather than of native AVP. In the presence of liposomes, the smallest conformational changes of the peptides are noticed with DPPC and the largest with DPPG liposomes. This suggests that electrostatic interactions are crucial for the peptide-membrane interactions. We obtained similar, probably active, conformations of the antidiuretic agonists in the mixed DPC/SDS micelles (5:1) and in the mixed DPPC/DPPG (7:3) liposomes. Thus it can be speculated that the anionic-zwitterionic liposomes as well as the anionic-zwitterionic micelles, mimicking the eukaryotic cell membrane environment, partially restrict conformational freedom of the peptides and probably induce conformations resembling those of biologically relevant ones.
机译:我们描述了抗利尿剂激动剂,精氨酸加压素(AVP)和[d-Arg(8)]-加压素(DAVP)及其逆类似物的合成,药理特性和结构。基于细胞膜的胶束和脂质体模型,使用CD光谱学研究了肽的结构。此外,使用NMR光谱和分子动力学模拟可得到混合的阴离子-两性离子胶束中的三维结构。 NMR数据表明,AVP和DAVP倾向于采用典型的血管加压素样肽的β-转角:在2-5和3-6片段中。逆向类似物在3-6片段中也采用beta转换。因此,它们的无活性似乎是由于Tyr(2),Phe(3)和Arg(8)的侧链方向不同,这对与受体的相互作用很重要。再次,DAVP的强抗利尿活性可以通过CD数据解释,该数据表明脂质体中该肽而不是天然AVP中Tyr(2)和Phe(3)芳香侧链的相互排列存在差异。在脂质体存在下,肽的构象变化在DPPC中最明显,而在DPPG脂质体中最大。这表明静电相互作用对于肽-膜相互作用至关重要。我们在混合的DPC / SDS胶束(5:1)和混合的DPPC / DPPG(7:3)脂质体中获得了类似的,可能具有活性的抗利尿激动剂构象。因此,可以推测,模仿真核细胞膜环境的阴离子-两性离子脂质体以及阴离子-两性离子胶束,部分地限制了肽的构象自由并且可能诱导类似于生物学相关的构象。

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