Department of Analytical Chemistry, Institute of Chemical Technology, 16628 Prague 6, Czech Republic.
Anal Biochem. 2012 Aug 15;427(2):211-8. doi: 10.1016/j.ab.2012.03.023. Epub 2012 Apr 4.
In this article, we describe the mutual structural effect of the interaction between the model membranes and polylysine and poly-l-arginine. Vibrational circular dichroism (VCD), a method exceptionally sensitive to the polypeptide structure that has not been established in such studies before, was the primary method of this study. A complementary technique, electronic circular dichroism, was applied to verify the newly obtained results and as a bridge to the previous studies. We used micelles composed of sodium dodecyl sulfate (SDS) as a monolayer membrane model and large unilamellar vesicles composed of phospholipids as a bilayer membrane model. We describe the conformational changes of the polypeptides caused by the interaction with the model membranes. Among others, the presence of the liposomes in the solution generated special conditions for the formation of the α-helical structure of poly-l-arginine; the presence of SDS induced the formation of the β-structure of polylysine. From a methodological point of view, we emphasize the advantages of infrared spectroscopic techniques for the liposomic membrane studies as well as the preference of ultraviolet techniques for smaller micellar systems.
在本文中,我们描述了模型膜与聚赖氨酸和聚精氨酸之间相互作用的相互结构效应。振动圆二色性(VCD)是一种对多肽结构异常敏感的方法,但在此之前尚未在这些研究中建立,这是本研究的主要方法。一种互补技术,电子圆二色性,被应用于验证新获得的结果,并作为与以前研究的桥梁。我们使用由十二烷基硫酸钠(SDS)组成的胶束作为单层膜模型,以及由磷脂组成的大单室囊泡作为双层膜模型。我们描述了多肽与模型膜相互作用引起的构象变化。在其他方面,溶液中脂质体的存在为聚精氨酸形成α-螺旋结构生成了特殊条件;SDS 的存在诱导了聚赖氨酸β-结构的形成。从方法学的角度来看,我们强调了红外光谱技术在脂质体膜研究中的优势,以及紫外技术在较小的胶束系统中的偏好。