Missirlis Dimitris, Farine Marc, Kastantin Mark, Ananthanarayanan Badriprasad, Neumann Thorsten, Tirrell Matthew
Department of Chemical Engineering and Materials and Materials Research Laboratory, University of California, Santa Barbara, California 93106, and Department of Bioengineering, University of California, Berkeley, California, 94720.
Bioconjug Chem. 2010 Mar 17;21(3):465-75. doi: 10.1021/bc900383m. Epub 2010 Feb 18.
Biofunctional micelles formed via self-assembly of synthetic peptide-lipid conjugates are a class of promising biomaterials with applications in drug delivery and tissue engineering. The micelle building block, termed peptide amphiphile, consists of a lipid-like chain covalently linked through a spacer to a peptide headgroup. Self-assembly results in formation of a hydrophobic core surrounded by a dense shell with multiple, functional peptides. We report here on the effect that different linkers between a palmitic tail and a bioactive peptide (p5314-29) have on headgroup secondary structure. Peptide p5314-29 may act as an inhibitor of the interaction between tumor suppressor p53 and human double minute-2 (hDM2) proteins by binding hDM2 in a partially helical form, leading to the release of p53 and the induction of apoptosis in certain tumors. Circular dichroism and fluorescence spectroscopy data revealed that the extent and type of secondary structure of p5314-29 are controlled through size and hydrogen bond potential of the linker. In addition, the structure of the self-assembled micelles was influenced through linker-dependent altered headgroup interactions. This study provides insight into the mechanisms through which headgroup structuring occurs on peptide amphiphile micelles, with implications on the bioactivity, stability, and morphology of the self-assembled entities.
通过合成肽 - 脂质共轭物自组装形成的生物功能胶束是一类有前景的生物材料,可应用于药物递送和组织工程。胶束构建单元,即肽两亲分子,由通过间隔基共价连接到肽头基的类脂链组成。自组装导致形成一个疏水核心,周围是一个带有多个功能肽的致密外壳。我们在此报告棕榈酸尾巴与生物活性肽(p5314 - 29)之间不同连接子对肽头基二级结构的影响。肽p5314 - 29可以通过以部分螺旋形式结合hDM2来抑制肿瘤抑制因子p53与人双微体 - 2(hDM2)蛋白之间的相互作用,从而导致p53的释放并诱导某些肿瘤细胞凋亡。圆二色光谱和荧光光谱数据表明,p5314 - 29二级结构的程度和类型是通过连接子的大小和氢键潜力来控制的。此外,自组装胶束的结构受到连接子依赖性改变的肽头基相互作用的影响。这项研究深入了解了肽两亲分子胶束上肽头基结构形成的机制,对自组装实体的生物活性、稳定性和形态具有重要意义。