Nandi Sukhendu, Malishev Ravit, Bhunia Susanta Kumar, Kolusheva Sofiya, Jopp Jürgen, Jelinek Raz
Department of Chemistry, Ben Gurion University of the Negev, Beer Sheva, Israel.
Ilse Katz Institute for Nanoscale Science & Technology, Ben Gurion University of the Negev, Beer Sheva, Israel.
Biophys J. 2016 May 10;110(9):2016-25. doi: 10.1016/j.bpj.2016.04.005.
Elucidating the dynamic properties of membranes is important for understanding fundamental cellular processes and for shedding light on the interactions of proteins, drugs, and viruses with the cell surface. Dynamic studies of lipid bilayers have been constrained, however, by the relatively small number of pertinent molecular probes and the limited physicochemical properties of the probes. We show that a lipid conjugate comprised of a fluorescent carbon dot (C-dot) covalently attached to a phospholipid constitutes a versatile and effective vehicle for studying bilayer dynamics. The C-dot-modified phospholipids readily incorporated within biomimetic membranes, including solid-supported bilayers and small and giant vesicles, and inserted into actual cellular membranes. We employed the C-dot-phospholipid probe to elucidate the effects of polymyxin-B (a cytolytic peptide), valproic acid (a lipophilic drug), and amyloid-β (a peptide associated with Alzheimer's disease) upon bilayer fluidity and lipid dynamics through the application of various biophysical techniques.
阐明膜的动态特性对于理解基本的细胞过程以及揭示蛋白质、药物和病毒与细胞表面的相互作用至关重要。然而,脂质双层的动态研究受到相关分子探针数量相对较少以及探针有限的物理化学性质的限制。我们表明,一种由共价连接到磷脂的荧光碳点(C-点)组成的脂质共轭物是研究双层动力学的通用且有效的载体。C-点修饰的磷脂很容易掺入仿生膜中,包括固体支持的双层膜以及小泡和大泡,并插入实际的细胞膜中。我们通过应用各种生物物理技术,使用C-点-磷脂探针来阐明多粘菌素B(一种溶细胞肽)、丙戊酸(一种亲脂性药物)和淀粉样β蛋白(一种与阿尔茨海默病相关的肽)对双层流动性和脂质动力学的影响。