García-Verdugo Ignacio, Cañadas Olga, Taneva Svetla G, Keough Kevin M W, Casals Cristina
Departamento de Bioquímica y Biología Molecular I and CIBER Enfermedades Respiratorias, Complutense University of Madrid, 28040-Madrid, Spain.
Biophys J. 2007 Nov 15;93(10):3529-40. doi: 10.1529/biophysj.107.109793. Epub 2007 Aug 10.
Due to the inhalation of airborne particles containing bacterial lipopolysaccharide (LPS), these molecules might incorporate into the 1,2-dipalmitoylphosphatidylcholine (DPPC)-rich monolayer and interact with surfactant protein A (SP-A), the major surfactant protein component involved in host defense. In this study, epifluorescence microscopy combined with a surface balance was used to examine the interaction of SP-A with mixed monolayers of DPPC/rough LPS (Re-LPS). Binary monolayers of Re-LPS plus DPPC showed negative deviations from ideal behavior of the mean areas in the films consistent with partial miscibility and attractive interaction between the lipids. This interaction resulted in rearrangement and reduction of the size of DPPC-rich solid domains in DPPC/Re-LPS monolayers. The adsorption of SP-A to these monolayers caused expansion in the lipid molecular areas. SP-A interacted strongly with Re-LPS and promoted the formation of DPPC-rich solid domains. Fluorescently labeled Texas red-SP-A accumulated at the fluid-solid boundary regions and formed networks of interconnected filaments in the fluid phase of DPPC/Re-LPS monolayers in a Ca(2+)-independent manner. These lattice-like structures were also observed when TR-SP-A interacted with lipid A monolayers. These novel results deepen our understanding of the specific interaction of SP-A with the lipid A moiety of bacterial LPS.
由于吸入含有细菌脂多糖(LPS)的空气传播颗粒,这些分子可能会掺入富含1,2 - 二棕榈酰磷脂酰胆碱(DPPC)的单分子层中,并与表面活性蛋白A(SP - A)相互作用,SP - A是参与宿主防御的主要表面活性蛋白成分。在本研究中,采用落射荧光显微镜结合表面天平来检测SP - A与DPPC/粗糙LPS(Re - LPS)混合单分子层的相互作用。Re - LPS与DPPC的二元单分子层在膜中平均面积的理想行为上呈现负偏差,这与脂质之间的部分混溶和吸引相互作用一致。这种相互作用导致DPPC/Re - LPS单分子层中富含DPPC的固体区域发生重排并减小尺寸。SP - A吸附到这些单分子层上会导致脂质分子面积增大。SP - A与Re - LPS强烈相互作用,并促进富含DPPC的固体区域的形成。荧光标记的德克萨斯红 - SP - A在液 - 固边界区域积累,并以不依赖Ca(2+)的方式在DPPC/Re - LPS单分子层的液相中形成相互连接的细丝网络。当TR - SP - A与脂质A单分子层相互作用时也观察到了这些晶格状结构。这些新结果加深了我们对SP - A与细菌LPS的脂质A部分特异性相互作用的理解。