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Combinations of fluorescently labeled pulmonary surfactant proteins SP-B and SP-C in phospholipid films.

机译:磷脂薄膜中荧光标记的肺表面活性剂蛋白SP-B和SP-C的组合。

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摘要

Hydrophobic pulmonary surfactant (PS) proteins B (SP-B) and C (SP-C) modulate the surface properties of PS lipids. Epifluorescence microscopy was performed on solvent-spread monolayers of fluorescently labeled porcine SP-B (R-SP-B, labeled with Texas Red) and SP-C (F-SP-C, labeled with fluorescein) in dipalmitoylphosphatidylcholine (DPPC) (at protein concentrations of 10 and 20 wt%, and 10 wt% of both) under conditions of cyclic compression and expansion. Matrix-assisted laser desorption/ionization (MALDI) spectroscopy of R-SP-B and F-SP-C indicated that the proteins were intact and labeled with the appropriate fluorescent probe. The monolayers were compressed and expanded for four cycles at an initial rate of 0.64 A2 x mol(-1) x s(-1) (333 mm2 x s x [-1]) up to a surface pressure pi approximately 65 mN/m, and pi-area per residue (pi-A) isotherms at 22 +/- 1 degrees C were obtained. The monolayers were microscopically observed for the fluorescence emission of the individual proteins present in the film lipid matrix, and their visual features were video recorded for image analysis. The pi-A isotherms of the DPPC/protein monolayers showed characteristic "squeeze out" effects at pi approximately 43 mN/m for R-SP-B and 55 mN/m for F-SP-C, as had previously been observed for monolayers of the native proteins in DPPC. Both proteins associated with the expanded (fluid) phase of DPPC monolayers remained in or associated with the monolayers at high pi (approximately 65 mN/m) and redispersed in the monolayer upon its reexpansion. At comparable pi and area/molecule of the lipid, the proteins reduced the amounts of condensed (gel-like) phase of DPPC monolayers, with F-SP-C having a greater effect on a weight basis than did R-SP-B. In any one of the lipid/protein monolayers the amounts of the DPPC in condensed phase were the same at equivalent pi during compression and expansion and from cycle to cycle. This indicated that only minor loss of components from these systems occurred between compression-expansion cycles. This study indicates that hydrophobic PS proteins associate with the fluid phase of DPPC in films, some proteins remain at high surface pressures in the films, and such lipid-protein films can still attain high pi during compression.
机译:疏水性肺表面活性剂(PS)蛋白B(SP-B)和C(SP-C)调节PS脂质的表面性质。在二棕榈酰磷脂酰胆碱(DPPC)(在在循环压缩和膨胀的条件下,蛋白质浓度为10和20 wt%,以及两者的10 wt%)。 R-SP-B和F-SP-C的基质辅助激光解吸/电离(MALDI)光谱表明蛋白质是完整的,并用适当的荧光探针标记。将单层压缩并以0.64 A2 x mol(-1)xs(-1)(333 mm2 xsx [-1])的初始速率扩展四个周期,直至表面压力pi约为65 mN / m,并且pi获得了在22 +/- 1摄氏度下的每个残基的面积(pi-A)等温线。显微观察单层膜脂基质中存在的单个蛋白质的荧光发射,并记录其视觉特征以进行图像分析。 DPPC /蛋白质单层的pi-A等温线显示出特征性的“挤压”效应,R-SP-B的pi约为43 mN / m,F-SP-C的pi约为55 mN / m,如先前对单层所观察到的DPPC中的天然蛋白质。与DPPC单层的扩展(流体)相相关的两种蛋白质都以高pi(约65 mN / m)保留在单层中或与单层相关,并在其重新扩展后重新分散在单层中。在脂质的pi和面积/分子相当的情况下,蛋白质减少了DPPC单层的凝结(凝胶状)相的量,其中F-SP-C的重量影响大于R-SP-B。在任何脂质/蛋白质单层中,在压缩和膨胀期间以及循环之间,当量pi时,凝结相中DPPC的量均相同。这表明在压缩-扩展循环之间仅发生了来自这些系统的少量组件损失。这项研究表明,疏水性PS蛋白与膜中DPPC的流体相结合,某些蛋白保留在膜中的高表面压力下,并且此类脂蛋白膜在压缩过程中仍可达到较高的pi。

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