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Fluorescence polarized fluorescence and Brewster angle microscopy of palmitic acid and lung surfactant protein B monolayers.

机译:棕榈酸和肺表面活性剂蛋白B单层的荧光偏振荧光和布鲁斯特角显微镜。

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摘要

Fluorescence, polarized fluorescence, and Brewster angle microscopy reveal that human lung surfactant protein SP-B and its amino terminus (SP-B[1-25]) alter the phase behavior of palmitic acid monolayers by inhibiting the formation of condensed phases and creating a new fluid protein-rich phase. This fluid phase forms a network that separates condensed phase domains at coexistence and persists to high surface pressures. The network changes the monolayer collapse mechanism from heterogeneous nucleation/growth and fracturing processes to a more homogeneous process through isolating individual condensed phase domains. This results in higher surface pressures at collapse, and monolayers easier to respread on expansion, factors essential to the in vivo function of lung surfactant. The network is stabilized by a low-line tension between the coexisting phases, as confirmed by the observation of extended linear domains, or "stripe" phases, and a Gouy-Chapman analysis of protein-containing monolayers. Comparison of isotherm data and observed morphologies of monolayers containing SP-B(1-25) with those containing the full SP-B sequence show that the shortened peptide retains most of the native activity of the full-length protein, which may lead to cheaper and more effective synthetic replacement formulations.
机译:荧光,偏振荧光和布儒斯特角显微镜显示人肺表面活性剂蛋白SP-B及其氨基末端(SP-B [1-25])通过抑制缩合相的形成并形成棕榈酸来改变棕榈酸单层的相行为。新的富含流体蛋白质的相。该液相形成一个网络,该网络在共存时将冷凝的相域分开,并持续承受较高的表面压力。该网络通过隔离各个冷凝相域,将单层塌陷机制从异质成核/生长和压裂过程改变为更均匀的过程。这导致塌陷时的表面压力更高,并且单层更容易在扩张时重新扩散,这是肺表面活性剂体内功能必不可少的因素。共存相之间的低线张力使网络稳定,这一点已通过观察延伸的线性域或“条带”相以及对含蛋白质的单层分子进行的Gouy-Chapman分析得到证实。等温线数据和包含SP-B(1-25)的单层与包含完整SP-B序列的单层的形态比较表明,缩短的肽保留了全长蛋白质的大部分天然活性,这可能导致价格便宜以及更有效的合成替代配方。

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