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首页> 外文期刊>Biophysical Journal >Lipid-protein interactions alter line tensions and domain size distributions in lung surfactant monolayers.
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Lipid-protein interactions alter line tensions and domain size distributions in lung surfactant monolayers.

机译:脂质-蛋白质相互作用改变了肺表面活性剂单层中的线张力和畴尺寸分布。

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摘要

The size distribution of domains in phase-separated lung surfactant monolayers influences monolayer viscoelasticity and compressibility which, in turn, influence monolayer collapse and set the compression at which the minimum surface tension is reached. The surfactant-specific protein SP-B decreases the mean domain size and polydispersity as shown by fluorescence microscopy. From the images, the line tension and dipole density difference are determined by comparing the measured size distributions with a theory derived by minimizing the free energy associated with the domain energy and mixing entropy. We find that SP-B increases the line tension, dipole density difference, and the compressibility modulus at surface pressures up to the squeeze-out pressure. The increase in line tension due to SP-B indicates the protein avoids domain boundaries due to its solubility in the more fluid regions of the film.
机译:相分离的肺表面活性剂单层中畴的尺寸分布影响单层粘弹性和可压缩性,进而影响单层塌陷并设定达到最小表面张力的压缩率。表面活性剂特异性蛋白SP-B降低了平均域大小和多分散性,如荧光显微镜所示。从图像中,通过将测得的尺寸分布与通过最小化与畴能相关的自由能并混合熵得出的理论进行比较,可以确定线张力和偶极密度差。我们发现SP-B在表面压力达到挤出压力时会增加线张力,偶极子密度差和可压缩模量。由于SP-B引起的线张力增加表明该蛋白质避免了结构域边界,这是由于其在薄膜的较易流动的区域中的溶解度。

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