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Molecular Characteristics and Biological Functions of Surface-Active and Surfactant Proteins
Annual Review of Biochemistry ( IF 16.6 ) Pub Date : 2017-06-27 00:00:00 , DOI: 10.1146/annurev-biochem-061516-044847
Margaret Sunde 1 , Chi L.L. Pham 1 , Ann H. Kwan 2
Affiliation  

Many critical biological processes take place at hydrophobic:hydrophilic interfaces, and a wide range of organisms produce surface-active proteins and peptides that reduce surface and interfacial tension and mediate growth and development at these boundaries. Microorganisms produce both small lipid–associated peptides and amphipathic proteins that allow growth across water:air boundaries, attachment to surfaces, predation, and improved bioavailability of hydrophobic substrates. Higher-order organisms produce surface-active proteins with a wide variety of functions, including the provision of protective foam environments for vulnerable reproductive stages, evaporative cooling, and gas exchange across airway membranes. In general, the biological functions supported by these diverse polypeptides require them to have an amphipathic nature, and this is achieved by a diverse range of molecular structures, with some proteins undergoing significant conformational change or intermolecular association to generate the structures that are surface active.

中文翻译:


表面活性和表面活性蛋白的分子特征和生物学功能

许多关键的生物学过程发生在疏水:亲水界面上,各种各样的生物体会产生表面活性的蛋白质和多肽,从而降低表面和界面张力并介导这些边界处的生长和发育。微生物会产生与脂质相关的小肽和两亲性蛋白质,从而使它们能够在水上生长:空气边界,附着于表面,捕食并提高疏水性底物的生物利用度。高阶生物产生具有多种功能的表面活性蛋白,包括为脆弱的生殖阶段提供保护性泡沫环境,蒸发冷却以及气道膜之间的气体交换。通常,这些多样化多肽所支持的生物学功能要求它们具有两亲性质,

更新日期:2017-06-27
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