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The pH-dependent assembly of Chaplin E from Streptomyces coelicolor

机译:来自链霉菌的Chaplin E的pH依赖性组装

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Chaplin E, is one of five self-assembling peptides secreted by Streptomyces coelicolor that assist aerial growth by lowering the surface tension of water. Although the surface activity of a mixture of chaplin peptides has observed to depend on pH, it is unclear how the solvent environment (i.e. pH) influences the structure, assembly and subsequent functionality of these individual peptides. In this study, the conformation and fibril forming propensity of the Chaplin E peptide was assessed as a function of pH using a combination of experimental measurements and molecular dynamics simulations. At an acidic pH of 3.0, Chaplin E retained a random coil structure, whereas at the isoelectric point of 6.7 or a basic pH of 10.0, Chaplin E rapidly formed amyloid fibrils rich in p-sheet structure with high efficiency (>93%). Molecular dynamics simulations indicate the persistence of greater a-helical content at the N-terminus at high pH; this is likely partly due to the lack of electrostatic repulsion between residues His6 and Lys10. Since fibril formation was observed at high but not at low pH, we propose that the presence of an N-terminal alpha-helix in the monomeric form of Chaplin E is required for aggregation and conversion to beta-amyloid fibrils. The pH sensitivity of Chaplin E peptide structure provides a route to control peptide assembly and may be important for the physiological function of this peptide, as a surface active agent in the transition from vegetative to aerial growth and could assist Streptomyces coelicolor in response to environmental fluctuations in pH. (C) 2017 Elsevier Inc. All rights reserved.
机译:Chaplin E是通过降低水的表面张力来协助空中生长的链霉菌分泌的五种自组装肽之一。尽管已经观察到卓林肽混合物的表面活性取决于pH,但是目前尚不清楚溶剂环境(pH)如何影响这些个体肽的结构,组装和随后的官能度。在该研究中,使用实验测量和分子动力学模拟的组合评估Chaplin E肽的构象和原纤维形成倾向作为pH的函数。在3.0的酸性pH下,Chaplin E保留了一种随机线圈结构,而在6.7的等电点或碱性pH的基本pH为10.0时,Chaplin E快速形成含有高效率(> 93%)的P-片结构的淀粉样蛋白原纤维。分子动力学模拟表明在高pH下的N-末端的更高且螺旋含量的持久性;这可能部分是由于残留物与Lys10之间的静电排斥。由于在高但不在低pH下观察到原纤维形成,因此我们提出了在β-淀粉样蛋白原纤维中的聚集和转化中的单体形式的Chaplin E中N-末端α-螺旋的存在。 Chaplin E肽结构的pH敏感性提供了一种用于控制肽组件的途径,并且对于这种肽的生理功能可能是重要的,作为从营养生长的过渡过程中的表面活性剂,并且可以帮助响应环境波动的链霉菌在pH。 (c)2017年Elsevier Inc.保留所有权利。

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