The Melbourne School of Engineering and Bio21 Molecular Science and Biotechnology Institute, The University of Melbourne, Parkville, VIC 3010, Australia.
School of Science, RMIT University, VIC 3001, Australia.
Colloids Surf B Biointerfaces. 2017 Dec 1;160:589-597. doi: 10.1016/j.colsurfb.2017.10.006. Epub 2017 Oct 4.
Chaplin E, or Chp E, is a surface active peptide secreted by Streptomyces coelicolor that adopts different structures depending on solution pH but the effect of these structures on the interfacial properties of Chp E is not known. In experiments paired with simulations, Chp E was found to display pH-dependent interfacial assembly and surface activity. At pH 3.0, Chp E formed an ordered non-amyloidal interfacial film with high surface activity; while at pH 10.0, Chp E self-assembled into a heterogeneous film containing randomly arranged fibrils at the interface that was less surface active compared to the film formed at pH 3.0. In simulations at pH 10.0, Chp E molecules showed a higher propensity for dimerization within the solution phase, lower rate of adsorption to the interface and tighter inter-molecular associations at the interface, consistent with the lower surface activity and smaller interfacial area coverage per molecule measured at this pH compared to at pH 3.0. A model is presented for the role of Chp E in the developmental differentiation of Streptomyces coelicolor, where Chp E contributes to changes in surface tension at low pH and the formation of fibrils on the surface of aerial hyphae at high pH. Our data also suggest Chp E could be a promising surface active agent with functional activity that can be controlled by pH.
查plinE(Chaplin E,简称 Chp E)是一种由链霉菌分泌的表面活性肽,其结构随溶液 pH 值而变化,但这些结构对 Chp E 界面性质的影响尚不清楚。在实验与模拟配对的实验中,发现 Chp E 表现出 pH 依赖性的界面组装和表面活性。在 pH 3.0 时,Chp E 形成具有高表面活性的有序非淀粉样界面膜;而在 pH 10.0 时,Chp E 自组装成含有随机排列的纤维的异质膜,其表面活性比在 pH 3.0 时形成的膜低。在 pH 10.0 的模拟中,Chp E 分子在溶液相中表现出更高的二聚倾向、更低的界面吸附速率和更紧密的分子间相互作用,这与在该 pH 值下测量到的较低表面活性和每个分子的界面面积覆盖率较小相一致。提出了一个 Chp E 在链霉菌发育分化中的作用模型,其中 Chp E 有助于低 pH 值下表面张力的变化以及高 pH 值下气生菌丝表面纤维的形成。我们的数据还表明,Chp E 可能是一种具有功能活性的有前途的表面活性剂,其功能活性可以通过 pH 值进行控制。