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Surface modification using interfacial assembly of the Streptomyces chaplin proteins

机译:使用链霉菌卓别林蛋白的界面组装进行表面修饰

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The chaplin proteins are instrumental in the formation of reproductive aerial structures by the filamentous bacterium Streptomyces coelicolor. They lower the water surface tension thereby enabling aerial growth. In addition, chaplins provide surface hydrophobicity to the aerial hyphae by assembling on the cell surface into an amphipathic layer of amyloid fibrils. We here show that mixtures of cell wall-extracted chaplins can be used to modify a variety of hydrophilic and hydrophobic surfaces in vitro thereby changing their nature. Assembly on glass leads to a protein coating that makes the surface hydrophobic. Conversely, the assembly of chaplins on hydrophobic surfaces renders them hydrophilic. Furthermore, we show that chaplins can stabilize emulsions of oil into water and have an unprecedented surface activity at high pH. Interestingly, this high surface activity coincides with the interfacial assembly of chaplins into a semi-liquid membrane, as opposed to the rigid membrane formed at neutral pH. This semi-liquid membrane possibly represents a trapped intermediate in the assembly process towards the more rigid amyloidal conformation. Taken together, our data shows that chaplins are suitable candidate proteins for a wide range of biotechnological applications.
机译:卓别林蛋白有助于丝状细菌天蓝色链霉菌(Streptomyces coelicolor)形成生殖空中结构。它们降低了水的表面张力,从而使空中生长。另外,伴侣蛋白通过在细胞表面上组装成淀粉样纤维的两亲性层而向气生菌丝提供表面疏水性。我们在这里表明,细胞壁提取的伴侣蛋白的混合物可用于在体外修饰多种亲水和疏水表面,从而改变其性质。在玻璃上组装会形成蛋白质涂层,使表面疏水。相反,伴侣蛋白在疏水性表面上的组装使其具有亲水性。此外,我们显示出伴侣可以稳定油在水中的乳液,并在高pH值下具有前所未有的表面活性。有趣的是,与在中性pH下形成的刚性膜相反,这种高表面活性与Chaplins界面组装成半液体膜相吻合。这种半液体膜可能代表了组装过程中朝向更坚硬的淀粉样蛋白构象捕获的中间体。综上所述,我们的数据表明,伴侣蛋白是广泛生物技术应用的合适候选蛋白。

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