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Thermomechanical Responseof a Representative Porinfor Biomimetics

机译:热力学响应Porin代表用于仿生

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摘要

The thermomechanical response of Omp2a, a representative porin used for the fabrication of smart biomimetic nanomembranes, has been characterized using microcantilever technology and compared with standard proteins. For this purpose, thermally induced transitions involving the conversion of stable trimers to bigger aggregates, local reorganizations based on the strengthening or weakening of intermolecular interactions, and protein denaturation have been detected by the microcantilever resonance frequency and deflection as a function of the temperature. Measurements have been carried out on arrays of 8-microcantilevers functionalized with proteins (Omp2a, lysozyme and bovine serum albumin). To interpret the measured nanofeatures, the response of proteins to temperature has been also examined using other characterization techniques, including real time wide angle X-ray diffraction. Results not only demonstrate the complex behavior of porins, which exhibit multiple local thermal transitions before undergoing denaturation at temperatures higher than 105 °C, but also suggest a posttreatment to controlthe orientation of immobilized Omp2a molecules in functionalized biomimeticnanomembranes and, thus, increase their efficacy in ion transport.
机译:Omp2a(一种用于制造智能仿生纳米膜的代表性孔蛋白)的热机械响应已使用微悬臂梁技术进行了表征,并与标准蛋白质进行了比较。为此,已经通过微悬臂梁共振频率和挠度随温度的变化检测到了热诱导的跃迁,包括稳定的三聚体向更大的聚集体的转化,基于分子间相互作用的增强或减弱的局部重组以及蛋白质变性。已经对用蛋白质(Omp2a,溶菌酶和牛血清白蛋白)功能化的8微悬臂阵列进行了测量。为了解释所测量的纳米特征,还使用其他表征技术(包括实时广角X射线衍射)检查了蛋白质对温度的响应。结果不仅证明了孔蛋白的复杂行为,在高于105°C的温度下变性之前,其表现出多个局部热转变,而且还建议进行后处理以控制功能化仿生中固定化Omp2a分子的取向纳米膜,因此增加了其在离子转运中的功效。

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