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首页> 外文期刊>Analytical chemistry >Periodic Mesoporous Organosilica as a Multifunctional Nanodevice for Large-Scale Characterization of Membrane Proteins
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Periodic Mesoporous Organosilica as a Multifunctional Nanodevice for Large-Scale Characterization of Membrane Proteins

机译:周期性介孔有机硅作为膜蛋白大规模表征的多功能纳米器件。

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摘要

A versatile protocol has been developed for large-scale characterization of hydrophobic membrane proteins based on the periodic mesoporous organosilica (PMO) acting as both an extractor for hydrophobic substrate capture and a nanoreactor for efficient in situ digestion. With introduction of organic groups in the pore frameworks and the presence of hydrophilic silanol groups on the surface, PMO can be well-dispersed into not only an organic solution to concentrate the dissolved membrane proteins but also an aqueous solution containing enzymes for sequential rapid proteolysis in the nanopores. The unique amphiphilic property of PMO ensures a facile switch in different solutions to realize the processes of substrate dissolution, enrichment, and digestion effectively. Furthermore, this novel PMO-assisted protocol has been successfully applied for identification of complex membrane proteins extracted from mouse liver as proof of general applicability.
机译:基于周期性介孔有机硅(PMO),疏水性膜蛋白的大规模表征已经开发了一种通用协议,该介孔有机硅既充当疏水性底物捕获的提取器,又充当有效原位消化的纳米反应器。通过在孔构架中引入有机基团以及表面上存在亲水性硅烷醇基团,PMO不仅可以很好地分散到有机溶液中以浓缩溶解的膜蛋白,还可以将其分散在含有酶的水溶液中,从而可以在溶液中快速进行蛋白水解。纳米孔。 PMO独特的两亲特性确保了在不同溶液中的便捷切换,从而有效地实现了底物的溶解,富集和消化过程。此外,这种新颖的PMO辅助方案已成功应用于鉴定从小鼠肝脏提取的复杂膜蛋白,作为一般适用性的证明。

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