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首页> 外文期刊>Angewandte Chemie >Spontaneous Reconstitution of Functional Transmembrane Proteins During Bioorthogonal Phospholipid Membrane Synthesis
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Spontaneous Reconstitution of Functional Transmembrane Proteins During Bioorthogonal Phospholipid Membrane Synthesis

机译:生物正交磷脂膜合成过程中功能性跨膜蛋白的自发重建。

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Transmembrane proteins are critical for signaling, transport, and metabolism, yet their reconstitution in synthetic membranes is often challenging. Non-enzymatic and chemo-selective methods to generate phospholipid membranes in situ would be powerful tools for the incorporation of membrane proteins. Herein, the spontaneous reconstitution of functional integral membrane proteins during the de novo synthesis of biomimetic phospholipid bilayers is described. The approach takes advantage of bioorthogonal coupling reactions to generate proteoliposomes from micelle-solubilized proteins. This method was successfully used to reconstitute three different transmembrane proteins into synthetic membranes. This is the first example of the use of non-enzymatic chemical synthesis of phospholipids to prepare proteoliposomes.
机译:跨膜蛋白对于信号转导,转运和代谢至关重要,但是它们在合成膜中的重构通常具有挑战性。非酶促和化学选择性方法原位产生磷脂膜将是整合膜蛋白的有力工具。在此,描述了在仿生磷脂双层的从头合成期间功能性整合膜蛋白的自发重构。该方法利用生物正交偶联反应从胶束增溶的蛋白质产生蛋白脂质体。该方法已成功用于将三种不同的跨膜蛋白重构为合成膜。这是使用非酶促化学合成磷脂制备蛋白脂质体的第一个例子。

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