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高密度重建功能性水通道到囊泡和平面嵌段共聚物膜中。

High-density reconstitution of functional water channels into vesicular and planar block copolymer membranes.

机构信息

Department of Cell Biology, Harvard Medical School, Boston, Massachusetts 02115, United States.

出版信息

J Am Chem Soc. 2012 Nov 14;134(45):18631-7. doi: 10.1021/ja304721r. Epub 2012 Nov 2.

Abstract

The exquisite selectivity and unique transport properties of membrane proteins can be harnessed for a variety of engineering and biomedical applications if suitable membranes can be produced. Amphiphilic block copolymers (BCPs), developed as stable lipid analogs, form membranes that functionally incorporate membrane proteins and are ideal for such applications. While high protein density and planar membrane morphology are most desirable, BCP-membrane protein aggregates have so far been limited to low protein densities in either vesicular or bilayer morphologies. Here, we used dialysis to reproducibly form planar and vesicular BCP membranes with a high density of reconstituted aquaporin-0 (AQP0) water channels. We show that AQP0 retains its biological activity when incorporated at high density in BCP membranes, and that the morphology of the BCP-protein aggregates can be controlled by adjusting the amount of incorporated AQP0. We also show that BCPs can be used to form two-dimensional crystals of AQP0.

摘要

如果能够制备合适的膜,那么膜蛋白的精细选择性和独特的传输特性可以被用于各种工程和生物医学应用。两亲性嵌段共聚物(BCP)作为稳定的类脂类似物被开发出来,能够形成功能性的包含膜蛋白的膜,非常适合此类应用。虽然高蛋白质密度和平面膜形态是最理想的,但 BCP-膜蛋白聚集体迄今为止仅限于在囊泡或双层形态中以低蛋白质密度存在。在这里,我们使用透析法可重现性地形成具有高浓度重组水通道蛋白-0(AQP0)的平面和囊泡 BCP 膜。我们表明,当 AQP0 以高浓度掺入 BCP 膜中时,它保留其生物活性,并且可以通过调节掺入的 AQP0 的量来控制 BCP-蛋白聚集体的形态。我们还表明,BCP 可用于形成 AQP0 的二维晶体。

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