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Different protein localizations on the inner and outer leaflet of cell-sized liposomes using cell-free protein synthesis

机译:使用无细胞蛋白质合成的细胞大小脂质体的内部和外侧瓣膜内部和外侧瓣片的不同蛋白质定位

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摘要

Membranes of living cells possess asymmetry. The inner and outer leaflets of the membrane consist of different phospholipid compositions, which are known to affect the function of membrane proteins, and the loss of the asymmetry has been reported to lead to cell apoptosis. In addition, different proteins are found on the inner and outer leaflets of the membrane, and they are essential for various biochemical reactions, including those related to signal transduction and cell morphology. While in vitro lipid bilayer reconstitution with asymmetric phospholipid compositions has been reported, the reconstitution of lipid bilayer where different proteins are localized in the inner and outer leaflet, thereby enables asymmetric protein localizations, has remained difficult. Herein, we developed a simple method to achieve this asymmetry using an in vitro transcription–translation system (IVTT). The method used a benzylguanine (BG) derivative-modified phospholipid, which forms a covalent bond with a snap-tag sequence. We show that purified snap-tagged protein can be localized to the cell-sized liposome surface via an interaction between BG and the snap-tag. We then show that IVTT-synthesized proteins can be located at the lipid membrane and that different proteins can be asymmetrically localized on the outer and inner leaflets of liposomes.
机译:活细胞的膜具有不对称性。膜的内,外小叶由不同的磷脂组合物,其已知影响膜蛋白的功能的,非对称性的丢失已被报道导致细胞凋亡。此外,不同的蛋白在膜的内部和外部小叶发现,并且它们可用于各种生化反应,包括那些与信号转导和细胞形态是必不可少的。而在体外脂质双层不对称磷脂组合物重构已经报道,不同的蛋白质在内部和外部小叶局部脂质双层的重建,从而使非对称蛋白本地化,一直保持困难。在此,我们开发了一种简单的方法来实现使用体外转录翻译系统(IVTT)这种不对称。方法中使用的苄基鸟嘌呤(BG)衍生物修饰磷脂,其形成有卡扣标签序列共价键。我们表明,纯化的卡扣标记的蛋白可以通过BG和卡扣标签之间的相互作用被定位于细胞大小的脂质体表面。然后,我们表明,IVTT合成的蛋白质可位于脂质膜和不同的蛋白质可不对称定位于脂质体的外部和内部的传单。

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