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利用纳米圆盘将膜蛋白递送至原细胞的技术

CRAFTing Delivery of Membrane Proteins into Protocells using Nanodiscs.

作者信息

Stępień Piotr, Świątek Sylwia, Robles Manuel Yamil Yusef, Markiewicz-Mizera Joanna, Balakrishnan Dhanasekaran, Inaba-Inoue Satomi, De Vries Alex H, Beis Konstantinos, Marrink Siewert J, Heddle Jonathan G

机构信息

Malopolska Centre of Biotechnology, Jagiellonian University, Krakow 30-387, Poland.

Postgraduate School of Molecular Medicine, Żwirki i Wigury 61, Warsaw 02-091, Poland.

出版信息

ACS Appl Mater Interfaces. 2023 Nov 28;15(49):56689-701. doi: 10.1021/acsami.3c11894.

Abstract

For the successful generative engineering of functional artificial cells, a convenient and controllable means of delivering membrane proteins into membrane lipid bilayers is necessary. Here we report a delivery system that achieves this by employing membrane protein-carrying nanodiscs and the calcium-dependent fusion of phosphatidylserine lipid membranes. We show that lipid nanodiscs can fuse a transported lipid bilayer with the lipid bilayers of small unilamellar vesicles (SUVs) or giant unilamellar vesicles (GUVs) while avoiding recipient vesicles aggregation. This is triggered by a simple, transient increase in calcium concentration, which results in efficient and rapid fusion in a one-pot reaction. Furthermore, nanodiscs can be loaded with membrane proteins that can be delivered into target SUV or GUV membranes in a detergent-independent fashion while retaining their functionality. Nanodiscs have a proven ability to carry a wide range of membrane proteins, control their oligomeric state, and are highly adaptable. Given this, our approach may be the basis for the development of useful tools that will allow bespoke delivery of membrane proteins to protocells, equipping them with the cell-like ability to exchange material across outer/subcellular membranes.

摘要

为了成功地对功能性人工细胞进行生成工程,需要一种方便且可控的方法将膜蛋白递送至膜脂双层中。在此,我们报告一种递送系统,该系统通过利用携带膜蛋白的纳米盘以及磷脂酰丝氨酸脂质膜的钙依赖性融合来实现这一目标。我们表明,脂质纳米盘可使转运的脂质双层与小单层囊泡(SUV)或大单层囊泡(GUV)的脂质双层融合,同时避免受体囊泡聚集。这由钙浓度的简单短暂升高触发,从而在一锅反应中实现高效快速融合。此外,纳米盘可装载膜蛋白,这些膜蛋白能够以不依赖去污剂的方式递送至靶标SUV或GUV膜中,同时保留其功能。纳米盘已被证明有能力携带多种膜蛋白、控制其寡聚状态,并且具有高度适应性。鉴于此,我们的方法可能是开发有用工具的基础,这些工具将允许向原细胞定制递送膜蛋白,使其具备跨外膜/亚细胞膜交换物质的类细胞能力。

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