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化学燃料驱动的主动运输

Chemically Fueled Active Transport.

作者信息

Kriebisch Christine M E, Kriebisch Brigitte A K, Häfner Gregor, Soria-Carrera Héctor, Fei Yanyan, Müller Marcus, Boekhoven Job

机构信息

School of Natural Sciences, Department of Chemistry, Technical University of Munich, Lichtenbergstraße 4, 85748, Garching, Germany.

Institute for Theoretical Physics, Georg-August University, Friedrich-Hund-Platz 1, 37077, Göttingen, Germany.

出版信息

Angew Chem Int Ed Engl. 2025 Jul;64(27):e202500243. doi: 10.1002/anie.202500243. Epub 2025 May 28.

Abstract

Biology uses chemical potential differences from molecules like ATP to drive membrane pumps, transporting molecules across membranes even against concentration gradients. Here, we report a synthetic system that transports small molecules from an aqueous phase (the sender) to an aqueous receiver across a centimeter-sized immiscible solvent at the expense of chemical energy. Molecules with high chemical potential (fuels) in the sender phase transiently activate the transporter molecules, which enter the immiscible solvent and exit on the receiver phase side, thus allowing transport from sender to receiver against a concentration gradient. Importantly, we show this active transport mechanism transports molecules across a hydrophobic barrier without complex pumping machinery. Using a reaction-diffusion model, we identify the critical parameters that determine the efficiency of active transport. Selective transport enables the sorting of a mixture of different molecules. In future work, we will use these design criteria to actively transport molecules across membranes, e.g., of vesicles, at the expense of chemical fuel, thereby mimicking biological processes and enabling the feeding of synthetic cells.

摘要

生物学利用ATP等分子的化学势差来驱动膜泵,即使逆着浓度梯度也能将分子跨膜运输。在此,我们报告了一个合成系统,该系统以化学能为代价,将小分子从水相(发送端)通过一厘米大小的不混溶溶剂运输到水相接收端。发送端相中具有高化学势的分子(燃料)会短暂激活转运分子,转运分子进入不混溶溶剂并在接收端相一侧离开,从而实现逆浓度梯度从发送端到接收端的运输。重要的是,我们证明这种主动运输机制无需复杂的泵送机械就能跨疏水屏障运输分子。通过反应扩散模型,我们确定了决定主动运输效率的关键参数。选择性运输能够对不同分子的混合物进行分选。在未来的工作中,我们将利用这些设计标准,以化学燃料为代价,主动将分子跨膜运输,例如跨囊泡膜运输,从而模拟生物过程并为合成细胞提供养分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/913b/12207377/c44a80fbdc27/ANIE-64-e202500243-g005.jpg

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