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In vitro synthesis of a Major Facilitator Transporter for specific active transport across Droplet Interface Bilayers

机译:用于在液滴接口双层的特定主动运输的主要促进剂转运蛋白的体外合成

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Nature encapsulates reactions within membrane-bound compartments, affording sequential and spatial control over biochemical reactions. Droplet Interface Bilayers are evolving into a valuable platform to mimic this key biological feature in artificial systems. A major issue is manipulating flow across synthetic bilayers. Droplet Interface Bilayers must be functionalised, with seminal work using membrane-inserting toxins, ion channels and pumps illustrating the potential. Specific transport of biomolecules, and notably transport against a concentration gradient, across these bilayers has yet to be demonstrated. Here, we successfully incorporate the archetypal Major Facilitator Superfamily transporter, lactose permease, into Droplet Interface Bilayers and demonstrate both passive and active, uphill transport. This paves the way for controllable transport of sugars, metabolites and other essential biomolecular substrates of this ubiquitous transporter superfamily in DIB networks. Furthermore, cell-free synthesis of lactose permease during DIB formation also results in active transport across the interface bilayer. This adds a specific disaccharide transporter to the small list of integral membrane proteins that can be synthesised via in vitro transcription/translation for applications of DIB-based artificial cell systems. The introduction of a means to promote specific transport of molecules across Droplet Interface Bilayers against a concentration gradient gives a new facet to droplet networks.
机译:自然将反应包封在膜结合隔室内,得到序贯和空间对生化反应的空间控制。液滴接口双层正在发展成为一种有价值的平台,以模仿人工系统中的这种关键生物特征。一个主要问题是操纵跨合成双层的流动。液滴接口双层必须具有功能化,使用膜插入毒素,离子通道和泵的精通工作。在这些双层横跨这些双层的生物分子的特异性传输,特别是抵抗浓度梯度的运输。在这里,我们成功地将原型主要促进剂超家族转运蛋白,乳糖允许进入液滴接口双层,并展示被动和活跃的上坡运输。这铺设了这种无处不在的转运蛋白超家族在DIB网络中的可控糖,代谢物和其他基本生物分子底物的运输方式。此外,在DIB形成期间,无细胞合成乳糖允许释放,也导致穿过界面双层的主动运输。这将特定的二糖转运蛋白添加到可以通过体外转录/翻译合成的整体膜蛋白的小清单,以用于基于DIB的人造细胞系统的应用。引入促进液滴界面双层的分子特定传输的装置,抵抗浓度梯度,将新的面为液滴网络给出了新的方面。

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