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人工形态发生因子介导的合成原细胞分化。

Artificial morphogen-mediated differentiation in synthetic protocells.

机构信息

Centre for Protolife Research and Centre for Organized Matter Chemistry, School of Chemistry, University of Bristol, Bristol, BS8 1TS, UK.

Faculty of Engineering, Queens Building, University of Bristol, Bristol, BS8 1TR, UK.

出版信息

Nat Commun. 2019 Jul 25;10(1):3321. doi: 10.1038/s41467-019-11316-4.

Abstract

The design and assembly of artificial protocell consortia displaying dynamical behaviours and systems-based properties are emerging challenges in bottom-up synthetic biology. Cellular processes such as morphogenesis and differentiation rely in part on reaction-diffusion gradients, and the ability to mimic rudimentary aspects of these non-equilibrium processes in communities of artificial cells could provide a step to life-like systems capable of complex spatiotemporal transformations. Here we expose acoustically formed arrays of initially identical coacervate micro-droplets to uni-directional or counter-directional reaction-diffusion gradients of artificial morphogens to induce morphological differentiation and spatial patterning in single populations of model protocells. Dynamic reconfiguration of the droplets in the morphogen gradients produces a diversity of membrane-bounded vesicles that are spontaneously segregated into multimodal populations with differentiated enzyme activities. Our results highlight the opportunities for constructing protocell arrays with graded structure and functionality and provide a step towards the development of artificial cell platforms capable of multiple operations.

摘要

人工原细胞联合体的设计和组装展示出动态行为和基于系统的特性,这是自下而上的合成生物学中新兴的挑战。细胞过程,如形态发生和分化,部分依赖于反应扩散梯度,并且能够在人工细胞群落中模拟这些非平衡过程的基本方面,可以为具有复杂时空转换能力的类生命系统提供一个步骤。在这里,我们将最初相同的凝聚微滴的声控形成阵列暴露于人工形态发生素的单向或反向反应扩散梯度中,以诱导模型原细胞单种群中的形态分化和空间模式形成。在形态发生素梯度中,液滴的动态重新配置产生了多种膜结合囊泡,这些囊泡自发地分离成具有分化酶活性的多模态群体。我们的结果强调了构建具有梯度结构和功能的原细胞阵列的机会,并为开发能够进行多种操作的人工细胞平台提供了一个步骤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/02e7/6658542/5cd156ebee60/41467_2019_11316_Fig1_HTML.jpg

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