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Synthetic Biology: A Bridge between Artificial and Natural Cells

机译:合成生物学:人造细胞与天然细胞之间的桥梁

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摘要

Artificial cells are simple cell-like entities that possess certain properties of natural cells. In general, artificial cells are constructed using three parts: (1) biological membranes that serve as protective barriers, while allowing communication between the cells and the environment; (2) transcription and translation machinery that synthesize proteins based on genetic sequences; and (3) genetic modules that control the dynamics of the whole cell. Artificial cells are minimal and well-defined systems that can be more easily engineered and controlled when compared to natural cells. Artificial cells can be used as biomimetic systems to study and understand natural dynamics of cells with minimal interference from cellular complexity. However, there remain significant gaps between artificial and natural cells. How much information can we encode into artificial cells? What is the minimal number of factors that are necessary to achieve robust functioning of artificial cells? Can artificial cells communicate with their environments efficiently? Can artificial cells replicate, divide or even evolve? Here, we review synthetic biological methods that could shrink the gaps between artificial and natural cells. The closure of these gaps will lead to advancement in synthetic biology, cellular biology and biomedical applications.
机译:人造细胞是具有天然细胞某些特性的简单细胞样实体。通常,人造细胞是由三个部分构成的:(1)充当保护性屏障的生物膜,同时允许细胞与环境之间的通讯; (2)基于遗传序列合成蛋白质的转录和翻译机制; (3)控制整个细胞动力学的遗传模块。人造细胞是最小且定义明确的系统,与天然细胞相比,可以更轻松地进行工程设计和控制。人造细胞可以用作仿生系统,以在不受细胞复杂性干扰的情况下研究和了解细胞的自然动力学。但是,人造细胞和天然细胞之间仍然存在巨大的差距。我们可以将多少信息编码到人造细胞中?实现人造细胞强大功能所需的最少因素是多少?人造细胞可以有效地与其周围环境进行通讯吗?人造细胞可以复制,分裂甚至进化吗?在这里,我们综述了可以缩小人造细胞与天然细胞之间的距离的合成生物学方法。这些差距的缩小将导致合成生物学,细胞生物学和生物医学应用的发展。

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