Menon Govind, Krishnan J
Department of Chemical Engineering, Centre for Process Systems Engineering , Imperial College London , London SW72AZ , United Kingdom.
Institute for Systems and Synthetic Biology , Imperial College London , London SW72AZ , United Kingdom.
ACS Synth Biol. 2019 Jul 19;8(7):1601-1619. doi: 10.1021/acssynbio.8b00522. Epub 2019 Jul 1.
Compartmentalization is a hallmark of cellular systems and an ingredient actively exploited in evolution. It is also being engineered and exploited in synthetic biology, in multiple ways. While these have demonstrated important experimental capabilities, understanding design principles underpinning compartmentalization of genetic circuits has been elusive. We develop a systems framework to elucidate the interplay between the nature of the genetic circuit, the spatial organization of compartments, and their operational state (well-mixed or otherwise). In so doing, we reveal a number of unexpected features associated with compartmentalizing synthetic and template-based circuits. These include (i) the consequences of distributing circuits including trade-offs and how they may be circumvented, (ii) hidden constraints in realizing a distributed circuit, and (iii) appealing new features of compartmentalized circuits. We build on this to examine exemplar applications, which consolidate and extend the design principles we have obtained. Our insights, which emerge from the most basic and general considerations of compartmentalizing genetic circuits, are relevant in a broad range of settings.
区室化是细胞系统的一个标志,也是进化过程中积极利用的一个要素。它也正在合成生物学中以多种方式被设计和利用。虽然这些已经展示出了重要的实验能力,但理解支撑基因回路区室化的设计原则一直难以捉摸。我们开发了一个系统框架,以阐明基因回路的性质、区室的空间组织及其运行状态(充分混合或其他状态)之间的相互作用。通过这样做,我们揭示了与合成和基于模板的回路区室化相关的一些意想不到的特征。这些特征包括:(i)分布回路的后果,包括权衡以及如何规避这些权衡;(ii)实现分布式回路时的隐藏约束;(iii)区室化回路吸引人的新特征。在此基础上,我们研究了一些示例应用,这些应用巩固并扩展了我们获得的设计原则。我们从对基因回路区室化最基本和普遍的考虑中得出的见解,在广泛的背景下都具有相关性。