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具有可适应电路规格的重组酶逻辑电路设计的计算方法。

Computational Methods for the Design of Recombinase Logic Circuits with Adaptable Circuit Specifications.

机构信息

Centre de Biologie Structurale (CBS), Univ. Montpellier, INSERM U1054, CNRS UMR5048, Montpellier, France.

Department of Biology, University of Washington, Seattle, WA, USA.

出版信息

Methods Mol Biol. 2023;2553:155-171. doi: 10.1007/978-1-0716-2617-7_8.

Abstract

Synthetic biology aims at engineering new biological systems and functions that can be used to provide new technological solutions to worldwide challenges. Detection and processing of multiple signals are crucial for many synthetic biology applications. A variety of logic circuits operating in living cells have been implemented. One particular class of logic circuits uses site-specific recombinases mediating specific DNA inversion or excision. Recombinase logic offers many interesting features, including single-layer architectures, memory, low metabolic footprint, and portability in many species. Here, we present two automated design strategies for both Boolean and history-dependent recombinase-based logic circuits. One approach is based on the distribution of computation within multicellular consortia, and the other is a single-cell design. Both are complementary and adapted for non-expert users via a web design interface, called CALIN and RECOMBINATOR, for multicellular and single-cell design strategies, respectively. In this book chapter, we are guiding the reader step by step through recombinase logic circuit design, from selecting the design strategy fitting to their final system of interest to obtaining the final design using one of our design web interfaces.

摘要

合成生物学旨在设计新的生物系统和功能,用于为全球挑战提供新的技术解决方案。对多种信号的检测和处理对于许多合成生物学应用至关重要。已经实现了多种在活细胞中运行的逻辑电路。一类特殊的逻辑电路使用介导特定 DNA 反转或切除的位点特异性重组酶。重组酶逻辑具有许多有趣的特征,包括单层架构、记忆、低代谢足迹以及在许多物种中的可移植性。在这里,我们提出了两种基于有丝分裂酶和基于有丝分裂酶的逻辑电路的自动设计策略。一种方法基于在多细胞联合体中的计算分布,另一种方法是单细胞设计。这两种方法都是互补的,并通过称为 CALIN 和 RECOMBINATOR 的网页设计界面为非专业用户进行了适配,分别用于多细胞和单细胞设计策略。在这一章中,我们将逐步引导读者完成重组酶逻辑电路设计,从选择适合其最终感兴趣的系统的设计策略到使用我们的设计网页界面之一获得最终设计。

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