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环境中的合成构建体:管理自然与工程生物学之间的相互作用。

Synthetic constructs in/for the environment: managing the interplay between natural and engineered Biology.

机构信息

Biofaction KG, 1160 Vienna, Austria.

出版信息

FEBS Lett. 2012 Jul 16;586(15):2199-206. doi: 10.1016/j.febslet.2012.02.022. Epub 2012 Feb 23.

Abstract

The plausible release of deeply engineered or even entirely synthetic/artificial microorganisms raises the issue of their intentional (e.g. bioremediation) or accidental interaction with the Environment. Containment systems designed in the 1980s-1990s for limiting the spread of genetically engineered bacteria and their recombinant traits are still applicable to contemporary Synthetic Biology constructs. Yet, the ease of DNA synthesis and the uncertainty on how non-natural properties and strains could interplay with the existing biological word poses yet again the challenge of designing safe and efficacious firewalls to curtail possible interactions. Such barriers may include xeno-nucleic acids (XNAs) instead of DNA as information-bearing molecules, rewriting the genetic code to make it non-understandable by the existing gene expression machineries, and/or making growth dependent on xenobiotic chemicals.

摘要

深度工程化甚至完全合成/人工微生物的合理释放引发了其与环境的有意(例如生物修复)或意外相互作用的问题。为限制遗传工程细菌及其重组特性的传播而在 20 世纪 80 年代至 90 年代设计的遏制系统仍然适用于当代合成生物学结构。然而,DNA 合成的容易性以及关于非自然特性和菌株如何与现有生物世界相互作用的不确定性再次提出了设计安全有效的防火墙以限制可能的相互作用的挑战。这些障碍可能包括作为信息载体分子的异核酸(XNA)而不是 DNA,重写遗传密码以使现有基因表达机制无法理解,和/或使生长依赖于异源化学物质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9f2/7164093/3e3b20877162/FEB2-586-2199-g001.jpg

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