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真核生物系统拓宽了合成生物学的范围。

Eukaryotic systems broaden the scope of synthetic biology.

机构信息

Department of Systems Biology, Harvard Medical School, Boston, MA 02115, USA.

出版信息

J Cell Biol. 2009 Nov 30;187(5):589-96. doi: 10.1083/jcb.200908138. Epub 2009 Nov 23.

Abstract

Synthetic biology aims to engineer novel cellular functions by assembling well-characterized molecular parts (i.e., nucleic acids and proteins) into biological "devices" that exhibit predictable behavior. Recently, efforts in eukaryotic synthetic biology have sprung from foundational work in bacteria. Designing synthetic circuits to operate reliably in the context of differentiating and morphologically complex cells presents unique challenges and opportunities for progress in the field. This review surveys recent advances in eukaryotic synthetic biology and describes how synthetic systems can be linked to natural cellular processes in order to manipulate cell behavior and to foster new discoveries in cell biology research.

摘要

合成生物学旨在通过将特征明确的分子元件(即核酸和蛋白质)组装成具有可预测行为的生物“器件”来设计新型细胞功能。最近,真核生物合成生物学的研究进展源自于细菌领域的基础研究。在分化和形态复杂的细胞环境中设计可靠的合成回路,为该领域的进展带来了独特的挑战和机遇。本文综述了真核合成生物学的最新进展,并描述了如何将合成系统与天然细胞过程相联系,以操纵细胞行为并促进细胞生物学研究中的新发现。

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