观察自下而上合成生物学转录-翻译的挑战。

Q3 Biochemistry, Genetics and Molecular Biology
QRB Discovery Pub Date : 2025-01-03 eCollection Date: 2025-01-01 DOI:10.1017/qrd.2024.27
Vadim G Bogatyr, Gijs J L Wuite
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引用次数: 0

摘要

合成生物学的目标是创造一个可行的合成细胞。然而,要实现这一目标,首先必须深入了解用于构建该细胞的细胞系统,如何在隔室中重建这些系统,以及如何跟踪它们的功能。转录和翻译是两个重要的细胞系统,负责产生RNA,从而产生蛋白质,没有它们,细胞将无法维持自身或履行其功能。本文详细讨论了如何利用重组元件(PURE)系统和细胞裂解液合成蛋白质,在体外重建转录-翻译。此外,它还研究了如何使用现有方法将这些系统封装在guv中。它还评估了近几十年来开发的各种荧光显微镜技术和广泛收集的探针可用于图像转录和翻译的方法。最后,它强调了未来挑战的解决方案,即PURE中两个系统的解耦,并讨论了合成生物学在现代世界的前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Challenges in observing transcription-translation for bottom-up synthetic biology.

Synthetic biology aims to create a viable synthetic cell. However, to achieve this goal, it is essential first to gain a profound understanding of the cellular systems used to build that cell, how to reconstitute those systems in the compartments, and how to track their function. Transcription and translation are two vital cellular systems responsible for the production of RNA and, consequently, proteins, without which the cell would not be able to maintain itself or fulfill its functions. This review discusses in detail how the Protein synthesis Using Recombinant Element (PURE) system and cell lysate are used to reconstitute transcription-translation in vitro. Furthermore, it examines how these systems can be encapsulated in GUVs using the existing methods. It also assesses approaches available to image transcription and translation with a diverse arsenal of fluorescence microscopy techniques and a broad collection of probes developed in recent decades. Finally, it highlights solutions for the challenge ahead, namely the decoupling of the two systems in PURE, and discusses the prospects of synthetic biology in the modern world.

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来源期刊
QRB Discovery
QRB Discovery Biochemistry, Genetics and Molecular Biology-Biophysics
CiteScore
3.60
自引率
0.00%
发文量
18
审稿时长
12 weeks
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