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报告蛋白在科学中的艺术:过去、现在和未来的应用。

The art of reporter proteins in science: past, present and future applications.

机构信息

Ulsan National Institute of Science and Technology, Korea.

出版信息

BMB Rep. 2010 Jul;43(7):451-60. doi: 10.5483/bmbrep.2010.43.7.451.

Abstract

Starting with the first publication of lacZ gene fusion in 1980, reporter genes have just entered their fourth decade. Initial studies relied on the simple fusion of a promoter or gene with a particular reporter gene of interest. Such constructs were then used to determine the promoter activity under specific conditions or within a given cell or organ. Although this protocol was, and still is, very effective, current research shows a paradigm shift has occurred in the use of reporter systems. With the advent of innovative cloning and synthetic biology techniques and microfluidic/nanodroplet systems, reporter genes and their proteins are now finding themselves used in increasingly intricate and novel applications. For example, researchers have used fluorescent proteins to study biofilm formation and discovered that microchannels develop within the biofilm. Furthermore, there has recently been a "fusion" of art and science; through the construction of genetic circuits and regulatory systems, researchers are using bacteria to "paint" pictures based upon external stimuli. As such, this review will discuss the past and current trends in reporter gene applications as well as some exciting potential applications and models that are being developed based upon these remarkable proteins.

摘要

从 1980 年首次发表 lacZ 基因融合开始,报告基因已经进入了第四个十年。最初的研究依赖于启动子或基因与特定感兴趣的报告基因的简单融合。然后,这些构建体被用于确定在特定条件下或在特定细胞或器官内启动子的活性。尽管该方案过去非常有效,并且现在仍然非常有效,但当前的研究表明,报告系统的使用已经发生了范式转变。随着创新的克隆和合成生物学技术以及微流控/纳滴系统的出现,报告基因及其蛋白质现在正被用于越来越复杂和新颖的应用中。例如,研究人员使用荧光蛋白研究生物膜的形成,发现生物膜内会形成微通道。此外,艺术和科学最近已经“融合”在一起;通过构建遗传电路和调控系统,研究人员正在利用细菌根据外部刺激“绘制”图片。因此,本综述将讨论报告基因应用的过去和当前趋势,以及基于这些出色的蛋白质正在开发的一些令人兴奋的潜在应用和模型。

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