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一种用于鱼类胚胎发育过程中热诱导错误表达的人工启动子构建体。

An artificial promoter construct for heat-inducible misexpression during fish embryogenesis.

作者信息

Bajoghli Baubak, Aghaallaei Narges, Heimbucher Thomas, Czerny Thomas

机构信息

Institute of Animal Breeding and Genetics, University of Veterinary Medicine, Vienna, Austria.

出版信息

Dev Biol. 2004 Jul 15;271(2):416-30. doi: 10.1016/j.ydbio.2004.04.006.

Abstract

Beside spatial distribution, timing of gene expression is a key parameter controlling gene function during embryonic development. Gain-of-function experiments can therefore have quite opposing results, depending on the time of gene activation. Induction techniques are necessary to control timing in these experiments from outside of the organism. Natural heat shock promoters constitute a simple inducible misexpression system, the main disadvantage is a high background level of expression. We present here a new heat stress-inducible bidirectional promoter consisting of multimerized heat shock elements (HSE). The simplified architecture of this promoter largely improves the properties needed for an efficient induction system: dramatically reduced background activity, improved inducibility, and loss of all tissue specific components. Based on this new artificial promoter, we present a transient induction system for fish embryos. Application of this new induction system for Fgf8 misexpression during embryonic development reveals different windows of competence during eye development. A dramatic early phenotype resulting in loss of the eyes is observed for conventional mRNA injection. Later activation, by using our inducible promoter, uncovers different eye phenotypes like cyclopic eyes. Even after 14 days, an efficient heat stress response could be evoked in the injected embryos. The HSE promoter therefore represents a new artificial heat shock promoter with superior properties, making possible transient experiments with inducible misexpression at various stages of development.

摘要

除了空间分布外,基因表达的时间也是胚胎发育过程中控制基因功能的关键参数。因此,功能获得实验可能会产生截然不同的结果,这取决于基因激活的时间。在这些实验中,需要诱导技术从生物体外部控制时间。天然热休克启动子构成了一个简单的可诱导错误表达系统,其主要缺点是表达的背景水平较高。我们在此展示一种新的热应激诱导双向启动子,它由多聚化的热休克元件(HSE)组成。该启动子简化的结构极大地改善了高效诱导系统所需的特性:显著降低背景活性、提高诱导性以及消除所有组织特异性成分。基于这种新的人工启动子,我们展示了一种用于鱼类胚胎的瞬时诱导系统。在胚胎发育过程中,将这种新的诱导系统应用于Fgf8的错误表达,揭示了眼睛发育过程中不同的感受态窗口。对于传统的mRNA注射,观察到一种导致眼睛缺失的显著早期表型。通过使用我们的诱导型启动子进行后期激活,发现了不同的眼睛表型,如独眼。即使在14天后,仍能在注射的胚胎中引发有效的热应激反应。因此,HSE启动子代表了一种具有卓越特性的新型人工热休克启动子,使得在发育的各个阶段进行可诱导错误表达的瞬时实验成为可能。

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