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利用基因重组作为基因表达的报告手段。

Use of genetic recombination as a reporter of gene expression.

作者信息

Camilli A, Beattie D T, Mekalanos J J

机构信息

Department of Microbiology and Molecular Genetics, Harvard Medical School, Boston, MA 02115.

出版信息

Proc Natl Acad Sci U S A. 1994 Mar 29;91(7):2634-8. doi: 10.1073/pnas.91.7.2634.

Abstract

An understanding of the patterns of gene expression in response to specific environmental signals can yield insight into a variety of complex biological systems such as microbial-host interactions, developmental cycles, cellular differentiation, ontogeny, etc. To extend the utility of the reporter gene fusion approach to such studies, we have constructed a gene expression reporter cassette that permits the generation of transcriptional fusions to tnpR encoding resolvase, a site-specific recombinase of the transposable element gamma delta. Induction of the transcriptional fusions results in production of resolvase, which in turn, catalyzes excision of a linked tetracycline-resistance reporter gene flanked by direct repeats of res, the DNA sequences at which resolvase functions. The loss of tetracycline resistance in descendant bacteria serves as a permanent and heritable marker of prior gene expression. This gene fusion approach will allow us to assay the induction of gene expression in as few as one cell. Additionally, gene expression can be assayed at a later time and/or different place from the inducing environment facilitating the study of gene expression in complex environments such as animal tissues.

摘要

了解基因表达模式对特定环境信号的响应,有助于深入了解各种复杂的生物系统,如微生物与宿主的相互作用、发育周期、细胞分化、个体发育等。为了将报告基因融合方法的应用扩展到此类研究中,我们构建了一个基因表达报告盒,该报告盒允许产生与tnpR编码的解离酶的转录融合,tnpR是转座元件γδ的位点特异性重组酶。转录融合的诱导导致解离酶的产生,而解离酶又催化切除一个与四环素抗性报告基因相连的、两侧带有res直接重复序列的基因,res是解离酶发挥作用的DNA序列。后代细菌中四环素抗性的丧失作为先前基因表达的永久且可遗传的标记。这种基因融合方法将使我们能够在少至一个细胞中检测基因表达的诱导情况。此外,可以在与诱导环境不同的时间和/或地点检测基因表达,这有助于研究复杂环境(如动物组织)中的基因表达。

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