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通过水杨酸依赖控制回路对沙门氏菌属进行体内基因调控。

In vivo gene regulation in Salmonella spp. by a salicylate-dependent control circuit.

作者信息

Royo José Luis, Becker Pablo Daniel, Camacho Eva María, Cebolla Angel, Link Claudia, Santero Eduardo, Guzmán Carlos Alberto

机构信息

Centro Andaluz de Biología del Desarrollo, Universidad Pablo de Olavide-Consejo Superior de Investigaciones Científicas, Carretera, Utrera, Km 1, E-41013 Sevilla, Spain.

出版信息

Nat Methods. 2007 Nov;4(11):937-42. doi: 10.1038/nmeth1107. Epub 2007 Oct 7.

Abstract

Systems allowing tightly regulated expression of prokaryotic genes in vivo are important for performing functional studies of bacterial genes in host-pathogen interactions and establishing bacteria-based therapies. We integrated a regulatory control circuit activated by acetyl salicylic acid (ASA) in attenuated Salmonella enterica that carries an expression module with a gene of interest under control of the XylS2-dependent Pm promoter. This resulted in 20-150-fold induction ex vivo. The regulatory circuit was also efficiently induced by ASA when the bacteria resided in eukaryotic cells, both in vitro and in vivo. To validate the circuit, we administered Salmonella spp., carrying an expression module encoding the 5-fluorocytosine-converting enzyme cytosine deaminase in the bacterial chromosome or in a plasmid, to mice with tumors. Induction with ASA before 5-fluorocytosine administration resulted in a significant reduction of tumor growth. These results demonstrate the usefulness of the regulatory control circuit to selectively switch on gene expression during bacterial infection.

摘要

能够在体内严格调控原核基因表达的系统,对于在宿主-病原体相互作用中开展细菌基因的功能研究以及建立基于细菌的疗法而言至关重要。我们在减毒肠炎沙门氏菌中整合了一个由乙酰水杨酸(ASA)激活的调控控制回路,该菌株携带一个表达模块,其中目的基因受XylS2依赖性Pm启动子的控制。这在体外实现了20至150倍的诱导。当细菌存在于真核细胞中时,无论是在体外还是体内,该调控回路也能被ASA有效诱导。为了验证该回路,我们给患有肿瘤的小鼠施用了沙门氏菌属,这些沙门氏菌在细菌染色体或质粒中携带一个编码5-氟胞嘧啶转化酶胞嘧啶脱氨酶的表达模块。在施用5-氟胞嘧啶之前用ASA诱导,导致肿瘤生长显著减少。这些结果证明了该调控控制回路在细菌感染期间选择性开启基因表达的有用性。

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