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1.
Chinese Journal of Biotechnology ; (12): 1659-1671, 2020.
Article in Chinese | WPRIM | ID: wpr-826811

ABSTRACT

To construct TeI3c/4c-based and temperature-inducible gene inactivation system (Thermotargetron) and to apply it to gene inactivation of mesophilic bacteria. The subunit of flagellum (fliC) and C4 dicarboxylate orotate:H⁺ symporter (dctA) genes were chosen as targets in the genome of Escherichia coli HMS174 (DE3) strain. According to recognition roles of TeI3c/4c intron, the fliC489a, fliC828s, fliC1038s and dctA2a sites were chosen as target sites. Gene-targeting plasmids were constructed based on pHK-TT1A by using overlap PCR method and transformed into HMS174 cells. An aliquot mid-log phase cultures of the transformants were shocked at 48 °C and plated on LB plate (containing chloramphenicol). Afterwards, gene mutants were screened by using colony PCR and DNA sequencing. After the mutants were obtained, the phenotypes of ΔfliC and ΔdctA gene mutants were characterized by using agar puncture and carbon metabolism experiments. Colony PCR and sequencing results show that TeI3c/4c intron was inserted in the designed sites of fliC and dctA genes. The gene-targeting efficiency of Thermotargetron system was 100%. Phenotype verification experiments of the mutants demonstrated that the cell motility of all ΔfliC mutants was damaged and the malate assimilation ability of ΔdctA mutant was deprived comparing to wild-type HMS174 strain. In our study, a temperature-inducible and high-efficiency gene inactivation system was established for mesophilic bacteria. This system could achieve high efficiency and precise gene inactivation by modulation of the incubation duration of the transformants at 48 °C.

2.
Biomédica (Bogotá) ; 24(supl.1): 165-187, jun. 2004.
Article in Spanish | LILACS | ID: lil-635462

ABSTRACT

El conocimiento derivado del genoma de Mycobacterium tuberculosis, junto con el desarrollo de sofisticados sistemas para la manipulación genética del bacilo, ofrece la mayor promesa para el desarrollo de herramientas nuevas y más eficientes para prevenir y controlar la tuberculosis. Se han desarrollado métodos más eficientes para la inactivación de genes micobacterianos que se han convertido en el pilar de la genómica funcional micobacteriana. La generación de mutantes mediante la inactivación génica, apoyada directa o indirectamente por el desciframiento del genoma micobacteriano, ha permitido la generación de un número significativo de mutantes de M. tuberculosis. En algunos casos, el análisis de estas mutantes ha establecido relaciones entre los productos génicos y sus funciones en la fisiología y la patogenicidad de la micobacteria. En esta revisión se describen los estudios más representativos basados en dichas mutantes.


Gene inactivation in Mycobacterium tuberculosis and its use in tuberculosis control and prevention Availability of the M. tuberculosis genome sequence and the development of sophisticated systems for genetic manipulation of bacilli offer the potential for new and effective tools to prevent and control tuberculosis. Efficient methods to inactivate mycobacterial genes have been developed. These methods have become the cornerstone for the application and development of mycobacterial functional genomics. Specific mutants are generated to establish the role of targetted genes associated with mycobacterial physiology and pathogenesis. Gene inactivation, supported directly or indirectly by the deciphering of the mycobacterial genome, has permitted the generation of large numbers of M. tuberculosis mutants. Analysis of these mutants has (in some cases) established relationships between gene products and their role in mycobacterial physiology and pathogenesis.


Subject(s)
Animals , Humans , Gene Silencing , Mycobacterium tuberculosis/genetics , Tuberculosis/microbiology , Tuberculosis/prevention & control , Genetic Techniques , Genes, Bacterial/physiology , Mutation
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