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Cloning and Characterization of the Promoters of Temperate Mycobacteriophage L1

  • Chattopadhyay, Chandrani (Department of Biochemistry, Bose Institute) ;
  • Sau, Subrata (Department of Biochemistry, Bose Institute) ;
  • Mandal, Nitai C. (Department of Biochemistry, Bose Institute)
  • Received : 2003.04.30
  • Accepted : 2003.06.09
  • Published : 2003.11.30

Abstract

Four putative promoters of the temperate mycobacteriophage L1 were cloned by detecting the $\beta$-galactosidase reporter expression in E. coli transformants that carried L1 specific operon-fusion library. All of the four L1 promoters were also found to express differentially in the homologous environment of mycobacteria. Of the four promoters, two were suggested to be the putative early promoters of L1 since they express within 0 to 10 min of the initiation of the lytic growth of L1. One of the putative early promoters showed a relatively better and almost identical activity in both E. coli and M. smegmatis. By a sequence analysis, we suggest that the L1 insert that contained the stronger early promoter possibly carries two convergent E. coli $\sigma^{70}$-like L1 promoters, which are separated from each other by about 300 nucleotides. One of them is the early promoter of L1 as it showed a 100% similarity with the early $P_{left}$ promoter of the homoimmune phage L5. The second promoter, designated P4, was suggested for its appreciable level of reporter activity in the absence of the -10 element of the $P_{left}$ equivalent of L1. By analyzing most of the best characterized mycobacteriophages-specific promoters, including the L1 promoter P4, we suggest that both the -10 and -35 hexamers of the mycobacteriophage promoters are highly conserved and almost similar to the consensus -10 and -35 hexamers of the E. coli $\sigma^{70}$ promoters.

Keywords

References

  1. Barletta, R. G., Kim, D. D., Snapper, S. B., Bloom, B. R. andJacobs, W. R. Jr. (1992) Identification of expression signals ofthe mycobacteriophage Bxb1, L1 and TM4 using theEscherichia-Mycobacterium shuttle plasmids pYUB75 andpYUB76 designed to create translational fusions to the lacZgene. J. Gen. Microbiol. 138, 23-30. https://doi.org/10.1099/00221287-138-1-23
  2. Bashyam, M. D., Kaushal, D., Dasgupta, S. K. and Tyagi, A. K.(1996) A study of the mycobacterial transcriptional apparatus:identification of novel features in promoter elements. J.Bacteriol. 178, 4847-4853.
  3. Bashyam, M. D. and Tyagi, A. K. (1998) Identification andanalysis of “extended 10” promoters from mycobacteria. J.Bacteriol. 180, 2568-2573.
  4. Brondsted, L. and Atlung, T. (1994) Anaerobic regulation of thehydrogenase 1 (hya) operon of Escherichia coli. J. Bacteriol.176, 5423-5428.
  5. Brown, K. L., Sarkis, G. J., Wadsworth, C. and Hatfull, G. F.(1997) Transcriptional silencing by the mycobacteriophage L5repressor. EMBO J. 16, 5914-5921. https://doi.org/10.1093/emboj/16.19.5914
  6. Chaudhuri, B., Sau, S., Datta, H. J. and Mandal, N. C. (1993)Isolation, characterization and mapping of temperature-sensitivemutations in the genes essential for lysogenic andlytic growth of the mycobacteriophage L1. Virology 194, 166-172. https://doi.org/10.1006/viro.1993.1246
  7. Das Gupta, S. K., Bashyam, M. D. and Tyagi, A. K. (1993)Cloning and assessment of mycobacterial promoters by using aplasmid shuttle vector. J. Bacteriol. 175, 5186-5192.
  8. Datta, H. J. and Mandal, N. C. (1998) Identification of an earlypositive regulatory gene of mycobacteriophage L1. J. Gen.Virol. 79, 205-210.
  9. Garcia, M., Pimentel, M. and Moniz-pereira, J. (2002) Expressionof mycobacteriophage Ms6 lysis genes is driven by two ${\sigma}^{70}-like$ promoters and is dependent on a transcription terminationsignal present in the leader RNA. J. Bacteriol. 184, 3034-3043. https://doi.org/10.1128/JB.184.11.3034-3043.2002
  10. Han, K. G., Kim, D. H., Junn, E., Lee, S. S. and Kang, C. (2002)Identification of bacteriophage K11 genomic promoters forK11 RNA polymerase. J. Biochem. Mol. Biol. 35, 637-641. https://doi.org/10.5483/BMBRep.2002.35.6.637
  11. Jain, S. and Hatfull, G. F. (2000) Transcriptional regulation andimmunity in mycobacteriophage Bxb1. Mol. Microbiol. 38,971-985.
  12. Jain, S., Kaushal, D., Das Gupta, S. K. and Tyagi, A. K. (1997)Construction of shuttle vectors for genetic manipulation andmolecular analysis of Mycobacteria. Gene 190, 37-44. https://doi.org/10.1016/S0378-1119(96)00746-9
  13. Kenney, T. J. and Churchward, G. (1996) Genetic analysis of theM. smegmatis rpsL promoter. J. Bacteriol. 178, 3564-3571.
  14. Levin, M. E. and Hatfull, G. F. (1993) Mycobacterium smegmatisRNA Polymerase: DNA supercoiling, action of rifampicin andmechanism of rifampicin resistance. Mol. Microbiol. 8, 277-285. https://doi.org/10.1111/j.1365-2958.1993.tb01572.x
  15. Lewin, B. (1990) Genes IV Lewin, B. (ed.), pp. 225-227, OxfordUniversity Press, New Delhi, India
  16. Miller, J. H. (1992) A short course in Bacterial Genetics Unit 3,Miller, J. H. (ed), pp. 73-74, Cold Spring Harbor LaboratoryPress, New York, USA
  17. Nesbit, C. E., Levin, M. E., Donnelly-Wu, M. K. and Hatfull, G.F. (1995) Transcriptional regulation of repressor synthesis inmycobacteriophage L5. Mol. Microbiol. 17, 1045-1056. https://doi.org/10.1111/j.1365-2958.1995.mmi_17061045.x
  18. Pashley, C. and Stoker, N. G. (2000). Molecular Genetics ofMycobacteria. Chapter 3. Hatfull, G. F. and Jacob, W. R. Jr.(eds.), pp. 55-67, ASM Press, Washington, USA
  19. Ramesh, G. and Gopinathan, K. P. (1995) Cloning andcharacterization of mycobacteriophage I3 promoters. Indian J.Biochem. Biophys. 32, 361-367.
  20. Sambrook, J., Fritsch, E. F. and Maniatis, T. (1989) MolecularCloning: A Laboratory Manual, 2nd ed., Cold Spring HarborLaboratory Press, New York, USA
  21. Snapper, S. B., Lugosi, L., Jekkel, A., Melton, R. E., Kieser, T.,Bloom, Br. and Jacobs, W. R. Jr. (1988) Lysogeny andtransformation in mycobacteria: stable expression of foreigngenes. Proc. Natl. Acad. Sci. USA 85, 6987-6991. https://doi.org/10.1073/pnas.85.18.6987
  22. Strohl, W. R. (1992) Compilation and analysis of DNA sequencesassociated with apparent streptomyccete promoters. NucleicAcids Res. 20, 961-974. https://doi.org/10.1093/nar/20.5.961
  23. Rosenberg, M., Chepelinsky, A. B. and McKenney, K. (1983)Studying promoters and terminators by gene fusion. Science222, 734-739. https://doi.org/10.1126/science.6356355

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