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[해외논문] Role of the Nucleoid-Associated Protein H-NS in the Synthesis of Virulence Factors in the Phytopathogenic Bacterium Erwinia chrysanthemi 원문보기

Molecular plant-microbe interactions : MPMI, v.14 no.1, 2001년, pp.10 - 20  

Nasser, William ,  Faelen, Michel ,  Hugouvieux-Cotte-Pattat, Nicole ,  Reverchon, Sylvie

Abstract AI-Helper 아이콘AI-Helper

The ability of the enterobacterium Erwinia chrysanthemi to induce pathogenesis in plant tissue is strongly related to the massive production of plant-cell-wall-degrading enzymes (pectinases, cellulases, and proteases). Additional factors, including flagellar proteins and exopolysaccharides (EPS), a...

참고문헌 (60)

  1. Atlung, Tove, Ingmer, Hanne. H‐NS: a modulator of environmentally regulated gene expression. Molecular microbiology, vol.24, no.1, 7-17.

  2. Ausubel, F. M., Brent, R., Kingston, R. E., Moore, D. D., Seidman, J. G., Smith, J. A., and Struhl, K. 1987. Current Protocols in Molecular biology. Wiley Interscience, New York. 

  3. Microbiol. Rev. Bachmann B. S. 130 54 1990 10.1128/mr.54.2.130-197.1990 

  4. FEMS Microbiol. Lett. Bardonnet N. 243 93 1992 

  5. BARRAS, F. The ?-glucosides metabolism in Erwinia chrysanthemi: Preliminary analysis and comparison to Escherichia coli systems. FEMS microbiology reviews, vol.5, no.1, 143-147.

  6. Barron, A, May, G, Bremer, E, Villarejo, M. Regulation of envelope protein composition during adaptation to osmotic stress in Escherichia coli. Journal of bacteriology, vol.167, no.2, 433-438.

  7. Bauer, David W.. Erwinia chrysanthemi hrpGenesand Their Involvement in Soft Rot Pathogenesisand Elicitation of the Hypersensitive Response. Molecular plant-microbe interactions : MPMI, vol.7, no.5, 573-.

  8. Bertin, Philippe, Benhabiles, Nora, Krin, Evelyne, Laurent‐Winter, Christine, Tendeng, Christian, Turlin, Evelyne, Thomas, Annick, Danchin, Antoine, Brasseur, Robert. The structural and functional organization of H‐NS‐like proteins is evolutionarily conserved in Gram‐negative bacteria. Molecular microbiology, vol.31, no.1, 319-329.

  9. BOURSON, C., FAVEY, S., REVERCHON, S., ROBERT-BAUDOUY, J.. Regulation of the expression of a pelA:: uidA fusion in Erwinia chrysanthemi and demonstration of the synergistic action of plant extract with polygalacturonate on pectate lyase synthesis. The Journal of general microbiology, vol.139, no.1, 1-9.

  10. Castillo, A, Reverchon, S. Characterization of the pecT control region from Erwinia chrysanthemi 3937. Journal of bacteriology, vol.179, no.15, 4909-4918.

  11. Collmer, A, Keen, N T. The Role of Pectic Enzymes in Plant Pathogenesis. Annual review of phytopathology, vol.24, 383-409.

  12. Colonna, B, Casalino, M, Fradiani, P A, Zagaglia, C, Naitza, S, Leoni, L, Prosseda, G, Coppo, A, Ghelardini, P, Nicoletti, M. H-NS regulation of virulence gene expression in enteroinvasive Escherichia coli harboring the virulence plasmid integrated into the host chromosome. Journal of bacteriology, vol.177, no.16, 4703-4712.

  13. Condemine, Guy, Castillo, Arnaud, Passeri, Fabrice, Enard, Corine. The PecT Repressor Coregulates Synthesis of Exopolysaccharides and Virulence Factors in Erwinia chrysanthemi. Molecular plant-microbe interactions : MPMI, vol.12, no.1, 45-52.

  14. Dattananda, C S, Gowrishankar, J. Osmoregulation in Escherichia coli: complementation analysis and gene-protein relationships in the proU locus. Journal of bacteriology, vol.171, no.4, 1915-1922.

  15. Genetics Defez R. 11 97 1981 10.1093/genetics/97.1.11 

  16. Dorman, Charles J, Hinton, Jay C.D, Free, Andrew. Domain organization and oligomerization among H-NS-like nucleoid-associated proteins in bacteria. Trends in microbiology, vol.7, no.3, 124-128.

  17. Hassouni, Mohammed El, Chambost, Jean Pierre, Expert, Dominique, Van Gijsegem, Frederique, Barras, Frederic. The minimal gene set member msrA , encoding peptide methionine sulfoxide reductase, is a virulence determinant of the plant pathogen Erwinia chrysanthemi. Proceedings of the National Academy of Sciences of the United States of America, vol.96, no.3, 887-892.

  18. Enard, C, Diolez, A, Expert, D. Systemic virulence of Erwinia chrysanthemi 3937 requires a functional iron assimilation system. Journal of bacteriology, vol.170, no.6, 2419-2426.

  19. Falconi, Maurizio, Higgins, N. Patrick, Spurio, Roberto, Pon, Cynthia L., Gualerzi, Claudio O.. Expression of the gene encoding the major bacterial nucleoid protein H‐NS is subject to transcriptional auto‐repression. Molecular microbiology, vol.10, no.2, 273-282.

  20. Fleischmann, RD, Adams, MD, White, O, Clayton, RA, Kirkness, EF, Kerlavage, AR, Bult, CJ, Tomb, JF, Dougherty, BA, Merrick, JM, al., et. Whole-genome random sequencing and assembly of Haemophilus influenzae Rd. Science, vol.269, no.5223, 496-512.

  21. Franza, Thierry, Sauvage, Christele, Expert, Dominique. Iron Regulation and Pathogenicity in Erwinia chrysanthemi 3937: Role of the Fur Repressor Protein. Molecular plant-microbe interactions : MPMI, vol.12, no.2, 119-128.

  22. Gill Jr, P R, Warren, G J. An iron-antagonized fungistatic agent that is not required for iron assimilation from a fluorescent rhizosphere pseudomonad. Journal of bacteriology, vol.170, no.1, 163-170.

  23. 10.1002/(SICI)1096-9896(199604)178:4<447::AID-PATH489>3.0.CO;2-N 

  24. 10.1128/9781555818319.ch15 Gottesman, S. 1995. Regulation of capsule synthesis: Modification of a two component paradigm by an accessory unstable protein. Pages 253-262 in: Two-Component Signal Transduction. J. A. Hoch and T. J. Silhavy, eds. American Society for Microbiology, Washington, DC. 

  25. Goyard, Sophie, Bertin, Philippe. Characterization of BpH3, an H‐NS‐like protein in Bordetella pertussis. Molecular microbiology, vol.24, no.4, 815-823.

  26. Harrison, Julia A., Pickard, Derek, Higgins, Christopher F., Khan, Anjam, Chatfield, Stephen N., Ali, Tahir, Dorman, Charles J., Hormaeche, Carlos E., Dougan, Gordon. Role of hns in the virulence phenotype of pathogenic salmonellae. Molecular microbiology, vol.13, no.1, 133-140.

  27. Higgins, C.F., Dorman, C.J., Stirling, D.A., Waddell, L., Booth, I.R., May, G., Bremer, E.. A physiological role for DNA supercoiling in the osmotic regulation of gene expression in S. typhimurium and E. coli. Cell, vol.52, no.4, 569-584.

  28. Hinton, Jay C. D., Santos, Diogenes S., Seirafi, Alexander, Hulton, Christopher S. J., Pavitt, Graham D., Higgins, Christopher F.. Expression and mutational analysis of the nucleoid‐associated protein H‐NS of Salmonella typhimurium. Molecular microbiology, vol.6, no.16, 2327-2337.

  29. Hugouvieux-Cotte-Pattat, Nicole, Condemine, Guy, Nasser, William, Reverchon, Sylvie. REGULATION OF PECTINOLYSIS IN ERWINIA CHRYSANTHEMI. Annual review of microbiology, vol.50, 213-257.

  30. J. Bacteriol. Hugouvieux-Cotte-Pattat N. 248 162 1985 10.1128/jb.162.1.248-255.1985 

  31. Hulton, C.S.J., Seirafi, A., Hinton, J.C.D., Sidebotham, J.M., Waddell, L., Pavitt, G.D., Owen-Hughes, T., Spassky, A., Buc, H., Higgins, C.F.. Histone-like protein H1 (H-NS), DNA supercoiling, and gene expression in bacteria. Cell, vol.63, no.3, 631-642.

  32. James, V., Hugouvieux-Cotte-Pattat, N.. Regulatory systems modulating the transcription of the pectinase genes of Erwinia chrysanthemi are conserved in Escherichia coli. Microbiology, vol.142, no.9, 2613-2619.

  33. La Teana, A, Brandi, A, Falconi, M, Spurio, R, Pon, C L, Gualerzi, C O. Identification of a cold shock transcriptional enhancer of the Escherichia coli gene encoding nucleoid protein H-NS.. Proceedings of the National Academy of Sciences of the United States of America, vol.88, no.23, 10907-10911.

  34. Lejeune, P, Danchin, A. Mutations in the bglY gene increase the frequency of spontaneous deletions in Escherichia coli K-12.. Proceedings of the National Academy of Sciences of the United States of America, vol.87, no.1, 360-363.

  35. López-Solanilla, Emilia, García-Olmedo, Francisco, Rodríguez-Palenzuela, Pablo. Inactivation of the sapA to sapF Locus of Erwinia chrysanthemi Reveals Common Features in Plant and Animal Bacterial Pathogenesis. The Plant cell, vol.10, no.6, 917-924.

  36. J. Biol. Chem. Lucht J. M. 6578 269 1994 10.1016/S0021-9258(17)37411-2 

  37. Maurelli, A T, Sansonetti, P J. Identification of a chromosomal gene controlling temperature-regulated expression of Shigella virulence.. Proceedings of the National Academy of Sciences of the United States of America, vol.85, no.8, 2820-2824.

  38. Miller, J. H. 1972. Experiment in Molecular Genetics. Cold Spring Harbor Laboratory, Cold Spring Harbor, NY, U.S.A. 

  39. Moran, Francis, Nasuno, Seiichi, Starr, Mortimer P.. Extracellular and intracellular polygalacturonic acid trans-eliminases of Erwinia carotovora. Archives of biochemistry and biophysics, vol.123, no.2, 298-306.

  40. J. Bacteriol. Mukherjee A. 3629 180 1998 10.1128/JB.180.14.3629-3634.1998 

  41. Mulholland, Vincent, Hinton, Jay C. D., Sidebotham, Julie, Toth, Ian K., Hyman, Lisabeth J., Perombelon, Michel C. M., Reeves, Philip J., Salmond, George P. C.. A pleiotropic reduced virulence (Rvi) mutant of Erwinia carotovora subspecies atroseptica is defective in flagella assembly proteins that are conserved in plant and animal bacterial pathogens. Molecular microbiology, vol.9, no.2, 343-356.

  42. Nasser, W., Reverchon, S., Condemine, G., Robert-Baudouy, J.. Specific Interactions of Erwinia chrysanthemi KdgR Repressor with Different Operators of Genes Involved in Pectinolysis. Journal of molecular biology, vol.236, no.2, 427-440.

  43. Nasser, William, Robert‐Baudouy, Janine, Reverchon, Sylvie. Antagonistic effect of CRP and KdgR in the transcription control of the Erwinia chrysanthemi pectinolysis genes. Molecular microbiology, vol.26, no.5, 1071-1082.

  44. Nasser, William, Bouillant, Marie Louise, Salmond, George, Reverchon, Sylvie. Characterization of the Erwinia chrysanthemi expI-expR locus directing the synthesis of two N‐acyl‐homoserine lactone signal molecules. Molecular microbiology, vol.29, no.6, 1391-1405.

  45. Nomura, Kinya, Nasser, William, Kawagishi, Hirokazu, Tsuyumu, Shinji. The pir gene of Erwinia chrysanthemi EC16 regulates hyperinduction of pectate lyase virulence genes in response to plant signals. Proceedings of the National Academy of Sciences of the United States of America, vol.95, no.24, 14034-14039.

  46. Praillet, Thierry, Nasser, William, Robert‐Baudouy, Janine, Reverchon, Sylvie. Purification and functional characterization of PecS, a regulator of virulence‐factor synthesis in Erwinia chrysanthemi. Molecular microbiology, vol.20, no.2, 391-402.

  47. Resibois, A., Colet, M., Faelen, M., Schoonejans, E., Toussaint, A.. &phis;EC2, a new generalized transducing phage of Erwinia chrysanthemi. Virology, vol.137, no.1, 102-112.

  48. Reverchon, S, Expert, D, Robert-Baudouy, J, Nasser, W. The cyclic AMP receptor protein is the main activator of pectinolysis genes in Erwinia chrysanthemi. Journal of bacteriology, vol.179, no.11, 3500-3508.

  49. Reverchon, S., Nasser, W., Robert‐Baudouy, J.. Characterization of kdgR, a gene of Erwinia chrysanthemi that regulates pectin degradation. Molecular microbiology, vol.5, no.9, 2203-2216.

  50. Reverchon, Sylvie, Nasser, William, Robert‐Baudouy, Janine. pecS: a locus controlling pectinase, cellulase and blue pigment production in Erwinia chrysanthemi. Molecular microbiology, vol.11, no.6, 1127-1139.

  51. Reverchon, Sylvie, Bouillant, Marie Louise, Salmond, George, Nasser, William. Integration of the quorum‐sensing system in the regulatory networks controlling virulence factor synthesis in Erwinia chrysanthemi. Molecular microbiology, vol.29, no.6, 1407-1418.

  52. J. Bacteriol. Roeder D. L. 51 164 1985 10.1128/jb.164.1.51-56.1985 

  53. Sauvage, Christel. Differential Regulation by Iron ofErwinia chrysanthemiPectate Lyases: Pathogenicity of Iron Transport Regulatory (cbr)Mutants. Molecular plant-microbe interactions : MPMI, vol.7, no.1, 71-.

  54. Schoonejans, E, Expert, D, Toussaint, A. Characterization and virulence properties of Erwinia chrysanthemi lipopolysaccharide-defective, phi EC2-resistant mutants. Journal of bacteriology, vol.169, no.9, 4011-4017.

  55. Sledjeski, D, Gottesman, S. A small RNA acts as an antisilencer of the H-NS-silenced rcsA gene of Escherichia coli.. Proceedings of the National Academy of Sciences of the United States of America, vol.92, no.6, 2003-2007.

  56. Surgey, N, Robert-Baudouy, J, Condemine, G. The Erwinia chrysanthemi pecT gene regulates pectinase gene expression. Journal of bacteriology, vol.178, no.6, 1593-1599.

  57. Appl. Environ. Microbiol. Teather R. M. 777 43 1982 10.1128/aem.43.4.777-780.1982 

  58. Ueguchi, Chiharu, Kakeda, Minoru, Mizuno, Takeshi. Autoregulatory expression of the Escherichia coli hns gene encoding a nucleoid protein: H-NS functions as a repressor of its own transcription. Molecular & general genetics : MGG, vol.236, no.2, 171-178.

  59. Ussery, D.W., Hinton, J.C.D., Jorji, B.J.A.M., Granum, P.E., Seirafi, A., Stephen, R.J., Tupper, A.E., Berridge, G., Sidebotham, J.M., Higgins, C.F.. The chromatin-associated protein H-NS. Biochimie, vol.76, no.10, 968-980.

  60. Zhang, A, Belfort, M. Nucleotide sequence of a newly-identified Escherichia coli gene, stpA, encoding an H-NS-like protein.. Nucleic acids research, vol.20, no.24, 6735-.

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