Журнал микробиологии, эпидемиологии и иммунобиологии. 2017; : 115-119
РОЛЬ КВОРУМ-СЕНСИНГ В РЕГУЛЯЦИИ ОБРАЗОВАНИЯ БИОПЛЕНОК ХОЛЕРНЫМИ ВИБРИОНАМИ
https://doi.org/10.36233/0372-9311-2017-1-115-119Аннотация
Список литературы
1. Дуванова О.В., Мишанькин Б.Н., Водопьянов А.С. Некоторые свойства N-ацетил-р-Д-глюкозаминидазы холерного вибриона. Холера и патогенные для человека вибрионы. Материалы проблемной комиссии. Ростов-на-Дону, 2014, 27: 105-108.
2. Мишанькин Б.Н., Шиманюк Н.Я., Водопьянов С.О. Изучение хитинолитического комплекса холерного вибриона сероварианта 0139. Биотехнология. 2010, 1: 32-40.
3. Титова С.В. Взаимоотношения холерных вибрионов с представителями планктона водоемов средних широт в условиях эксперимента: Автореф. дис. канд. мед. наук. Ростов-на-Дону, 2000.
4. Antonova E.S., Hammer В.К. Quorum-sensing autoinducer molecules produced by members of a multispecies biofilm promote horizontal gene transfer to Vibrio cholera. FEMS Microbiol. Lett. 2011, 322(1): 68-76.
5. Fong J.C., Yildiz F.H. Interplay between cAMP-CRP and c-di-G MP signaling in Vibrio chol-erae biofrlm formation. J. Bacteriol. 2008, 190 (20): 6646-6659.
6. Hammer B.K., Bassler B.L. Quorum sensing controls biofilm formation in Vibrio cholera. Mol. Microbiol. 2003, 50 (1): 101-104.
7. Hunt D.E., Gevers D., Vahora N.M. et al. Conservation of the chitin utilization pathway in the Vibrionaceae. Appl. Environ. Microbiol. 2008, 74 (1): 44-51.
8. Liu X., Beyhan S., Lim B. et al. Identification and characterization of a phosphodiesterase that inversely regulates motility and biofilm formation in Vibrio cholera. J. Bacteriol. 2010,192 (18): 4541-4552.
9. Liu Z., Hsiao A., Joelsson A., Zhu J. The transcriptional regulator VqmA increases expression of the quorum-sensing activator HapR in Vibrio cholera. J. Bacteriol. 2006, 188 (7): 2446-2453.
10. Lo Scrudato M., Blokesch M. A transcriptional regulator linking quorum sensing and chitin induction to render Vibrio cholerae naturally transformable. Nucleic Acids Res. 2013; 41(6): 3644-3658.
11. Miller J., Miller M.C., Nielsen A.T. et al. vpsA- and luxO-independent biofilms of Vibrio cholera. FEMS Microbiol. Lett. 2007, 275 (2): 199-206.
12. Nadell C.D., Bassler B.L. A fitness trade-off between local competition and dicpersal in Vibrio cholera biofilms. PNAS USA. 2011, 108 (34): 14181-14185.
13. Ng W.L., Perez L., Cong J. et al. Broad spectrum pro-quorum-sensing molecules as inhibitors of virulence in vibrios. PLoS Pathog. 2012, 8 (6): el002767.
14. Perez L.J., Ng W.L., Marano P. et al. Role of the CAI-1 fatty acid tail in the Vibrio cholerae quorum sensing response. J. Med. Chem. 2012, 55 (22): 9669-9681.
15. Pruzzo C., Vezzulli L., Colwell R.R. Global impact of Vibrio cholerae interactions with chitin. Environ. Microbiol. 2008, 10 (6): 1400-1410.
16. Suckow G., Seitz P., Blokesch M. Quorum sensing contributes to natural transformation of Vibrio cholerae in a species-specific manner. J. Bacteriol. 2011, 193 (18): 4914-4924.
17. Sun F., Zhang Y., Whng L. et al. Molecular characterization of direct target genes and cis-acting consensus recognized by quorum-sensing regulator AphA in Vibrio parahaemolyticus. PLoS One. 2012, 7 (9): 44210.
18. Sun S., Kjelleberg S., McDougald D. Relative contributions ofVibrio polysaccharide and quorum sensing to the resistance of Vibrio cholerae to predation by heterotrophic protists. PLoS One. 2013, 8 (2): e56338.
19. Tsou A.M., Liu Z., Cai T. et al. The VarS/VarA two-component system modulates the activity of the Vibrio cholerae quorum-sensing transcriptional regulator HapR. Microbiology. 2011, 157 (Pt 6): 1620-1628.
20. Waters C.M., Lu W., Rabinowitz J.D. etal. Quorum sensing control biofilm formation in Vibrio cholerae through modulation of cyclic Di-GMP levels and repression of vpsT. J. Bacteriol. 2008, 190 (7): 2527-2536.
21. Wei Y., Ng W.L., Cong J. et al. Ligand and antagonist driven regulation of the Vibrio cholerae quorum-sensing receptor CqsS. Mol. Microbiol. 2012, 83 (6): 1095-1108.
Journal of microbiology, epidemiology and immunobiology. 2017; : 115-119
THE ROLE OF QUORUM-SENSING IN REGULATION OF FORMATION OF BIOFILMS BY VIBRIO CHOLERAE
https://doi.org/10.36233/0372-9311-2017-1-115-119Abstract
References
1. Duvanova O.V., Mishan'kin B.N., Vodop'yanov A.S. Nekotorye svoistva N-atsetil-r-D-glyukozaminidazy kholernogo vibriona. Kholera i patogennye dlya cheloveka vibriony. Materialy problemnoi komissii. Rostov-na-Donu, 2014, 27: 105-108.
2. Mishan'kin B.N., Shimanyuk N.Ya., Vodop'yanov S.O. Izuchenie khitinoliticheskogo kompleksa kholernogo vibriona serovarianta 0139. Biotekhnologiya. 2010, 1: 32-40.
3. Titova S.V. Vzaimootnosheniya kholernykh vibrionov s predstavitelyami planktona vodoemov srednikh shirot v usloviyakh eksperimenta: Avtoref. dis. kand. med. nauk. Rostov-na-Donu, 2000.
4. Antonova E.S., Hammer V.K. Quorum-sensing autoinducer molecules produced by members of a multispecies biofilm promote horizontal gene transfer to Vibrio cholera. FEMS Microbiol. Lett. 2011, 322(1): 68-76.
5. Fong J.C., Yildiz F.H. Interplay between cAMP-CRP and c-di-G MP signaling in Vibrio chol-erae biofrlm formation. J. Bacteriol. 2008, 190 (20): 6646-6659.
6. Hammer B.K., Bassler B.L. Quorum sensing controls biofilm formation in Vibrio cholera. Mol. Microbiol. 2003, 50 (1): 101-104.
7. Hunt D.E., Gevers D., Vahora N.M. et al. Conservation of the chitin utilization pathway in the Vibrionaceae. Appl. Environ. Microbiol. 2008, 74 (1): 44-51.
8. Liu X., Beyhan S., Lim B. et al. Identification and characterization of a phosphodiesterase that inversely regulates motility and biofilm formation in Vibrio cholera. J. Bacteriol. 2010,192 (18): 4541-4552.
9. Liu Z., Hsiao A., Joelsson A., Zhu J. The transcriptional regulator VqmA increases expression of the quorum-sensing activator HapR in Vibrio cholera. J. Bacteriol. 2006, 188 (7): 2446-2453.
10. Lo Scrudato M., Blokesch M. A transcriptional regulator linking quorum sensing and chitin induction to render Vibrio cholerae naturally transformable. Nucleic Acids Res. 2013; 41(6): 3644-3658.
11. Miller J., Miller M.C., Nielsen A.T. et al. vpsA- and luxO-independent biofilms of Vibrio cholera. FEMS Microbiol. Lett. 2007, 275 (2): 199-206.
12. Nadell C.D., Bassler B.L. A fitness trade-off between local competition and dicpersal in Vibrio cholera biofilms. PNAS USA. 2011, 108 (34): 14181-14185.
13. Ng W.L., Perez L., Cong J. et al. Broad spectrum pro-quorum-sensing molecules as inhibitors of virulence in vibrios. PLoS Pathog. 2012, 8 (6): el002767.
14. Perez L.J., Ng W.L., Marano P. et al. Role of the CAI-1 fatty acid tail in the Vibrio cholerae quorum sensing response. J. Med. Chem. 2012, 55 (22): 9669-9681.
15. Pruzzo C., Vezzulli L., Colwell R.R. Global impact of Vibrio cholerae interactions with chitin. Environ. Microbiol. 2008, 10 (6): 1400-1410.
16. Suckow G., Seitz P., Blokesch M. Quorum sensing contributes to natural transformation of Vibrio cholerae in a species-specific manner. J. Bacteriol. 2011, 193 (18): 4914-4924.
17. Sun F., Zhang Y., Whng L. et al. Molecular characterization of direct target genes and cis-acting consensus recognized by quorum-sensing regulator AphA in Vibrio parahaemolyticus. PLoS One. 2012, 7 (9): 44210.
18. Sun S., Kjelleberg S., McDougald D. Relative contributions ofVibrio polysaccharide and quorum sensing to the resistance of Vibrio cholerae to predation by heterotrophic protists. PLoS One. 2013, 8 (2): e56338.
19. Tsou A.M., Liu Z., Cai T. et al. The VarS/VarA two-component system modulates the activity of the Vibrio cholerae quorum-sensing transcriptional regulator HapR. Microbiology. 2011, 157 (Pt 6): 1620-1628.
20. Waters C.M., Lu W., Rabinowitz J.D. etal. Quorum sensing control biofilm formation in Vibrio cholerae through modulation of cyclic Di-GMP levels and repression of vpsT. J. Bacteriol. 2008, 190 (7): 2527-2536.
21. Wei Y., Ng W.L., Cong J. et al. Ligand and antagonist driven regulation of the Vibrio cholerae quorum-sensing receptor CqsS. Mol. Microbiol. 2012, 83 (6): 1095-1108.
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