Effects of RelA on key virulence properties of planktonic and biofilm populations of Streptococcus mutans

被引:131
作者
Lemos, JAC [1 ]
Brown, TA [1 ]
Burne, RA [1 ]
机构
[1] Univ Florida, Coll Dent, Dept Oral Biol, Gainesville, FL 32610 USA
关键词
D O I
10.1128/IAI.72.3.1431-1440.2004
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Streptococcus mutans is a biofilm-forming bacterium that is adapted to tolerate rapid and dramatic fluctuations in nutrient availability, carbohydrate source, and pH in its natural environment, the human oral cavity. Dissecting the pathways used to form stable biofilms and to tolerate environmental stress is central to understanding the virulence of this organism. Here, we investigated the role of the S. mutans relA gene, which codes for a guanosine tetraphosphate and guanosine pentaphosphate [(p)ppGpp] synthetase/hydrolase, in biofilm formation and acid tolerance. Two mutants in which relA was insertionally inactivated or replaced by an antibiotic resistance determinant were constructed. Under normal growth and stress conditions, the mutants grew slower than the wild-type strain, although the final yields were similar. The mutants, which were still able to accumulate (p)ppGpp after the induction of a stringent response, showed significant reductions in biofilm formation on microtiter plates or hydroxylapatite disks. There was no difference in the sensitivities to acid killing of the parent and relA strains grown in planktonic cultures. However, when cells were grown in biofilms, the mutants became more acid resistant and could lower the pH through glycolysis faster and to a greater extent than the wild-type strain. Differences in acid resistance were not correlated with increases in F-ATPase activity, although bacterial sugar:phosphotransferase activity was elevated in the mutants. Expression of the luxS gene was increased as much as fivefold in the relA mutants, suggesting a link between AI-2 quorum sensing and the stringent response.
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收藏
页码:1431 / 1440
页数:10
相关论文
共 54 条
[1]   Genome sequence of Streptococcus mutans UA159, a cariogenic dental pathogen [J].
Ajdic, D ;
McShan, WM ;
McLaughlin, RE ;
Savic, G ;
Chang, J ;
Carson, MB ;
Primeaux, C ;
Tian, RY ;
Kenton, S ;
Jia, HG ;
Lin, SP ;
Qian, YD ;
Li, SL ;
Zhu, H ;
Najar, F ;
Lai, HS ;
White, J ;
Roe, BA ;
Ferretti, JJ .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2002, 99 (22) :14434-14439
[2]  
Ausubel F.M., 1987, CURRENT PROTOCOL MOL
[3]   Stress-induced membrane association of the Streptococcus mutans GTP-binding protein, an essential G protein, and investigation of its physiological role by utilizing an antisense RNA strategy [J].
Baev, D ;
England, R ;
Kuramitsu, HK .
INFECTION AND IMMUNITY, 1999, 67 (09) :4510-4516
[4]   The stringent response genes relA and spoT are important for Escherichia coli biofilms under slow-growth conditions [J].
Balzer, GJ ;
McLean, RJC .
CANADIAN JOURNAL OF MICROBIOLOGY, 2002, 48 (07) :675-680
[5]   ADAPTATION OF STREPTOCOCCUS-MUTANS AND ENTEROCOCCUS-HIRAE TO ACID STRESS IN CONTINUOUS CULTURE [J].
BELLI, WA ;
MARQUIS, RE .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1991, 57 (04) :1134-1138
[6]   Bacillus subtilis during feast and famine:: Visualization of the overall regulation of protein synthesis during glucose starvation by proteome analysis [J].
Bernhardt, J ;
Weibezahn, J ;
Scharf, C ;
Hecker, M .
GENOME RESEARCH, 2003, 13 (02) :224-237
[7]   Survival of oral bacteria [J].
Bowden, GHW ;
Hamilton, IR .
CRITICAL REVIEWS IN ORAL BIOLOGY & MEDICINE, 1998, 9 (01) :54-85
[8]   Improved vectors for nisin-controlled expression in gram-positive bacteria [J].
Bryan, EM ;
Bae, T ;
Kleerebezem, H ;
Dunny, GM .
PLASMID, 2000, 44 (02) :183-190
[9]   Oral streptococci ... Products of their environment [J].
Burne, RA .
JOURNAL OF DENTAL RESEARCH, 1998, 77 (03) :445-452
[10]   EXPRESSION, PURIFICATION, AND CHARACTERIZATION OF AN EXO-BETA-D-FRUCTOSIDASE OF STREPTOCOCCUS-MUTANS [J].
BURNE, RA ;
SCHILLING, K ;
BOWEN, WH ;
YASBIN, RE .
JOURNAL OF BACTERIOLOGY, 1987, 169 (10) :4507-4517