Hydrogen peroxide-dependent DNA release and transfer of antibiotic resistance genes in Streptococcus gordonii. 2011

Andreas Itzek, and Lanyan Zheng, and Zhiyun Chen, and Justin Merritt, and Jens Kreth
Department of Microbiology and Immunology, University of Oklahoma Health Sciences Center, Oklahoma City, OK 73104, USA.

Certain oral streptococci produce H(2)O(2) under aerobic growth conditions to inhibit competing species like Streptococcus mutans. Additionally, H(2)O(2) production causes the release of extracellular DNA (eDNA). eDNA can participate in several important functions: biofilm formation and cell-cell aggregation are supported by eDNA, while eDNA can serve as a nutrient and as an antimicrobial agent by chelating essential cations. eDNA contains DNA fragments of a size that has the potential to transfer genomic information. By using Streptococcus gordonii as a model organism for streptococcal H(2)O(2) production, H(2)O(2)-dependent eDNA release was further investigated. Under defined growth conditions, the eDNA release process was shown to be entirely dependent on H(2)O(2). Chromosomal DNA damage seems to be the intrinsic signal for the release, although only actively growing cells were proficient eDNA donors. Interestingly, the process of eDNA production was found to be coupled with the induction of the S. gordonii natural competence system. Consequently, the production of H(2)O(2) triggered the transfer of antibiotic resistance genes. These results suggest that H(2)O(2) is potentially much more than a simple toxic metabolic by-product; rather, its production could serve as an important environmental signal that facilitates species evolution by transfer of genetic information and an increase in the mutation rate.

UI MeSH Term Description Entries
D004269 DNA, Bacterial Deoxyribonucleic acid that makes up the genetic material of bacteria. Bacterial DNA
D004352 Drug Resistance, Microbial The ability of microorganisms, especially bacteria, to resist or to become tolerant to chemotherapeutic agents, antimicrobial agents, or antibiotics. This resistance may be acquired through gene mutation or foreign DNA in transmissible plasmids (R FACTORS). Antibiotic Resistance,Antibiotic Resistance, Microbial,Antimicrobial Resistance, Drug,Antimicrobial Drug Resistance,Antimicrobial Drug Resistances,Antimicrobial Resistances, Drug,Drug Antimicrobial Resistance,Drug Antimicrobial Resistances,Drug Resistances, Microbial,Resistance, Antibiotic,Resistance, Drug Antimicrobial,Resistances, Drug Antimicrobial
D006861 Hydrogen Peroxide A strong oxidizing agent used in aqueous solution as a ripening agent, bleach, and topical anti-infective. It is relatively unstable and solutions deteriorate over time unless stabilized by the addition of acetanilide or similar organic materials. Hydrogen Peroxide (H2O2),Hydroperoxide,Oxydol,Perhydrol,Superoxol,Peroxide, Hydrogen
D000900 Anti-Bacterial Agents Substances that inhibit the growth or reproduction of BACTERIA. Anti-Bacterial Agent,Anti-Bacterial Compound,Anti-Mycobacterial Agent,Antibacterial Agent,Antibiotics,Antimycobacterial Agent,Bacteriocidal Agent,Bacteriocide,Anti-Bacterial Compounds,Anti-Mycobacterial Agents,Antibacterial Agents,Antibiotic,Antimycobacterial Agents,Bacteriocidal Agents,Bacteriocides,Agent, Anti-Bacterial,Agent, Anti-Mycobacterial,Agent, Antibacterial,Agent, Antimycobacterial,Agent, Bacteriocidal,Agents, Anti-Bacterial,Agents, Anti-Mycobacterial,Agents, Antibacterial,Agents, Antimycobacterial,Agents, Bacteriocidal,Anti Bacterial Agent,Anti Bacterial Agents,Anti Bacterial Compound,Anti Bacterial Compounds,Anti Mycobacterial Agent,Anti Mycobacterial Agents,Compound, Anti-Bacterial,Compounds, Anti-Bacterial
D001426 Bacterial Proteins Proteins found in any species of bacterium. Bacterial Gene Products,Bacterial Gene Proteins,Gene Products, Bacterial,Bacterial Gene Product,Bacterial Gene Protein,Bacterial Protein,Gene Product, Bacterial,Gene Protein, Bacterial,Gene Proteins, Bacterial,Protein, Bacterial,Proteins, Bacterial
D054773 Streptococcus gordonii A species of gram-positive, facultatively anaerobic bacteria in the family STREPTOCOCCACEAE. It is a normal inhabitant of the human oral cavity, and causes DENTAL PLAQUE and ENDOCARDITIS. It is being investigated as a vehicle for vaccine delivery.
D022761 Gene Transfer, Horizontal The naturally occurring transmission of genetic information between organisms, related or unrelated, circumventing parent-to-offspring transmission. Horizontal gene transfer may occur via a variety of naturally occurring processes such as GENETIC CONJUGATION; GENETIC TRANSDUCTION; and TRANSFECTION. It may result in a change of the recipient organism's genetic composition (TRANSFORMATION, GENETIC). Gene Transfer, Lateral,Horizontal Gene Transfer,Lateral Gene Transfer,Recombination, Interspecies,Recombination, Interspecific,Gene Transfers, Lateral,Interspecies Recombination,Interspecific Recombination,Lateral Gene Transfers

Related Publications

Andreas Itzek, and Lanyan Zheng, and Zhiyun Chen, and Justin Merritt, and Jens Kreth
October 2009, Journal of bacteriology,
Andreas Itzek, and Lanyan Zheng, and Zhiyun Chen, and Justin Merritt, and Jens Kreth
September 1996, Infection and immunity,
Andreas Itzek, and Lanyan Zheng, and Zhiyun Chen, and Justin Merritt, and Jens Kreth
December 1999, Infection and immunity,
Andreas Itzek, and Lanyan Zheng, and Zhiyun Chen, and Justin Merritt, and Jens Kreth
December 2008, FEMS microbiology ecology,
Andreas Itzek, and Lanyan Zheng, and Zhiyun Chen, and Justin Merritt, and Jens Kreth
December 2014, Microbiology (Reading, England),
Andreas Itzek, and Lanyan Zheng, and Zhiyun Chen, and Justin Merritt, and Jens Kreth
May 2008, Journal of endodontics,
Andreas Itzek, and Lanyan Zheng, and Zhiyun Chen, and Justin Merritt, and Jens Kreth
August 2018, Molecular oral microbiology,
Andreas Itzek, and Lanyan Zheng, and Zhiyun Chen, and Justin Merritt, and Jens Kreth
March 1994, Trends in biotechnology,
Andreas Itzek, and Lanyan Zheng, and Zhiyun Chen, and Justin Merritt, and Jens Kreth
January 2003, Microbial drug resistance (Larchmont, N.Y.),
Andreas Itzek, and Lanyan Zheng, and Zhiyun Chen, and Justin Merritt, and Jens Kreth
March 2008, British journal of pharmacology,
Copied contents to your clipboard!