TY - JOUR
T1 - FecA1, a bacterial iron transporter, determines the survival of Helicobacter pylori in the stomach
AU - Tsugawa, Hitoshi
AU - Suzuki, Hidekazu
AU - Matsuzaki, Juntaro
AU - Hirata, Kenro
AU - Hibi, Toshifumi
N1 - Funding Information:
The authors are grateful to Misa Kanekawa for her technical assistance. This work was supported by a Grant-in-Aid for Young Scientists (B) (23790156, to H.T.) and a Grant-in-Aid for Scientific Research B (22300169 to H.S.) from the Japan Society for the Promotion of Science, a grant from the Adaptable and Seamless Technology Transfer Program through Target-Driven R&D (A-STEP) (AS231Z00132G to H.S.) of the Japan Science and Technology Agency, a grant from the Strategic Basis on Research Grounds for Nongovernmental Schools of the Ministry of Education, Culture, Sports, Science, and Technology (to H.S.), a grant from the Smoking Research Foundation (to H.S.), and the Keio Gijuku Academic Development Fund (to H.S.). This work was awarded the Prize for Best Investigator (ICAT award) at the Fifth Inflammation in Alimentary Tract Conference.
PY - 2012/3/15
Y1 - 2012/3/15
N2 - Helicobacter pylori encodes a single iron-cofactored superoxide dismutase (SodB), which is regulated by the ferric uptake regulator (Fur). Ferrous ion (Fe2 +) is necessary for the activation of SodB. The activity of SodB is an important determinant of the capability of H. pylori for long-term colonization of the stomach and of the development of metronidazole (Mtz) resistance of the bacterium. This study is conducted to characterize the Fe 2 +-supply mechanisms for the activation of SodB in H. pylori, which, as mentioned above, is associated with the host-colonization ability and Mtz resistance of H. pylori. In this study, we demonstrate that fecA1, a Fe 3 +-dicitrate transporter homolog, is an essential gene for SodB activation, but not for the biogenic activity of H. pylori. H. pylori with SodB inactivation by fecA1 deletion showed reduced resistance to H2O 2, reduced gastric mucosal-colonization ability in Mongolian gerbils, and also reduced resistance to Mtz. Our experiment demonstrated that FecA1 is an important determinant of the host-colonization ability and Mtz resistance of H. pylori through Fe2 + supply to SodB, suggesting that FecA1 may be a possible target for the development of a novel bactericidal drug.
AB - Helicobacter pylori encodes a single iron-cofactored superoxide dismutase (SodB), which is regulated by the ferric uptake regulator (Fur). Ferrous ion (Fe2 +) is necessary for the activation of SodB. The activity of SodB is an important determinant of the capability of H. pylori for long-term colonization of the stomach and of the development of metronidazole (Mtz) resistance of the bacterium. This study is conducted to characterize the Fe 2 +-supply mechanisms for the activation of SodB in H. pylori, which, as mentioned above, is associated with the host-colonization ability and Mtz resistance of H. pylori. In this study, we demonstrate that fecA1, a Fe 3 +-dicitrate transporter homolog, is an essential gene for SodB activation, but not for the biogenic activity of H. pylori. H. pylori with SodB inactivation by fecA1 deletion showed reduced resistance to H2O 2, reduced gastric mucosal-colonization ability in Mongolian gerbils, and also reduced resistance to Mtz. Our experiment demonstrated that FecA1 is an important determinant of the host-colonization ability and Mtz resistance of H. pylori through Fe2 + supply to SodB, suggesting that FecA1 may be a possible target for the development of a novel bactericidal drug.
KW - Chronic infection
KW - Drug resistance
KW - Free radicals
KW - Host immune response
KW - Iron transporter
KW - Superoxide
KW - Superoxide dismutase
KW - Surface plasmon resonance assay
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U2 - 10.1016/j.freeradbiomed.2011.12.011
DO - 10.1016/j.freeradbiomed.2011.12.011
M3 - Article
C2 - 22245091
AN - SCOPUS:84863397968
SN - 0891-5849
VL - 52
SP - 1003
EP - 1010
JO - Free Radical Biology and Medicine
JF - Free Radical Biology and Medicine
IS - 6
ER -