Previous Article | Next Article 
Journal of Bacteriology, April 2007, p. 3306-3311, Vol. 189, No. 8
0021-9193/07/$08.00+0 doi:10.1128/JB.00018-07
Copyright © 2007, American Society for Microbiology. All Rights Reserved.
Role of DNA Repair by Nonhomologous-End Joining in Bacillus subtilis Spore Resistance to Extreme Dryness, Mono- and Polychromatic UV, and Ionizing Radiation
Ralf Moeller,1,2
Erko Stackebrandt,2
Günther Reitz,1
Thomas Berger,1
Petra Rettberg,1
Aidan J. Doherty,3
Gerda Horneck,1 and
Wayne L. Nicholson4*
German Aerospace Center, Institute of Aerospace Medicine, Radiation Biology Division, Research Group Photo- and Exobiology, Cologne, Germany,1
German Collection of Microorganisms and Cell Cultures GmbH, Braunschweig, Germany,2
Genome Damage and Stability Centre, University of Sussex, Brighton BN1 9RQ, United Kingdom,3
Department of Microbiology and Cell Science, University of Florida, Kennedy Space Center, Florida 328994
Received 4 January 2007/
Accepted 5 February 2007
The role of DNA repair by nonhomologous-end joining (NHEJ) in spore resistance to UV, ionizing radiation, and ultrahigh vacuum was studied in wild-type and DNA repair mutants (recA, splB, ykoU, ykoV, and ykoU ykoV mutants) of Bacillus subtilis. NHEJ-defective spores with mutations in ykoU, ykoV, and ykoU ykoV were significantly more sensitive to UV, ionizing radiation, and ultrahigh vacuum than wild-type spores, indicating that NHEJ provides an important pathway during spore germination for repair of DNA double-strand breaks.
* Corresponding author. Mailing address: Rm. 201-B, Space Life Sciences Laboratory, Building M6-1025/SLSL, Kennedy Space Center, FL 32953. Phone: (321) 861-3487. Fax: (321) 861-2925. E-mail:
WLN{at}ufl.edu
Published ahead of print on 9 February 2007.
Journal of Bacteriology, April 2007, p. 3306-3311, Vol. 189, No. 8
0021-9193/07/$08.00+0 doi:10.1128/JB.00018-07
Copyright © 2007, American Society for Microbiology. All Rights Reserved.
This article has been cited by other articles:
-
Moeller, R., Setlow, P., Reitz, G., Nicholson, W. L.
(2009). Roles of Small, Acid-Soluble Spore Proteins and Core Water Content in Survival of Bacillus subtilis Spores Exposed to Environmental Solar UV Radiation. Appl. Environ. Microbiol.
75: 5202-5208
[Abstract]
[Full Text]
-
Chen, I-C., Lin, W.-D., Hsu, S.-K., Thiruvengadam, V., Hsu, W.-H.
(2009). Isolation and Characterization of a Novel Lysine Racemase from a Soil Metagenomic Library. Appl. Environ. Microbiol.
75: 5161-5166
[Abstract]
[Full Text]
-
Simmons, L. A., Goranov, A. I., Kobayashi, H., Davies, B. W., Yuan, D. S., Grossman, A. D., Walker, G. C.
(2009). Comparison of Responses to Double-Strand Breaks between Escherichia coli and Bacillus subtilis Reveals Different Requirements for SOS Induction. J. Bacteriol.
191: 1152-1161
[Abstract]
[Full Text]
-
Moeller, R., Horneck, G., Rabbow, E., Reitz, G., Meyer, C., Hornemann, U., Stoffler, D.
(2008). Role of DNA Protection and Repair in Resistance of Bacillus subtilis Spores to Ultrahigh Shock Pressures Simulating Hypervelocity Impacts. Appl. Environ. Microbiol.
74: 6682-6689
[Abstract]
[Full Text]
-
Zhu, H., Shuman, S.
(2008). Bacterial Nonhomologous End Joining Ligases Preferentially Seal Breaks with a 3'-OH Monoribonucleotide. J. Biol. Chem.
283: 8331-8339
[Abstract]
[Full Text]
-
Aniukwu, J., Glickman, M. S., Shuman, S.
(2008). The pathways and outcomes of mycobacterial NHEJ depend on the structure of the broken DNA ends. Genes Dev.
22: 512-527
[Abstract]
[Full Text]
-
Moeller, R., Setlow, P., Horneck, G., Berger, T., Reitz, G., Rettberg, P., Doherty, A. J., Okayasu, R., Nicholson, W. L.
(2008). Roles of the Major, Small, Acid-Soluble Spore Proteins and Spore-Specific and Universal DNA Repair Mechanisms in Resistance of Bacillus subtilis Spores to Ionizing Radiation from X Rays and High-Energy Charged-Particle Bombardment. J. Bacteriol.
190: 1134-1140
[Abstract]
[Full Text]
-
Stephanou, N. C., Gao, F., Bongiorno, P., Ehrt, S., Schnappinger, D., Shuman, S., Glickman, M. S.
(2007). Mycobacterial Nonhomologous End Joining Mediates Mutagenic Repair of Chromosomal Double-Strand DNA Breaks. J. Bacteriol.
189: 5237-5246
[Abstract]
[Full Text]