Agency
National Institute of Health (NIH)
Institute
National Institute of Dental & Craniofacial Research (NIDCR)
Type
Research Project (R01)
Project #
3R01DE008506-04S1
Application #
3222209
Study Section
Special Emphasis Panel (SRC)
Project Start
1988-09-01
Project End
1992-08-31
Budget Start
1990-09-30
Budget End
1991-08-31
Support Year
4
Fiscal Year
1990
Total Cost
Indirect Cost
Name
University of Maryland Balt CO Campus
Department
Type
Schools of Arts and Sciences
DUNS #
City
Baltimore
State
MD
Country
United States
Zip Code
21250
Cheo, D L; Bayles, K W; Yasbin, R E (1993) Elucidation of regulatory elements that control damage induction and competence induction of the Bacillus subtilis SOS system. J Bacteriol 175:5907-15
Cheo, D L; Bayles, K W; Yasbin, R E (1992) Molecular characterization of regulatory elements controlling expression of the Bacillus subtilis recA+ gene. Biochimie 74:755-62
Yasbin, R E; Cheo, D L; Bayles, K W (1992) Inducible DNA repair and differentiation in Bacillus subtilis: interactions between global regulons. Mol Microbiol 6:1263-70
Yasbin, R E; Stranathan, M; Bayles, K W (1991) The recE(A)+ gene of B subtilis and its gene product: further characterization of this universal protein. Biochimie 73:245-50
Yasbin, R E; Cheo, D; Bayles, K W (1991) The SOB system of Bacillus subtilis: a global regulon involved in DNA repair and differentiation. Res Microbiol 142:885-92
Cheo, D L; Bayles, K W; Yasbin, R E (1991) Cloning and characterization of DNA damage-inducible promoter regions from Bacillus subtilis. J Bacteriol 173:1696-703
Lane, M A; Bayles, K W; Yasbin, R E (1991) Identification and initial characterization of glucose-repressible promoters of Streptococcus mutans. Gene 100:225-9
Bol, D K; Yasbin, R E (1991) The isolation, cloning and identification of a vegetative catalase gene from Bacillus subtilis. Gene 109:31-7
Stranathan, M C; Bayles, K W; Yasbin, R E (1990) The nucleotide sequence of the recE+ gene of Bacillus subtilis. Nucleic Acids Res 18:4249
Bol, D K; Yasbin, R E (1990) Characterization of an inducible oxidative stress system in Bacillus subtilis. J Bacteriol 172:3503-6