Singlet molecular oxygen triggers the soxRS regulon of Escherichia coli (2001)
- Authors:
- USP affiliated authors: MENCK, CARLOS FREDERICO MARTINS - ICB ; MASCIO, PAOLO DI - IQ
- Unidades: ICB; IQ
- Assunto: MICROBIOLOGIA
- Language: Inglês
- Imprenta:
- Source:
- Título: Biological Chemistry
- ISSN: 1431-6730
- Volume/Número/Paginação/Ano: v. 382, p. 1071-1075, 2001
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ABNT
AGNEZ-LIMA, Lucymara F et al. Singlet molecular oxygen triggers the soxRS regulon of Escherichia coli. Biological Chemistry, v. 382, p. 1071-1075, 2001Tradução . . Acesso em: 28 fev. 2026. -
APA
Agnez-Lima, L. F., Di Mascio, P., Demple, B., & Menck, C. F. M. (2001). Singlet molecular oxygen triggers the soxRS regulon of Escherichia coli. Biological Chemistry, 382, 1071-1075. -
NLM
Agnez-Lima LF, Di Mascio P, Demple B, Menck CFM. Singlet molecular oxygen triggers the soxRS regulon of Escherichia coli. Biological Chemistry. 2001 ; 382 1071-1075.[citado 2026 fev. 28 ] -
Vancouver
Agnez-Lima LF, Di Mascio P, Demple B, Menck CFM. Singlet molecular oxygen triggers the soxRS regulon of Escherichia coli. Biological Chemistry. 2001 ; 382 1071-1075.[citado 2026 fev. 28 ] - Cytotoxicity and mutagenesis induced by singlet oxygen in wild type and DNA repair deficient Escherichia coli strains
- Singlet molecular oxygen triggers the soxRS Regulon of Escherichia coli
- DNA sequence effects on singlet oxygen induced mutagenicity
- Mutation spectrum induced by singlet oxygen in Escherichia coli deficient in exonuclease III
- Estresse oxidativo, lesões no genoma e processos de sinalização no controle do ciclo celular
- DNA repair and sequence context affect O2 induced mutagenesis in bacteria
- Singlet oxygen-induced mutations in escherichia coli strain deficient in oxonuclease iii
- Evidences for the involvement of the xth gene in the repair of dna damaged by singlet oxygen
- Participacao dos genes xth e nfo no reparo de lesoes de dna induzidas por oxigenio singlete
- Involvement of escherichia coli exonuclease iii and endonuclease iv in the repair of singlet oxygen-induced dna demage
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