Literature DB >> 2277636

Proteolytic processing of MucA protein in SOS mutagenesis: both processed and unprocessed MucA may be active in the mutagenesis.

T Shiba1, H Iwasaki, A Nakata, H Shinagawa.   

Abstract

The mucAB operon carried on plasmid pKM101, which is an analogue of the umuDC operon of Escherichia coli, is involved in UV mutagenesis and mutagenesis induced by many chemicals. Mutagenesis dependent on either the umuDC or mucAB operon requires the function of the recA gene and is called SOS mutagenesis. By treating the cell with agents that damage DNA, RecA protein is activated by conversion into a form (RecA*) that mediates proteolytic cleavage of the LexA repressor and derepresses the SOS genes including mucAB. Since UmuD protein is proteolytically processed to an active form (UmuD*) in a RecA*-dependent fashion, and MucA shares extensive amino acid homology with UmuD, we examined whether MucA is similarly processed in the cell, using antiserum against a LacZ'-'MucA fusion protein. Like UmuD, MucA protein is indeed proteolytically processed in a RecA*-dependent fashion. In recA430 strains, MucAB but not UmuDC can mediate UV mutagenesis. However, MucA was not processed in the recA430 cells treated with mitomycin C. We constructed, by site-directed mutagenesis, several mutant mucA genes that encode MucA proteins with alterations in the amino acids flanking the putative cleavage site (Ala25-Gly26). MucA(Cys25) was processed and was as mutagenically active as wild-type MucA; MucA(Asp26) and MucA(Cys25,Asp26) were not processed, and were mutagenically inactive; MucA-(Thr25) was not processed, but was mutagenically as active as wild-type MucA. The mutant mucA gene that encoded the putative cleavage product of MucA was as active as mucA+ in UV mutagenesis. These results raise the possibility that both the nascent MucA and the processed product are active in mutagenesis.

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Year:  1990        PMID: 2277636     DOI: 10.1007/bf00271549

Source DB:  PubMed          Journal:  Mol Gen Genet        ISSN: 0026-8925


  29 in total

1.  Different efficiency of UmuDC and MucAB proteins in UV light induced mutagenesis in Escherichia coli.

Authors:  M Blanco; G Herrera; V Aleixandre
Journal:  Mol Gen Genet       Date:  1986-11

2.  Dual role for Escherichia coli RecA protein in SOS mutagenesis.

Authors:  D G Ennis; B Fisher; S Edmiston; D W Mount
Journal:  Proc Natl Acad Sci U S A       Date:  1985-05       Impact factor: 11.205

3.  Cleavage of structural proteins during the assembly of the head of bacteriophage T4.

Authors:  U K Laemmli
Journal:  Nature       Date:  1970-08-15       Impact factor: 49.962

Review 4.  Ultraviolet mutagenesis and inducible DNA repair in Escherichia coli.

Authors:  E M Witkin
Journal:  Bacteriol Rev       Date:  1976-12

5.  Nucleotide sequence of the lexA gene of Escherichia coli K-12.

Authors:  B E Markham; J W Little; D W Mount
Journal:  Nucleic Acids Res       Date:  1981-08-25       Impact factor: 16.971

6.  Influence of RecA protein on induced mutagenesis.

Authors:  M Blanco; G Herrera; P Collado; J E Rebollo; L M Botella
Journal:  Biochimie       Date:  1982 Aug-Sep       Impact factor: 4.079

Review 7.  The SOS regulatory system of Escherichia coli.

Authors:  J W Little; D W Mount
Journal:  Cell       Date:  1982-05       Impact factor: 41.582

8.  Plasmid (pKM101)-mediated enhancement of repair and mutagenesis: dependence on chromosomal genes in Escherichia coli K-12.

Authors:  G C Walker
Journal:  Mol Gen Genet       Date:  1977-03-28

9.  UmuD mutagenesis protein of Escherichia coli: overproduction, purification, and cleavage by RecA.

Authors:  S E Burckhardt; R Woodgate; R H Scheuermann; H Echols
Journal:  Proc Natl Acad Sci U S A       Date:  1988-03       Impact factor: 11.205

10.  RecA protein-dependent cleavage of UmuD protein and SOS mutagenesis.

Authors:  H Shinagawa; H Iwasaki; T Kato; A Nakata
Journal:  Proc Natl Acad Sci U S A       Date:  1988-03       Impact factor: 11.205

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  9 in total

1.  Intermolecular cleavage by UmuD-like mutagenesis proteins.

Authors:  J P McDonald; E G Frank; A S Levine; R Woodgate
Journal:  Proc Natl Acad Sci U S A       Date:  1998-02-17       Impact factor: 11.205

2.  The dimeric SOS mutagenesis protein UmuD is active as a monomer.

Authors:  Jaylene N Ollivierre; Jacquelyn L Sikora; Penny J Beuning
Journal:  J Biol Chem       Date:  2010-11-29       Impact factor: 5.157

3.  UV mutagenesis in Salmonella typhimurium is umuDC dependent despite the presence of samAB.

Authors:  W H Koch; T A Cebula; P L Foster; E Eisenstadt
Journal:  J Bacteriol       Date:  1992-05       Impact factor: 3.490

4.  The spectra of base substitutions induced by the impCAB, mucAB and umuDC error-prone DNA repair operons differ following exposure to methyl methanesulfonate.

Authors:  N Doyle; P Strike
Journal:  Mol Gen Genet       Date:  1995-06-25

5.  Inhibition of homologous recombination by the plasmid MucA'B complex.

Authors:  C Venderbure; A Chastanet; F Boudsocq; S Sommer; A Bailone
Journal:  J Bacteriol       Date:  1999-02       Impact factor: 3.490

6.  Heterospecific expression of misrepair-enhancing activity of mucAB in Escherichia coli and Bacillus subtilis.

Authors:  H Tanooka; K Tanaka; K Shinozaki
Journal:  J Bacteriol       Date:  1991-05       Impact factor: 3.490

7.  The enhanced mutagenic potential of the MucAB proteins correlates with the highly efficient processing of the MucA protein.

Authors:  J Hauser; A S Levine; D G Ennis; K M Chumakov; R Woodgate
Journal:  J Bacteriol       Date:  1992-11       Impact factor: 3.490

8.  The influence of local DNA sequence and DNA repair background on the mutational specificity of 1-nitroso-8-nitropyrene in Escherichia coli: inferences for mutagenic mechanisms.

Authors:  I B Lambert; A J Gordon; B W Glickman; D R McCalla
Journal:  Genetics       Date:  1992-12       Impact factor: 4.562

9.  Specificity determinants for autoproteolysis of LexA, a key regulator of bacterial SOS mutagenesis.

Authors:  Charlie Y Mo; L Dillon Birdwell; Rahul M Kohli
Journal:  Biochemistry       Date:  2014-05-08       Impact factor: 3.162

  9 in total

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