Mutations in Multidrug Efflux Homologs, Sugar Isomerases, and Antimicrobial Biosynthesis Genes Differentially Elevate Activity of the ςX and ςW Factors inBacillus subtilis
ABSTRACT
MATERIALS AND METHODS
Bacterial strains, plasmids, and growth conditions.
Strain or plasmid | Relevant characteristics | Reference or source |
---|---|---|
B. subtilisstrains | ||
CU1065 | W168trpC2 attSPβ | Lab stock |
HB7070 | CU1065 SPβ7063 [PW-cat-lacZ] | 22 |
HB0011 | HB7070 rsiW::Km | This work |
HB7022 | CU1065 SPβ7019 [PX-cat-lacZ] | 21 |
HB7024 | HB7022rsiX::pVA29 | 21 |
OKB105 | pheA1 sfp | 39 |
HB300 | CU1065 yqgE::pMUTIN (MLSr) | This study |
HB301 | HB7070 pXT-yshB′ (Spcr MLSrNeor) | This study |
HB302 | CU1065yjdD::pMUTIN (MLSr) | This study |
E. coli strains | ||
DH5α | supE44 ΔlacU169 (φ80 lacZΔM15) hsdR17 recA1 endA1 gyrA96 thi-1 relA1 | 53 |
Jm2r− | mcrAB hsdR recA1 Δ(lac-proAB) thi gyrA96 relA1 srl::Tn10 F′ (proAB lacZ ΔM15) | S. Zahler |
Plasmids | ||
pIC333 | pUC replicon, shuttle vector carrying mini-Tn10, thermosensitive replicon for gram-positive hosts (Apr MLSrSpcr) | 57 |
pMUTIN4 | pBR322-based integration vector for B. subtilis; contains a multiple cloning site downstream of the Pspac promoter (AprMLSr) | 64 |
pMUTIN-yqgE | pMUTIN4 derivative carrying DNA from the 5′ end of yqgE | This study |
pMUTIN-yjdD | pMUTIN4 derivative carrying DNA from within yjdD | This study |
pXT | Vector which integrates into the thrC locus and contains thexylA xylose-inducible promoter upstream of a multiple cloning site (Apr MLSr Spcr) | T. Msadek |
pXT-yshB′ | pXT derivative carrying DNA from the 5′ end of yshB | This study |
Straina | Gene | Mini-Tn10insertion siteb | Presumed function and/or featuresc | Downstream gene(s) possibly affected by insertiond | LB plate phenotypee |
---|---|---|---|---|---|
HB7070 | NAf | NA | NA | NA | −/+ |
HB0011 | rsiW | NA | Anti-ςW | NA | ++ |
W1, W2, and W3 | yvbA | 244 | Regulator of export | yvaZ | +++ |
W4 | yqgE | 240 | Multidrug efflux | pbpA | −/+g |
W5 | yheH | 1640 | Multidrug efflux | + | |
W6 | yhdP | 260 | Metal ion efflux | + | |
W7 | yueF | 931 | Unknown; transport? | yueG | + |
W8 | oppA | 391 | Oligopeptide uptake | oppBCDF | ++ |
W9 | yulE | 1058 | Rhamnose isomerase | + | |
W10 | pksR | 6772 | Difficidin synthesis | + | |
W11 | ysdB | −43 | Unknown; ςW- and possibly ςB-regulated membrane protein | + | |
W12 | yqfD | 71 | Unknown; possibly ςWregulated | phoH | + |
W13 | yodE | 240 | Aromatic ring cleavage | yodD | + |
W14 | yshB | 47 | Unknown | yshCDE | ++ |
W15 | yshD | 1862 | DNA mismatch repair | yshE | + |
W16 | yopH | 331 | Unknown | yopIJKL | + |
HB7022 | NA | NA | NA | NA | − |
HB7024 | rsiX | NA | Anti-ςX | NA | ++ |
X1 | yitG | 631 | Multidrug efflux | yitFE | + |
X2 | yjdE | 60 | Mannose-6-phosphate isomerase | yjdF | + |
X3 | srfAB | 10064 | Surfactin synthesis | srfAC,srfAD | + |
X4 | yogA | 933 | Polyketide synthesis | −/+ | |
X5 | yngK | 1517 | Unknown | −/+ | |
X6 | ytxJ | 227 | Unknown | −/+ | |
X7 | ywpH | −74 | DNA replication | glcR,ywpJ | + |
Construction of mini-Tn10 libraries.
DNA manipulations and sequencing.
Screening and identification of mini-Tn10 mutants up-regulated in ςW and ςX activity.
Generation of B. subtilis mutants HB300, HB301, and HB302.
β-Gal assays.
Computer analysis.
RESULTS
Rationale for mutant isolation.
Isolation and analysis of mini-Tn10 mutants with increased ςW activity.
Protein of unknown function | No. of amino acids | B. subtilis paralog(s) of interest (% identity/no. of amino acids) | Homologous protein(s) of known or predicted function (% identity/no. of amino acids) | Reference for functionally known protein |
---|---|---|---|---|
YvbA | 90 | Staphylococcus xylosus ArsR (40/87) | 51 | |
YqgE | 430 | Staphylococcus aureus NorA (22/304) | 68 | |
YheH | 673 | Homo sapiens MDR1 (33/517) | 5 | |
Pasteurella haemolytica HylB (31/509) | 59 | |||
Lactococcus lactis LcnC (27/532) | 58 | |||
YhdP | 444 | YrkA (62/434) | Rickettsia typhi TylC (33/214) | 48 |
YhdT (60/430) | S. enterica serovar Typhimurium CorC (27/277) | 12 | ||
YugS (60/427) | S. enterica serovar Typhimurium CorB (24/224) | 12 | ||
YqhB (59/433) | ||||
YueF | 369 | E. coli PerM (27/315) | ||
YsdB | 130 | None | ||
YqfD | 398 | Bacillus megaterium SpoIV (43/395) | 66 | |
YodE | 303 | YdfO (48/296) | Sphingomonas paucimobilis LinE (30/306) | 35 |
YkcA (37/313) | Sphingomonas chlorophenolicaPcpA (28/299) | 42 | ||
YulE | 424 | E. coli RhaA (58/411) | 36 | |
YshB | 177 | None | ||
YshD | 785 | MutS (24/520) | 13 | |
YopH | 178 | None | ||
YitG | 422 | Blt (23/407) | 1 | |
Bmr (22/383) | ||||
YjdE | 315 | Pmi (56/316) | Streptococcus mutans ManA (53/311) | 54 |
YdhS (55/313) | ||||
YogA | 329 | Streptomyces cinnamonensis CCR (26/364) | 31 | |
Pseudomonas syringae Cfa8 (25/356) | 49 | |||
YngK | 510 | None | ||
YtxJ | 108 | None | ||
YwpH | 113 | SSB (63/106) |
Transport functions.
Sugar metabolism.
Antimicrobial synthesis.
Insertions in genes of unknown function.
Isolation and analysis of mini-Tn10 mutants with increased ςX activity.
Transport functions.
Sugar metabolism.
Antimicrobial and polyketide synthesis.
Proteins with unclear functions.
DISCUSSION
ACKNOWLEDGMENTS
REFERENCES
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