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2.
PLoS Genet ; 11(8): e1005443, 2015 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-26244495

RESUMO

Flagella are assembled sequentially from the inside-out with morphogenetic checkpoints that enforce the temporal order of subunit addition. Here we show that flagellar basal bodies fail to proceed to hook assembly at high frequency in the absence of the monotopic protein SwrB of Bacillus subtilis. Genetic suppressor analysis indicates that SwrB activates the flagellar type III secretion export apparatus by the membrane protein FliP. Furthermore, mutants defective in the flagellar C-ring phenocopy the absence of SwrB for reduced hook frequency and C-ring defects may be bypassed either by SwrB overexpression or by a gain-of-function allele in the polymerization domain of FliG. We conclude that SwrB enhances the probability that the flagellar basal body adopts a conformation proficient for secretion to ensure that rod and hook subunits are not secreted in the absence of a suitable platform on which to polymerize.


Assuntos
Bacillus subtilis/metabolismo , Sistemas de Secreção Tipo III/fisiologia , Alelos , Bacillus subtilis/genética , Bacillus subtilis/ultraestrutura , Expressão Gênica , Genes Bacterianos , Óperon , Multimerização Proteica , Estrutura Quaternária de Proteína
3.
J Bacteriol ; 197(1): 81-91, 2015 Jan 01.
Artigo em Inglês | MEDLINE | ID: mdl-25313396

RESUMO

The bacterial flagellum is assembled from over 20 structural components, and flagellar gene regulation is morphogenetically coupled to the assembly state by control of the anti-sigma factor FlgM. In the Gram-negative bacterium Salmonella enterica, FlgM inhibits late-class flagellar gene expression until the hook-basal body structural intermediate is completed and FlgM is inhibited by secretion from the cytoplasm. Here we demonstrate that FlgM is also secreted in the Gram-positive bacterium Bacillus subtilis and is degraded extracellularly by the proteases Epr and WprA. We further demonstrate that, like in S. enterica, the structural genes required for the flagellar hook-basal body are required for robust activation of σ(D)-dependent gene expression and efficient secretion of FlgM. Finally, we determine that FlgM secretion is strongly enhanced by, but does not strictly require, hook-basal body completion and instead demands a minimal subset of flagellar proteins that includes the FliF/FliG basal body proteins, the flagellar type III export apparatus components FliO, FliP, FliQ, FliR, FlhA, and FlhB, and the substrate specificity switch regulator FliK.


Assuntos
Bacillus subtilis/metabolismo , Proteínas de Bactérias/metabolismo , Flagelos/metabolismo , Regulação Bacteriana da Expressão Gênica/fisiologia , Bacillus subtilis/genética , Proteínas de Bactérias/genética , Transporte Biológico/genética , Transporte Biológico/fisiologia , Flagelos/genética , Deleção de Genes , Transporte Proteico/genética , Transporte Proteico/fisiologia , Fator sigma/genética , Fator sigma/metabolismo
4.
ACS Chem Biol ; 7(10): 1746-53, 2012 Oct 19.
Artigo em Inglês | MEDLINE | ID: mdl-22909777

RESUMO

The peptidoglycan cell wall is a common target for antibiotic therapy, but its structure and assembly are only partially understood. Peptidoglycan synthesis requires a suite of penicillin-binding proteins (PBPs), the individual roles of which are difficult to determine because each enzyme is often dispensable for growth perhaps due to functional redundancy. To address this challenge, we sought to generate tools that would enable selective examination of a subset of PBPs. We designed and synthesized fluorescent and biotin derivatives of the ß-lactam-containing antibiotic cephalosporin C. These probes facilitated specific in vivo labeling of active PBPs in both Bacillus subtilis PY79 and an unencapsulated derivative of D39 Streptococcus pneumoniae. Microscopy and gel-based analysis indicated that the cephalosporin C-based probes are more selective than BOCILLIN-FL, a commercially available penicillin V analogue, which labels all PBPs. Dual labeling of live cells performed by saturation of cephalosporin C-susceptible PBPs followed by tagging of the remaining PBP population with BOCILLIN-FL demonstrated that the two sets of PBPs are not co-localized. This suggests that even PBPs that are located at a particular site (e.g., septum) are not all intermixed, but rather that PBP subpopulations are discretely localized. Accordingly, the Ceph C probes represent new tools to explore a subset of PBPs and have the potential to facilitate a deeper understand of the roles of this critical class of proteins.


Assuntos
Divisão Celular/fisiologia , Proteínas de Ligação às Penicilinas/química , Proteínas de Ligação às Penicilinas/ultraestrutura , Antibacterianos/síntese química , Antibacterianos/química , Bacillus subtilis/química , Cefalosporinas/síntese química , Cefalosporinas/química , Corantes Fluorescentes , Microscopia de Fluorescência , Peptídeos/química , Streptococcus pneumoniae/química
5.
Mol Microbiol ; 83(6): 1210-28, 2012 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-22329926

RESUMO

Exponentially growing Bacillus subtilis cultures are epigenetically differentiated into two subpopulations in which cells are either ON or OFF for σ(d) -dependent gene expression: a pattern suggestive of bistability. The gene encoding σ(D) , sigD, is part of the 31-gene fla/che operon where its location at the 3' end, 25 kb away from the strong P(fla/che) promoter, determines its expression level relative to a threshold. Here we show that addition of a single extra copy of the slrA gene in the chromosome inhibited σ(d) -dependent gene expression. SlrA together with SinR and SlrR reduced sigD transcript by potentiating a distance-dependent decrease in fla/che operon transcript abundance that was not mediated by changes in expression from the P(fla/che) promoter. Consistent with acting upstream of σ(D) , SlrA/SinR/SlrR was bypassed by artificial ectopic expression of sigD and hysteretically maintained for 20 generations by engaging the sigD gene at the native locus. SlrA/SinR/SlrR was also bypassed by increasing fla/che transcription and resulted in a hypersensitive output in flagellin expression. Thus, flagellin gene expression demonstrated hypersensitivity and hysteresis and we conclude that σ(d) -dependent gene expression is bistable.


Assuntos
Bacillus subtilis/metabolismo , Proteínas de Bactérias/metabolismo , Regulação para Baixo , Fator sigma/metabolismo , Bacillus subtilis/genética , Proteínas de Bactérias/genética , Sequência de Bases , Regulação Bacteriana da Expressão Gênica , Dados de Sequência Molecular , Óperon , Regiões Promotoras Genéticas , Fator sigma/genética , Transcrição Gênica
6.
Mol Microbiol ; 81(4): 1092-108, 2011 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-21736639

RESUMO

The bacterial flagellum is a complex molecular machine that is assembled by more than 30 proteins and is rotated to propel cells either through liquids or over solid surfaces. Flagellar gene expression is extensively regulated to co-ordinate flagellar assembly in both space and time. In Bacillus subtilis, the proteins of unknown function, SwrA and SwrB, and the alternative sigma factor σ(D) are required to activate expression of the flagellar filament protein, flagellin. Here we determine that in the absence of SwrA and SwrB, the phosphorylated form of the response regulator DegU inhibits σ(D) -dependent gene expression indirectly by binding to the P(flgM) promoter region and activating expression of the anti-sigma factor FlgM. We further demonstrate that DegU-P-dependent activation of FlgM is essential to inhibit flagellin expression when flagellar basal body assembly is disrupted. Regulation of FlgM is poorly understood outside of Salmonella, and differential control of FlgM expression may be a common means of coupling flagellin expression to flagellar assembly.


Assuntos
Bacillus subtilis/genética , Bacillus subtilis/metabolismo , Proteínas de Bactérias/metabolismo , Regulação Bacteriana da Expressão Gênica , Fosfatos/metabolismo , Sequência de Bases , DNA Bacteriano/metabolismo , Deleção de Genes , Ordem dos Genes , Dados de Sequência Molecular , Regiões Promotoras Genéticas , Ligação Proteica , Fator sigma
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