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The program of gene transcription for a single differentiating cell type during sporulation in Bacillus subtilisThe complete genome sequence of the gram-positive bacterium Bacillus subtilisParadoxical DNA repair and peroxide resistance gene conservation in Bacillus pumilus SAFR-032Lincomycin resistance mutations in two regions immediately downstream of the -10 region of lmr promoter cause overexpression of a putative multidrug efflux pump in Bacillus subtilis mutantsExpression level of a chimeric kinase governs entry into sporulation in Bacillus subtilis.Chromosomal Arrangement of Phosphorelay Genes Couples Sporulation and DNA Replication.Evidence that Autophosphorylation of the Major Sporulation Kinase in Bacillus subtilis Is Able To Occur in trans.Ultrasensitivity of the Bacillus subtilis sporulation decision.Transcriptional Profile during Deoxycholate-Induced Sporulation in a Clostridium perfringens Isolate Causing Foodborne Illness.Slowdown of growth controls cellular differentiation.The Spo0A regulon of Bacillus subtilis.The PAS domains of the major sporulation kinase in Bacillus subtilis play a role in tetramer formation that is essential for the autokinase activityFunctional requirements of cellular differentiation: lessons from Bacillus subtilis.Transcription of the cam operon and camR genes in Pseudomonas putida PpG1.In vivo expression of the Pseudomonas stutzeri maltotetraose-forming amylase gene (amyP).MecA dampens transitions to spore, biofilm exopolysaccharide and competence expression by two different mechanisms.The threshold level of the sensor histidine kinase KinA governs entry into sporulation in Bacillus subtilis.Identification and DNA sequencing of a new plasmid (pPST1) in Pseudomonas stutzeri MO-19.Cloning and nucleotide sequence of the isoamylase gene from Pseudomonas amyloderamosa SB-15.Analysis of HutP-dependent transcription antitermination in the Bacillus subtilis hut operon: identification of HutP binding sites on hut antiterminator RNA and the involvement of the N-terminus of HutP in binding of HutP to the antiterminator RNA.Triggering sporulation in Bacillus subtilis with artificial two-component systems reveals the importance of proper Spo0A activation dynamics.Feedback loops involving Spo0A and AbrB in in vitro transcription of the genes involved in the initiation of sporulation in Bacillus subtilis.Promoter selectivity of the Bacillus subtilis RNA polymerase sigmaA and sigmaH holoenzymes.A novel sporulation-control gene (spo0M) of Bacillus subtilis with a sigmaH-regulated promoter.The sigmaE regulon and the identification of additional sporulation genes in Bacillus subtilis.Deficiency of the initiation events of sporulation in Bacillus subtilis clpP mutant can be suppressed by a lack of the Spo0E protein phosphatase.Temporal and selective association of multiple sigma factors with RNA polymerase during sporulation in Bacillus subtilis.In vitro interactions of Pseudomonas RNA polymerases with tac and RNA I promoters.In vivo functional characterization of the transmembrane histidine kinase KinC in Bacillus subtilis.An investigation into the compartmentalization of the sporulation transcription factor sigmaE in Bacillus subtilisIn vitro transcription system using reconstituted RNA polymerase (EÏ 70, EÏ H, EÏ Eand EÏ S) ofPseudomonas aeruginosaAnalysis of histidine-dependent antitermination in Bacillus subtilis hut operonIn vitro transcription analysis ofrpoDinPseudomonas aeruginosaPAO1In Vitro Transcriptional Analysis of the Cytochrome P-450cam Hydroxylase OperonClpC regulates the fate of a sporulation initiation sigma factor, sigmaH protein, in Bacillus subtilis at elevated temperaturesPurification and Characterization of a DNA-dependent RNA Polymerase fromPseudomonas putidaCloning of sporulation gene spoIVC in Bacillus subtilisHeterologous expression of the cytochrome P450cam hydroxylase operon and the repressor gene of Pseudomonas putida in Escherichia coliA revised model for the control of fatty acid synthesis by master regulator Spo0A in Bacillus subtilisOptogenetic control of Bacillus subtilis gene expression
P50
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P50
description
onderzoeker
@nl
researcher
@en
հետազոտող
@hy
name
Masaya Fujita
@ast
Masaya Fujita
@en
Masaya Fujita
@es
Masaya Fujita
@nl
Masaya Fujita
@sl
type
label
Masaya Fujita
@ast
Masaya Fujita
@en
Masaya Fujita
@es
Masaya Fujita
@nl
Masaya Fujita
@sl
prefLabel
Masaya Fujita
@ast
Masaya Fujita
@en
Masaya Fujita
@es
Masaya Fujita
@nl
Masaya Fujita
@sl
P106
P2798
P31
P496
0000-0003-0060-5328