The trans-activation domain of the sporulation response regulator Spo0A revealed by X-ray crystallography
about
Whole-genome sequence of an evolved Clostridium pasteurianum strain reveals Spo0A deficiency responsible for increased butanol production and superior growthStructure of the proline dehydrogenase domain of the multifunctional PutA flavoproteinC. difficile 630Δerm Spo0A regulates sporulation, but does not contribute to toxin production, by direct high-affinity binding to target DNAA physical approach to protein structure predictionStructural classification of bacterial response regulators: diversity of output domains and domain combinations.Identification of sensory and signal-transducing domains in two-component signaling systems.Genomic determinants of sporulation in Bacilli and Clostridia: towards the minimal set of sporulation-specific genes.Surfaces of Spo0A and RNA polymerase sigma factor A that interact at the spoIIG promoter in Bacillus subtilis.Alpha-helix E of Spo0A is required for sigmaA- but not for sigmaH-dependent promoter activation in Bacillus subtilis.A genomic signature and the identification of new sporulation genes.An A257V mutation in the bacillus subtilis response regulator Spo0A prevents regulated expression of promoters with low-consensus binding sites.Transcriptional organization of the Clostridium acetobutylicum genome.Computational identification of the Spo0A-phosphate regulon that is essential for the cellular differentiation and development in Gram-positive spore-forming bacteriaCrystal structure of the inactive state of the receiver domain of Spo0A from Paenisporosarcina sp. TG-14, a psychrophilic bacterium isolated from an Antarctic glacier.Identifying DNA-binding proteins using structural motifs and the electrostatic potential.Spo0A, the key transcriptional regulator for entrance into sporulation, is an inhibitor of DNA replication.Bright lights, abundant operons--fluorescence and genomic technologies advance studies of bacterial locomotion and signal transduction: review of the BLAST meeting, Cuernavaca, Mexico, 14 to 19 January 2001.Spo0A regulates chromosome copy number during sporulation by directly binding to the origin of replication in Bacillus subtilis.The Bacillus subtilis response regulator Spo0A stimulates sigmaA-dependent transcription prior to the major energetic barrier.Flexibility and constraint: Evolutionary remodeling of the sporulation initiation pathway in Firmicutes
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P2860
The trans-activation domain of the sporulation response regulator Spo0A revealed by X-ray crystallography
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2000 nî lūn-bûn
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The trans-activation domain of ...... ealed by X-ray crystallography
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The trans-activation domain of ...... ealed by X-ray crystallography
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The trans-activation domain of ...... ealed by X-ray crystallography
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The trans-activation domain of ...... ealed by X-ray crystallography
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The trans-activation domain of ...... ealed by X-ray crystallography
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The trans-activation domain of ...... ealed by X-ray crystallography
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The trans-activation domain of ...... ealed by X-ray crystallography
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The trans-activation domain of ...... ealed by X-ray crystallography
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The trans-activation domain of ...... ealed by X-ray crystallography
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The trans-activation domain of ...... ealed by X-ray crystallography
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A J Wilkinson
E J Dodson
J A Brannigan
J P Turkenburg
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10.1046/J.1365-2958.2000.02134.X
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2000-10-01T00:00:00Z