
Loading Pathway...
Error: Pathway image not found.
Hide
Pathway Description
Pyridoxal-5-phosphate
Bacillus subtilis
Category:
Metabolite Pathway
Sub-Category:
Metabolic
Created: 2025-02-25
Last Updated: 2025-06-22
The pyridoxal-5-phosphate (PLP) effector pathway is involved in the catabolism of γ-aminobutyric acid (GABA) and is regulated by the transcriptional activator GabR. PLP, the active form of vitamin B6, serves as a cofactor for GabR, enabling it to control expression of genes required for GABA utilization.
Bacillus subtilis GabR is a transcriptional regulator consisting of a helix-turn-helix N-terminal DNA-binding domain, a pyridoxal 5'-phosphate (PLP)-binding C-terminal domain that has a structure homologous to aminotransferases, and a linker of 29 amino acid residues. In the presence of γ-aminobutyrate (GABA), GabR activates the transcription of gabT and gabD, which encode GABA aminotransferase and succinate semialdehyde dehydrogenase, respectively.
GabR is a PLP-dependent transcription factor of the MocR/GabR family. It binds to the promoter region of GABA catabolic genes and activates their transcription in response to GABA and PLP availability. This regulation ensures that GABA metabolism is induced only when both substrate (GABA) and cofactor (PLP) are present.
Key genes in the GabR regulog include:
gabT – Encodes GABA transaminase, a PLP-dependent enzyme that catalyzes the conversion of GABA to succinate semialdehyde, linking GABA catabolism to the TCA cycle.
gabP – Encodes a GABA permease, responsible for importing GABA into the cell for metabolism.
gabD – Encodes succinate semialdehyde dehydrogenase, which converts succinate semialdehyde into succinate, a direct intermediate of the TCA cycle.
References
Pyridoxal-5-phosphate References
Okuda K, Ito T, Goto M, Takenaka T, Hemmi H, Yoshimura T: Domain characterization of Bacillus subtilis GabR, a pyridoxal 5'-phosphate-dependent transcriptional regulator. J Biochem. 2015 Sep;158(3):225-34. doi: 10.1093/jb/mvv040. Epub 2015 Apr 23.
Pubmed: 25911692
Kaley NE, Liveris ZJ, Moore M, Reidl CT, Wawrzak Z, Becker DP, Liu D: Bioisosteric replacement of pyridoxal-5'-phosphate to pyridoxal-5'-tetrazole targeting Bacillus subtilis GabR. Protein Sci. 2025 Jan;34(1):e70014. doi: 10.1002/pro.70014.
Pubmed: 39720892
Cossart P, Gicquel-Sanzey B: Cloning and sequence of the crp gene of Escherichia coli K 12. Nucleic Acids Res. 1982 Feb 25;10(4):1363-78. doi: 10.1093/nar/10.4.1363.
Pubmed: 6280141
Aiba H, Fujimoto S, Ozaki N: Molecular cloning and nucleotide sequencing of the gene for E. coli cAMP receptor protein. Nucleic Acids Res. 1982 Feb 25;10(4):1345-61. doi: 10.1093/nar/10.4.1345.
Pubmed: 6280140
Blattner FR, Plunkett G 3rd, Bloch CA, Perna NT, Burland V, Riley M, Collado-Vides J, Glasner JD, Rode CK, Mayhew GF, Gregor J, Davis NW, Kirkpatrick HA, Goeden MA, Rose DJ, Mau B, Shao Y: The complete genome sequence of Escherichia coli K-12. Science. 1997 Sep 5;277(5331):1453-62. doi: 10.1126/science.277.5331.1453.
Pubmed: 9278503
Highlighted elements will appear in red.
Highlight Compounds
Highlight Proteins
Enter relative concentration values (without units). Elements will be highlighted in a color gradient where red = lowest concentration and green = highest concentration. For the best results, view the pathway in Black and White.
Visualize Compound Data
Visualize Protein Data
Downloads
Settings