Pyridoxal phosphate: Difference between revisions
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== Pyridoxal_phosphate == | |||
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File:Pyridoxal-phosphate.svg|Pyridoxal phosphate structure | |||
File:PLP_mechanism.svg|Mechanism of action of pyridoxal phosphate | |||
File:Metabolic_pathway-_pyridoxal_5'-phosphate_biosynthesis_I_v_2.0.svg|Metabolic pathway of pyridoxal 5'-phosphate biosynthesis | |||
</gallery> | |||
Latest revision as of 04:05, 18 February 2025
Pyridoxal phosphate (PLP, pyridoxal 5'-phosphate, P5P), also known as vitamin B6 is a coenzyme involved in many reactions in amino acid metabolism, including transamination, deamination, and decarboxylation. PLP also participates in the synthesis of the neurotransmitters serotonin, dopamine, norepinephrine, and gamma-aminobutyric acid (GABA).
Structure and Function[edit]
PLP is the active form of vitamin B6, which comprises three natural organic compounds, pyridoxal, pyridoxine and pyridoxamine. PLP binds to enzymes through a Schiff base linkage to a lysine residue on the enzyme. This covalent bond functions to decrease the pKa of the enzyme-bound lysine residue, facilitating enzyme catalysis.
Role in Enzyme Function[edit]
PLP is a versatile catalyst, acting as a coenzyme in a multitude of reactions including decarboxylation, deamination and transamination. PLP-dependent enzymes are primarily involved in the biosynthesis of many important neurotransmitters such as serotonin, dopamine, and GABA.
Deficiency and Toxicity[edit]
Deficiency of PLP can cause a variety of symptoms, including dermatitis, depression, confusion, and convulsions. Toxicity is rare, but can cause nerve damage and photosensitivity in some individuals.
See Also[edit]
References[edit]
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Pyridoxal_phosphate[edit]
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Pyridoxal phosphate structure
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Mechanism of action of pyridoxal phosphate
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Metabolic pathway of pyridoxal 5'-phosphate biosynthesis


