Advances in the molecular characterization of tryptophan hydroxylase
- 1 June 1998
- journal article
- review article
- Published by Springer Nature in Journal of Molecular Neuroscience
- Vol. 10 (3) , 163-179
- https://doi.org/10.1007/bf02761772
Abstract
The neurotransmitter serotonin has been implicated in numerous physiological functions and pathophysiological disorders. The hydroxylation of the aromatic amino acid tryptophan is rate-limiting in the synthesis of serotonin. Tryptophan hydroxylase (TPH), as the rate-limiting enzyme, determines the concentrations of serotonin in vivo. Relative serotonin concentrations are clearly important in neural transmission, but serotonin has also been reported to function as a local antioxidant. Identification of the mechanisms regulating TPH activity has been hindered by its low levels in tissues and the instability of the enzyme. Several TPH expression systems have been developed to circumvent these problems. In addition, eukaryotic expressions systems are currently being developed and represent a new avenue of research for identifying TPH regulatory mechanisms. Recombinant DNA technology has enabled the synthesis of TPH deletions, chimeras, and point mutations that have served as tools for identifying structural and functional domains within TPH. Notably, the experiments have proven long-held hypotheses that TPH is organized intoN-terminal regulatory and C-terminal catalytic domains, that serine-58 is a site for PKA-mediated phosphorylation, and that a C-terminal leucine zipper is involved in formation of the tetrameric holoenzyme. Several new findings have also emerged regarding regulation of TPH activity by posttranslational phosphorylation, kinetic inhibition, and covalent modification. Inhibition of TPH byl-DOPA may have implications for depression in Parkinson’s disease (PD) patients. In addition, TPH inactivation by nitric oxide may be involved in amphetamine-induced toxicity. These regulatory concepts, in conjunction with new systems for studying TPH activity, are the focus of this article.Keywords
This publication has 139 references indexed in Scilit:
- Evidence for tryptophan hydroxylase and hydroxy-indol-o-methyl-transferase mRNAs in human blood plateletsLife Sciences, 1997
- Phosphorylation and Activation of Tryptophan Hydroxylase by Exogenous Protein Kinase AJournal of Neurochemistry, 1996
- Deletion Mutagenesis of Human Tyrosine Hydroxylase Type 1 Regulatory DomainBiochemical and Biophysical Research Communications, 1995
- Recombinant rabbit tryptophan hydroxylase is a substrate for cAMP-dependent protein kinaseLife Sciences, 1994
- Identification of the Intersubunit Binding Region in Rat Tyrosine HydroxylaseBiochemical and Biophysical Research Communications, 1993
- Demonstration of the Phosphorylation-Dependent Interaction of Tryptophan Hydroxylase with the 14-3-3 ProteinBiochemical and Biophysical Research Communications, 1993
- Associative properties of the Escherichia coli galactose-binding protein and maltose-binding proteinBiochimica et Biophysica Acta (BBA) - Protein Structure and Molecular Enzymology, 1983
- Associative properties of the Escherichiacoli galactose binding protein and maltose binding proteinBiochemical and Biophysical Research Communications, 1982
- Purification and Properties of Tryptophan 5‐Monooxygenase from Rat Brain‐StemEuropean Journal of Biochemistry, 1982
- Purification and some properties of bovine pineal tryptophan 5-monooxygenaseBiochemical and Biophysical Research Communications, 1974