4.5 Article

Tyrosine hydroxylase phosphorylation is under the control of serine 40

期刊

JOURNAL OF NEUROCHEMISTRY
卷 167, 期 3, 页码 376-393

出版社

WILEY
DOI: 10.1111/jnc.15963

关键词

cell-signaling; crosstalk; Dopamine; phosphorylation; signal transduction; tyrosine hydroxylase

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Our study provides detailed insights into the regulation of dopamine synthesis, revealing that Ser40 phosphorylation serves as the crucial switch controlling tyrosine hydroxylase activity.
Tyrosine hydroxylase catalyzes the initial and rate-limiting step in the biosynthesis of the neurotransmitter dopamine. The phosphorylation state of Ser40 and Ser31 is believed to exert a direct effect on the enzymatic activity of tyrosine hydroxylase. Interestingly, some studies report that Ser31 phosphorylation affects Ser40 phosphorylation, while Ser40 phosphorylation has no effect on Ser31 phosphorylation, a process named hierarchical phosphorylation. Here, we provide a detailed investigation into the signal transduction mechanisms regulating Ser40 and Ser31 phosphorylation in dopaminergic mouse MN9D and Neuro2A cells. We find that cyclic nucleotide signaling drives Ser40 phosphorylation, and that Ser31 phosphorylation is strongly regulated by ERK signaling. Inhibition of ERK1/2 with UO126 or PD98059 reduced Ser31 phosphorylation, but surprisingly had no effect on Ser40 phosphorylation, contradicting a role for Ser31 in the regulation of Ser40. Moreover, to elucidate a possible hierarchical mechanism controlling tyrosine hydroxylase phosphorylation, we introduced tyrosine hydroxylase variants in Neuro2A mouse neuroblastoma cells that mimic either phosphorylated or unphosphorylated serine residues. When we introduced a Ser40Ala tyrosine hydroxylase variant, Ser31 phosphorylation was completely absent. Additionally, neither the tyrosine hydroxylase variant Ser31Asp, nor the variant Ser31Ala had any significant effect on basal Ser40 phosphorylation levels. These results suggest that tyrosine hydroxylase is not controlled by hierarchical phosphorylation in the sense that first Ser31 has to be phosphorylated and subsequently Ser40, but, conversely, that Ser40 phosphorylation is essential for Ser31 phosphorylation. Overall our study suggests that Ser40 is the crucial residue to target so as to modulate tyrosine hydroxylase activity.image Tyrosine hydroxylase (TH) catalyzes the initial and rate-limiting step in the biosynthesis of the neurotransmitter dopamine. Our study underscores Ser40 phosphorylation as the pivotal on-off switch governing TH activity and dopamine production. Our investigation challenges prior assumptions, revealing that Ser40 phosphorylation is the initiating step, dictating the subsequent Ser31 phosphorylation. These findings illuminate the crucial role of Ser40 in TH regulation offering new insights into the delicate control of neurotransmitter production.image

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