Stoop Jesse, Douma Erik H, van der Vlag Marc, Smidt Marten P, van der Heide Lars P
Macrobian Biotech B.V., Amsterdam, the Netherlands.
Swammerdam Institute for Life Sciences, University of Amsterdam, Amsterdam, the Netherlands.
J Neurochem. 2023 Nov;167(3):376-393. doi: 10.1111/jnc.15963. Epub 2023 Sep 30.
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.
酪氨酸羟化酶催化神经递质多巴胺生物合成的起始步骤和限速步骤。据信,Ser40和Ser31的磷酸化状态对酪氨酸羟化酶的酶活性有直接影响。有趣的是,一些研究报告称,Ser31磷酸化影响Ser40磷酸化,而Ser40磷酸化对Ser31磷酸化没有影响,这一过程称为分级磷酸化。在此,我们对调节多巴胺能小鼠MN9D和Neuro2A细胞中Ser40和Ser31磷酸化的信号转导机制进行了详细研究。我们发现环核苷酸信号驱动Ser40磷酸化,而Ser31磷酸化受ERK信号的强烈调控。用UO126或PD98059抑制ERK1/2可降低Ser31磷酸化,但令人惊讶的是对Ser40磷酸化没有影响,这与Ser31在调节Ser40中的作用相矛盾。此外,为了阐明控制酪氨酸羟化酶磷酸化的可能分级机制,我们在Neuro2A小鼠神经母细胞瘤细胞中引入了模拟磷酸化或未磷酸化丝氨酸残基的酪氨酸羟化酶变体。当我们引入Ser40Ala酪氨酸羟化酶变体时,Ser31磷酸化完全缺失。此外,酪氨酸羟化酶变体Ser31Asp和变体Ser31Ala对基础Ser40磷酸化水平均无显著影响。这些结果表明,酪氨酸羟化酶不受分级磷酸化的控制,即不是先使Ser31磷酸化,随后再使Ser40磷酸化,相反,Ser40磷酸化对于Ser31磷酸化至关重要。总体而言,我们的研究表明,Ser40是调节酪氨酸羟化酶活性的关键靶点残基。