Serine 129 Phosphorylation Reduces the Ability of α-Synuclein to Regulate Tyrosine Hydroxylase and Protein Phosphatase 2A in Vitro and in Vivo*

نویسندگان

  • Haiyan Lou
  • Susana E. Montoya
  • Tshianda N. M. Alerte
  • Jian Wang
  • Jianjun Wu
  • Xiangmin Peng
  • Chang-Sook Hong
  • Emily E. Friedrich
  • Samantha A. Mader
  • Courtney J. Pedersen
  • Brian S. Marcus
  • Alison L. McCormack
  • Donato A. Di Monte
  • S. Colette Daubner
  • Ruth G. Perez
چکیده

Alpha-synuclein (a-Syn), a protein implicated in Parkinson disease, contributes significantly to dopamine metabolism. a-Syn binding inhibits the activity of tyrosine hydroxylase (TH), the rate-limiting enzyme in catecholamine synthesis. Phosphorylation of TH stimulates its activity, an effect that is reversed by protein phosphatase 2A (PP2A). In cells, a-Syn overexpression activates PP2A. Here we demonstrate that a-Syn significantly inhibited TH activity in vitro and in vivo and that phosphorylation of a-Syn serine 129 (Ser-129) modulated this effect. In MN9D cells, a-Syn overexpression reduced TH serine 19 phosphorylation (Ser(P)-19). In dopaminergic tissues from mice overexpressing human a-Syn in catecholamine neurons only, TH-Ser-19 and TH-Ser-40 phosphorylation and activity were also reduced, whereas PP2A was more active. Cerebellum, which lacks excess a-Syn, had PP2A activity identical to controls. Conversely, a-Syn knock-out mice had elevated TH-Ser-19 phosphorylation and activity and less active PP2A in dopaminergic tissues. Using an a-Syn Ser-129 dephosphorylation mimic, with serine mutated to alanine, TH was more inhibited, whereas PP2A was more active in vitro and in vivo. Phosphorylation of a-Syn Ser-129 by Polo-like-kinase 2 in vitro reduced the ability of a-Syn to inhibit TH or activate PP2A, identifying a novel regulatory role for Ser-129 on a-Syn. These findings extend our understanding of normal a-Syn biology and have implications for the dopamine dysfunction of Parkinson disease.

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Serine 129 Phosphorylation Reduces Α-synuclein’s Ability to Regulate Tyrosine Hydroxylase and Protein Phosphatase 2a in Vitro and in Vivo

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عنوان ژورنال:

دوره 285  شماره 

صفحات  -

تاریخ انتشار 2010