Alvarez Mónica, Altafaj Xavier, Aranda Sergi, de la Luna Susana
Genes and Disease Program, Centre de Regulació Genómica, Parc de Recerca Biomèdica de Barcelona, 08003 Barcelona, Spain.
Mol Biol Cell. 2007 Apr;18(4):1167-78. doi: 10.1091/mbc.e06-08-0668. Epub 2007 Jan 17.
Dual-specificity tyrosine-phosphorylated and regulated kinase (DYRK) proteins are an evolutionarily conserved family of protein kinases, with members identified from yeast to humans, that participate in a variety of cellular processes. DYRKs are serine/threonine protein kinases that are activated by autophosphorylation on a tyrosine residue in the activation loop. The family member DYRK1A has been shown to phosphorylate several cytosolic proteins and a number of splicing and transcription factors, including members of the nuclear factor of activated T cells family. In the present study, we show that DYRK1A autophosphorylates, via an intramolecular mechanism, on Ser-520, in the PEST domain of the protein. We also show that phosphorylation of this residue, which we show is subjected to dynamic changes in vivo, mediates the interaction of DYRK1A with 14-3-3beta. A second 14-3-3 binding site is present within the N-terminal of the protein. In the context of the DYRK1A molecule, neither site can act independently of the other. Bacterially produced DYRK1A and the mutant DYRK1A/S520A have similar kinase activities, suggesting that Ser-520 phosphorylation does not affect the intrinsic kinase activity on its own. Instead, we demonstrate that this phosphorylation allows the binding of 14-3-3beta, which in turn stimulates the catalytic activity of DYRK1A. These findings provide evidence for a novel mechanism for the regulation of DYRK1A kinase activity.
双特异性酪氨酸磷酸化调节激酶(DYRK)蛋白是一类在进化上保守的蛋白激酶家族,其成员从酵母到人类均有发现,参与多种细胞过程。DYRK是丝氨酸/苏氨酸蛋白激酶,通过激活环中酪氨酸残基的自身磷酸化而被激活。家族成员DYRK1A已被证明可磷酸化多种胞质蛋白以及一些剪接和转录因子,包括活化T细胞核因子家族的成员。在本研究中,我们发现DYRK1A通过分子内机制在该蛋白的PEST结构域中的Ser-520位点进行自身磷酸化。我们还表明,该残基的磷酸化在体内会发生动态变化,介导了DYRK1A与14-3-3β的相互作用。在该蛋白的N端还存在第二个14-3-3结合位点。在DYRK1A分子的背景下,两个位点均不能独立发挥作用。细菌表达的DYRK1A和突变体DYRK1A/S520A具有相似的激酶活性,这表明Ser-520磷酸化本身并不影响其内在激酶活性。相反我们证明这种磷酸化允许14-3-3β的结合,进而刺激DYRK1A的催化活性。这些发现为DYRK1A激酶活性的调节提供了一种新机制的证据。