Cho Jae-Hyeon, Johnson Gail V W
Department of Psychiatry, University of Alabama at Birmingham, Birmingham, Alabama 35294-0017, USA.
J Biol Chem. 2003 Jan 3;278(1):187-93. doi: 10.1074/jbc.M206236200. Epub 2002 Oct 29.
Glycogen synthase kinase 3beta (GSK3beta) phosphorylates substrates, including the microtubule-associated protein tau, at both primed and unprimed epitopes. GSK3beta phosphorylation of tau negatively regulates tau-microtubule interactions; however the differential effects of phosphorylation at primed and unprimed epitopes on tau is unknown. To examine the phosphorylation of tau at primed and unprimed epitopes and how this impacts tau function, the R96A mutant of GSK3beta was used, a mutation that prevents phosphorylation of substrates at primed sites. Both GSK3beta and GSK3beta-R96A phosphorylated tau efficiently in situ. However, expression of GSK3beta-R96A resulted in significantly less phosphorylation of tau at primed sites compared with GSK3beta. Conversely, GSK3beta-R96A phosphorylated unprimed tau sites to a significantly greater extent than GSK3beta. Prephosphorylating tau with cdk5/p25 impaired the ability of GSK3beta-R96A to phosphorylate tau, whereas GSK3beta-R96A phosphorylated recombinant tau to a significantly greater extent than GSK3beta. Moreover, the amount of tau associated with microtubules was reduced by overexpression of GSK3beta but only when tau was phosphorylated at primed sites, as phosphorylation of tau by GSK3beta-R96A did not negatively regulate the association of tau with microtubules. These results demonstrate that GSK3beta-mediated phosphorylation of tau at primed sites plays a more significant role in regulating the interaction of tau with microtubules than phosphorylation at unprimed epitopes.
糖原合酶激酶3β(GSK3β)可在引发表位和未引发表位对包括微管相关蛋白tau在内的底物进行磷酸化。GSK3β介导的tau磷酸化对tau与微管之间的相互作用具有负调控作用;然而,引发表位和未引发表位磷酸化对tau的不同影响尚不清楚。为了研究引发表位和未引发表位处tau的磷酸化情况以及这如何影响tau的功能,使用了GSK3β的R96A突变体,该突变可阻止底物在引发位点的磷酸化。GSK3β和GSK3β-R96A均可在原位高效地对tau进行磷酸化。然而,与GSK3β相比,GSK3β-R96A的表达导致引发位点处tau的磷酸化显著减少。相反,GSK3β-R96A对未引发的tau位点的磷酸化程度明显高于GSK3β。用cdk5/p25对tau进行预磷酸化会损害GSK3β-R96A对tau进行磷酸化的能力,而GSK3β-R96A对重组tau的磷酸化程度明显高于GSK3β。此外,GSK3β的过表达会减少与微管相关的tau量,但仅当tau在引发位点被磷酸化时才会如此,因为GSK3β-R96A介导的tau磷酸化不会对tau与微管的结合产生负调控作用。这些结果表明,GSK3β介导的tau在引发位点的磷酸化在调节tau与微管的相互作用中比在未引发表位的磷酸化发挥更重要的作用。