Singh T J, Zaidi T, Grundke-Iqbal I, Iqbal K
New York State Institute for Basic Research in Developmental Disabilities, New York 10314, USA.
Mol Cell Biochem. 1996 Jan 26;154(2):143-51. doi: 10.1007/BF00226782.
Of 21 phosphorylation sites identified in PHF-tau 11 are on ser/thr-X motifs and are probably phosphorylated by non-proline-dependent protein kinases (non-PDPKs). The identities of the non-PDPKs and how they interact to hyperphosphorylate PHF-tau are still unclear. In a previous study we have shown that the rate of phosphorylation of human tau 39 by a PDPK (GSK-3) was increased several fold if tau were first prephosphorylated by non-PDPKs (Singh et al., FEBS Lett 358: 267-272, 1995). In this study we have examined how the specificity of a non-PDPK for different sites on human tau 39 is modulated when tau is prephosphorylated by other non-PDPKs (A-kinase, C-kinase, CK-1, CaM kinase II) as well as a PDPK (GSK-3). We found that the rate of phosphorylation of tau 39 by a non-PDPK can be stimulated if tau were first prephosphorylated by other non-PDPKs. Of the four non-PDPKs only CK-1 can phosphorylate sites (thr 231, ser 396, ser 404) known to be present in PHF-tau. Further, these sites were phosphorylated more rapidly and to a greater extent by CK-1 if tau 39 were first prephosphorylated by A-kinase, CaM kinase II or GSK-3. These results suggest that the site specificities of the non-PDPKs that participate in PHF-tau hyperphosphorylation can be modulated at the substrate level by the phosphorylation state of tau.
在已确定的PHF-tau的21个磷酸化位点中,有11个位于丝氨酸/苏氨酸-X基序上,可能由非脯氨酸依赖性蛋白激酶(non-PDPKs)磷酸化。non-PDPKs的身份以及它们如何相互作用使PHF-tau过度磷酸化仍不清楚。在先前的一项研究中我们发现,如果tau首先被non-PDPKs预磷酸化,那么PDPK(GSK-3)对人tau 39的磷酸化速率会增加几倍(Singh等人,《欧洲生物化学学会联合会快报》358:267 - 272,1995)。在本研究中,我们研究了当tau被其他non-PDPKs(A激酶、C激酶、CK-1、钙调蛋白激酶II)以及PDPK(GSK-3)预磷酸化时,一种non-PDPK对人tau 39不同位点的特异性是如何被调节的。我们发现,如果tau首先被其他non-PDPKs预磷酸化,那么一种non-PDPK对tau 39的磷酸化速率会被刺激。在这四种non-PDPKs中,只有CK-1能够磷酸化已知存在于PHF-tau中的位点(苏氨酸231、丝氨酸396、丝氨酸404)。此外,如果tau 39首先被A激酶、钙调蛋白激酶II或GSK-3预磷酸化,那么这些位点被CK-1磷酸化的速度会更快,程度也会更大。这些结果表明,参与PHF-tau过度磷酸化的non-PDPKs的位点特异性可以在底物水平上通过tau的磷酸化状态进行调节。