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磷酸化和底物调节对tau促进微管生长和成核能力的差异影响。

Differential effect of phosphorylation and substrate modulation on tau's ability to promote microtubule growth and nucleation.

作者信息

Brandt R, Lee G, Teplow D B, Shalloway D, Abdel-Ghany M

机构信息

Center for Neurologic Diseases, Brigham and Women's Hospital, Harvard Medical School, Boston, Massachusetts 02115.

出版信息

J Biol Chem. 1994 Apr 22;269(16):11776-82.

PMID:8163474
Abstract

The neuronal microtubule-associated protein tau promotes microtubule assembly and has been implicated in the development of axonal morphology. To study the effect of phosphorylation and substrate modulation on tau's distinct activities to promote growth of existing microtubules and nucleation of new ones, we phosphorylated bacterially expressed human tau by cAMP-dependent protein kinase in the absence or presence of heparin, an acidic substrate modulator. We found that heparin increased phosphorylation of tau by a factor of more than 2 and produced tau bands with decreased electrophoretic mobility. We demonstrate that phosphorylation of tau in the absence or presence of heparin similarly reduced tau's activity to promote microtubule growth, whereas tau's activity to promote microtubules was suppressed much more after phosphorylation in the presence of heparin. Using recombinant tau fragments we showed that heparin-induced phosphorylation caused a specific shift in electrophoretic mobility indicative of a change in tau's conformation. By aminoterminal sequencing of a tau fragment starting at residue 154 we provide evidence that phosphorylation of serine 156 is responsible for this mobility shift and for the effect on tau's nucleation activity. We conclude that tau's activities to promote growth of existing microtubules and nucleation of new ones are differentially affected by the phosphorylation of specific tau residues. Regulation of the phosphorylation state by substrate modulation may play an important role in regulating tau's function.

摘要

神经元微管相关蛋白tau可促进微管组装,并与轴突形态的发育有关。为了研究磷酸化和底物调节对tau促进现有微管生长及新微管成核的不同活性的影响,我们在存在或不存在酸性底物调节剂肝素的情况下,用环磷酸腺苷依赖性蛋白激酶对细菌表达的人tau进行磷酸化。我们发现,肝素使tau的磷酸化增加了2倍以上,并产生了电泳迁移率降低的tau条带。我们证明,在存在或不存在肝素的情况下,tau的磷酸化同样降低了其促进微管生长的活性,而在存在肝素的情况下磷酸化后,tau促进微管的活性受到的抑制要大得多。使用重组tau片段,我们表明肝素诱导的磷酸化导致电泳迁移率发生特定变化,这表明tau的构象发生了改变。通过对从第154位残基开始的tau片段进行氨基末端测序,我们提供证据表明丝氨酸156的磷酸化导致了这种迁移率变化以及对tau成核活性的影响。我们得出结论,tau促进现有微管生长和新微管成核的活性受到特定tau残基磷酸化的不同影响。通过底物调节来调控磷酸化状态可能在调节tau的功能中起重要作用。

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