Departamento de Química Física Aplicada, Universidad Autónoma de Madrid, Madrid, Spain Centro de Biología Molecular Severo Ochoa, CSIC, Madrid, Spain.
Departamento de Química Física Aplicada, Universidad Autónoma de Madrid, Madrid, Spain.
J Alzheimers Dis. 2014;39(3):649-60. doi: 10.3233/JAD-131415.
Tau protein has been proposed as a trigger of Alzheimer's disease once it is hyperphosphorylated. However, the role that native tau forms play inside the neuronal nucleus remains unclear. In this work we present results concerning the interaction of tau protein with double-stranded DNA, single-stranded DNA, and also with a histone-DNA complex. The tau-DNA interaction results in a structure resembling the beads-on-a-string form produced by the binding of histone to DNA. DNA retardation assays show that tau and histone induce similar DNA retardation. A surface plasmon resonance study of tau-DNA interaction also confirms the minor groove of DNA as a binding site for tau, similarly to the histone binding. A residual binding of tau to DNA in the presence of Distamycin A, a minor groove binder, suggests the possibility that additional structural domains on DNA may be involved in tau interaction. Finally, DNA melting experiments show that, according to the Zipper model of helix-coil transition, the binding of tau increases the possibility of opening the DNA double helix in isolated points along the chain, upon increasing temperature. This behavior is analogous to histones and supports the previously reported idea that tau could play a protective role in stress situations. Taken together, these results show a similar behavior of tau and histone concerning DNA binding, suggesting that post-translational modifications on tau might impair the role that, by modulating the DNA function, might be attributable to the DNA-tau interaction.
tau 蛋白一旦发生过度磷酸化,就会被认为是阿尔茨海默病的触发因素。然而,tau 蛋白在神经元核内的天然形式所起的作用尚不清楚。在这项工作中,我们介绍了 tau 蛋白与双链 DNA、单链 DNA 以及组蛋白-DNA 复合物相互作用的结果。tau-DNA 相互作用产生的结构类似于组蛋白与 DNA 结合产生的珠串形式。DNA 阻滞实验表明,tau 和组蛋白诱导相似的 DNA 阻滞。tau-DNA 相互作用的表面等离子体共振研究也证实了 DNA 的小沟是 tau 的结合位点,与组蛋白的结合方式相似。在 Distamycin A(一种小沟结合物)存在的情况下,tau 对 DNA 的残留结合表明,DNA 上可能存在其他结构域参与 tau 相互作用。最后,DNA 融解实验表明,根据螺旋-卷曲转变的 Zipper 模型,随着温度的升高,tau 的结合增加了 DNA 双链在链上的孤立点打开的可能性。这种行为类似于组蛋白,并支持 tau 可能在应激情况下发挥保护作用的先前报道的观点。综上所述,tau 和组蛋白在 DNA 结合方面表现出相似的行为,这表明 tau 的翻译后修饰可能会损害其功能,而这种功能可能归因于 tau-DNA 相互作用。