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微管相关蛋白tau的寡聚化由其N端序列介导:对正常和病理性tau作用的启示。

Oligomerization of the microtubule-associated protein tau is mediated by its N-terminal sequences: implications for normal and pathological tau action.

作者信息

Feinstein H Eric, Benbow Sarah J, LaPointe Nichole E, Patel Nirav, Ramachandran Srinivasan, Do Thanh D, Gaylord Michelle R, Huskey Noelle E, Dressler Nicolette, Korff Megan, Quon Brady, Cantrell Kristi Lazar, Bowers Michael T, Lal Ratnesh, Feinstein Stuart C

机构信息

Neuroscience Research Institute, University of California, Santa Barbara, California, USA.

Department of Molecular, Cellular and Developmental Biology, University of California, Santa Barbara, California, USA.

出版信息

J Neurochem. 2016 Jun;137(6):939-54. doi: 10.1111/jnc.13604. Epub 2016 Apr 20.

Abstract

Despite extensive structure-function analyses, the molecular mechanisms of normal and pathological tau action remain poorly understood. How does the C-terminal microtubule-binding region regulate microtubule dynamics and bundling? In what biophysical form does tau transfer trans-synaptically from one neuron to another, promoting neurodegeneration and dementia? Previous biochemical/biophysical work led to the hypothesis that tau can dimerize via electrostatic interactions between two N-terminal 'projection domains' aligned in an anti-parallel fashion, generating a multivalent complex capable of interacting with multiple tubulin subunits. We sought to test this dimerization model directly. Native gel analyses of full-length tau and deletion constructs demonstrate that the N-terminal region leads to multiple bands, consistent with oligomerization. Ferguson analyses of native gels indicate that an N-terminal fragment (tau(45-230) ) assembles into heptamers/octamers. Ferguson analyses of denaturing gels demonstrates that tau(45-230) can dimerize even in sodium dodecyl sulfate. Atomic force microscopy reveals multiple levels of oligomerization by both full-length tau and tau(45-230) . Finally, ion mobility-mass spectrometric analyses of tau(106-144) , a small peptide containing the core of the hypothesized dimerization region, also demonstrate oligomerization. Thus, multiple independent strategies demonstrate that the N-terminal region of tau can mediate higher order oligomerization, which may have important implications for both normal and pathological tau action. The microtubule-associated protein tau is essential for neuronal development and maintenance, but is also central to Alzheimer's and related dementias. Unfortunately, the molecular mechanisms underlying normal and pathological tau action remain poorly understood. Here, we demonstrate that tau can homo-oligomerize, providing novel mechanistic models for normal tau action (promoting microtubule growth and bundling, suppressing microtubule shortening) and pathological tau action (poisoning of oligomeric complexes).

摘要

尽管进行了广泛的结构-功能分析,但正常和病理性tau蛋白作用的分子机制仍知之甚少。C端微管结合区域是如何调节微管动力学和束集的?tau蛋白以何种生物物理形式跨突触从一个神经元转移到另一个神经元,从而促进神经退行性变和痴呆?先前的生化/生物物理研究提出了一个假说,即tau蛋白可通过两个以反平行方式排列的N端“投影结构域”之间的静电相互作用形成二聚体,产生一种能够与多个微管蛋白亚基相互作用的多价复合物。我们试图直接验证这一二聚化模型。对全长tau蛋白和缺失构建体的天然凝胶分析表明,N端区域导致多条条带,这与寡聚化一致。对天然凝胶的弗格森分析表明,一个N端片段(tau(45 - 230))组装成七聚体/八聚体。对变性凝胶的弗格森分析表明,tau(45 - 230)即使在十二烷基硫酸钠中也能形成二聚体。原子力显微镜揭示了全长tau蛋白和tau(45 - 230)的多个寡聚化水平。最后,对包含假定二聚化区域核心的小肽tau(106 - 144)的离子淌度-质谱分析也证实了寡聚化。因此,多种独立策略表明,tau蛋白的N端区域可介导高阶寡聚化,这可能对正常和病理性tau蛋白作用都具有重要意义。微管相关蛋白tau对神经元的发育和维持至关重要,但也是阿尔茨海默病及相关痴呆的核心因素。不幸的是,正常和病理性tau蛋白作用的分子机制仍知之甚少。在这里,我们证明tau蛋白可以同源寡聚化,为正常tau蛋白作用(促进微管生长和束集、抑制微管缩短)和病理性tau蛋白作用(寡聚复合物中毒)提供了新的机制模型。

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