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首页> 外文期刊>Human Molecular Genetics >An insoluble frontotemporal lobar degeneration-associated TDP-43 C-terminal fragment causes neurodegeneration and hippocampus pathology in transgenic mice
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An insoluble frontotemporal lobar degeneration-associated TDP-43 C-terminal fragment causes neurodegeneration and hippocampus pathology in transgenic mice

机译:不溶性额颞叶变性相关的TDP-43 C端片段导致转基因小鼠神经变性和海马病理学

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Frontotemporal dementia (FTD) causes progressive personality, behavior and/or language disturbances and represents the second most common form of dementia under the age of 65. Over half of all FTD cases are classified pathologically as frontotemporal lobar degeneration (FTLD) with TAR DNA-binding protein of 43 kDa (TDP-43) pathology (FTLD-TDP). In FTLD-TDP brains, TDP-43 is phosphorylated, C-terminally cleaved, lost from the nucleus and accumulates in the cytoplasm and processes of neurons and glia. However, the contribution of TDP-43 C-terminal fragments (CTFs) to pathogenesis remains poorly understood. Here, we developed transgenic (Tg) mice with forebrain Camk2a-controlled doxycycline-suppressible expression of a TDP-43 CTF (amino acids 208-414, designated 208 TDP-43 CTF), previously identified in FTLD-TDP brains. In these 208 TDP-43 Tg mice, detergent-insoluble 208 TDP-43 CTF was present in a diffuse punctate pattern in neuronal cytoplasm and dendrites without forming large cytoplasmic inclusions. Remarkably, the hippocampus showed progressive neuron loss and astrogliosis in the dentate gyrus (DG). This was accompanied by phosphorylated TDP-43 in the CA1 subfield, and ubiquitin and mitochondria accumulations in the stratum lacunosum moleculare (SLM) layer, without loss of endogenous nuclear TDP-43. Importantly, 208 TDP-43 CTF and phosphorylated TDP-43 were rapidly cleared when CTF expression was suppressed in aged Tg mice, which ameliorated neuron loss in the DG despite persistence of ubiquitin accumulation in the SLM. Our results demonstrate that Camk2a-directed 208 TDP-43 CTF overexpression is sufficient to cause hippocampal pathology and neurodegeneration in vivo, suggesting an active role for TDP-43 CTFs in the pathogenesis of FTLD-TDP and related TDP-43 proteinopathies.
机译:额颞叶痴呆(FTD)会导致进行性人格,行为和/或语言障碍,并代表65岁以下痴呆症的第二大常见形式。在所有FTD病例中,一半以上被病理分类为额颞叶变性(FTLD)和TAR DNA- 43 kDa(TDP-43)病理(FTLD-TDP)的结合蛋白。在FTLD-TDP大脑中,TDP-43被磷酸化,C端裂解,从核中丢失并累积在细胞质以及神经元和神经胶质的过程中。但是,TDP-43 C末端片段(CTF)对发病机理的贡献仍然知之甚少。在这里,我们开发了具有前脑Camk2a控制的强力霉素可抑制性表达的TDP-43 CTF(氨基酸208-414,命名为208 TDP-43 CTF)的转基因(Tg)小鼠,先前已在FTLD-TDP脑中鉴定出这种表达。在这208只TDP-43 Tg小鼠中,去污剂不溶性208 TDP-43 CTF以分散的点状分布在神经元细胞质和树突中,而没有形成大的细胞质内含物。值得注意的是,海马在齿状回(DG)中显示出进行性神经元丧失和星形胶质细胞变性。这伴随着CA1子域中的磷酸化TDP-43,以及空洞分子(SLM)层中的泛素和线粒体积累,而没有内源性核TDP-43的损失。重要的是,当在老龄Tg小鼠中抑制CTF表达时,迅速清除了208个TDP-43 CTF和磷酸化的TDP-43,尽管SLM中泛素的持续存在,但改善了DG中神经元的丢失。我们的研究结果表明,Camk2a指导的208 TDP-43 CTF的过量表达足以在体内引起海马病理和神经退行性变,表明TDP-43 CTF在FTLD-TDP和相关TDP-43蛋白病的发病机理中具有积极作用。

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