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首页> 外文期刊>Human Molecular Genetics >TDP-43 causes differential pathology in neuronal versus glial cells in the mouse brain
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TDP-43 causes differential pathology in neuronal versus glial cells in the mouse brain

机译:TDP-43导致小鼠大脑神经元和神经胶质细胞的病理差异

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Mutations in TAR DNA-binding protein 43 (TDP-43) are associated with familial forms of amyotrophic lateral sclerosis and frontotemporal lobar degeneration. Although recent studies have revealed that mutant TDP-43 in neuronal and glial cells is toxic, how mutant TDP-43 causes primarily neuronal degeneration in an age-dependent manner remains unclear. Using adeno-associated virus (AAV) that expresses mutant TDP-43 (M337V) ubiquitously, we found that mutant TDP-43 accumulates preferentially in neuronal cells in the postnatal mouse brain. We then ubiquitously or selectively expressed mutant TDP-43 in neuronal and glial cells in the striatum of adult mouse brains via stereotaxic injection of AAV vectors and found that it also preferentially accumulates in neuronal cells. Expression of mutant TDP-43 in neurons in the striatum causes more severe degeneration, earlier death and more robust symptoms in mice than expression of mutant TDP-43 in glial cells; however, aging increases the expression of mutant TDP-43 in glial cells, and expression of mutant TDP-43 in older mice caused earlier onset of phenotypes and more severe neuropathology than that in younger mice. Although expression of mutant TDP-43 in glial cells via stereotaxic injection does not lead to robust neurological phenotypes, systemic inhibition of the proteasome activity via MG132 in postnatal mice could exacerbate glial TDP-43-mediated toxicity and cause mice to die earlier. Consistently, this inhibition increases the expression of mutant TDP-43 in glial cells in mouse brains. Thus, the differential accumulation of mutant TDP-43 in neuronal versus glial cells contributes to the preferential toxicity of mutant TDP-43 in neuronal cells and age-dependent pathology.
机译:TAR DNA结合蛋白43(TDP-43)中的突变与肌萎缩性侧索硬化和额颞叶变性的家族形式有关。尽管最近的研究表明突变型TDP-43在神经元和神经胶质细胞中是有毒的,但尚不清楚突变型TDP-43如何以年龄依赖性方式引起神经元变性。使用广泛表达突变型TDP-43(M337V)的腺相关病毒(AAV),我们发现突变型TDP-43优先在出生后小鼠大脑的神经元细胞中积累。然后,我们通过立体定位注射AAV载体在成年小鼠大脑纹状体的神经元和神经胶质细胞中普遍或选择性表达突变型TDP-43,发现它也优先在神经元细胞中蓄积。与神经胶质细胞中突变TDP-43的表达相比,纹状体中神经元中突变TDP-43的表达引起小鼠更严重的变性,更早的死亡和更健壮的症状。然而,衰老增加了胶质细胞中突变型TDP-43的表达,而年龄较大的小鼠中突变型TDP-43的表达导致表型的发作更早,而神经病理学则较年轻的小鼠更为严重。尽管通过立体定位注射在胶质细胞中表达突变型TDP-43不会导致强大的神经表型,但通过MG132对蛋白酶体活性的系统性抑制可能会加重胶质TDP-43介导的毒性并导致小鼠更早死亡。一致地,这种抑制作用增加了小鼠脑胶质细胞中突变型TDP-43的表达。因此,突变型TDP-43在神经元细胞和神经胶质细胞中的差异积累有助于突变型TDP-43在神经元细胞和年龄依赖性病理中的优先毒性。

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