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Immunoelectron Microscopic and Biochemical Studies of Caspase-Cleaved Tau in a Mouse Model of Tauopathy

机译:半胱氨酸天冬氨酸蛋白酶切割的牛头在小鼠模型的免疫电子显微镜和生化研究

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摘要

Neurofibrillary tangles (NFTs) have been implicated in mediating neuronal death and disease progression in human tauopathies; however, mounting in vivo data suggest that NFTs may not be the primary initiators of neurotoxicity. Caspase activity has been implicated in processes associated with the development of tauopathy, but the position that caspase activation holds in neurodegenerative cascades remains uncertain. Using multiphoton real time imaging microscopy, de Calignon et al recently demonstrated that caspase activation precedes and leads to tangle formation within 24 hours in the rTg4510 mouse model of tauopathy. Here, we used immunoelectron microscopy to determine whether caspase-cleaved tau was present in NFTs of rTg4510 mice. Using a caspase-cleaved-tau-specific antibody (TauC3), we found very little immunogold labeling in NFTs in the brains of rTg4510 mice. By immunohistochemistry, the number of TauC3-positive neurons was far less than the numbers of neurons stained with the MC1 antibody, which recognizes abnormal conformations of tau. Biochemically, caspase-cleaved tau was barely detectable in fractions of rTg4510 mouse brain extracts. Our data suggest that caspase activation might be one of multiple routes through which NFT formation occurs, rather than an obligatory initiation step in pathological tau production in rTg4510 mice.
机译:神经原纤维缠结(NFTs)已被认为可以介导人tauopathies的神经元死亡和疾病进展。然而,越来越多的体内数据表明,NFT可能不是神经毒性的主要起因。 Caspase活性已被牵涉到与tauopathy的发展相关的过程中,但caspase激活在神经退行性级联反应中的位置仍然不确定。 de Calignon等人最近使用多光子实时成像显微镜证实,在tTg4510 tauopathy小鼠模型中,胱天蛋白酶激活先于并导致缠结的形成,时间为24小时。在这里,我们使用免疫电子显微镜来确定在rTg4510小鼠的NFT中是否存在caspase切割的tau。使用半胱天冬酶切割的tau特异性抗体(TauC3),我们在rTg4510小鼠的大脑中的NFT中发现了很少的免疫金标记。通过免疫组织化学,TauC3阳性神经元的数量远远少于用MC1抗体染色的神经元的数量,MC1抗体可识别tau的异常构象。从生化角度看,在rTg4510小鼠脑提取物的馏分中几乎检测不到caspase裂解的tau。我们的数据表明,胱天蛋白酶的激活可能是NFT形成的多种途径之一,而不是rTg4510小鼠病理性tau产生的强制性起始步骤。

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