Sarkar Surajit
Department of Genetics, University of Delhi South Campus, Benito Juarez Road, Dhaula Kuan, New Delhi 110 021, India.
J Genet. 2018 Jul;97(3):783-793.
Tauopathies represent a group of neurodegenerative disorder which are characterized by the presence of tau positive specialized argyrophilic and insoluble intraneuronal and glial fibrillar lesions known as neurofibrillary tangles (NFTs). Tau is a neuron specific microtubule binding protein which is required for the integrity and functioning of neuronal cells, and hyperphosphorylation of tau and its subsequent aggregation and paired helical filaments (PHFs) and NFTs has emerged as one of the major pathogenic mechanisms of tauopathies in human and mammalian model systems. Modeling of human tauopathies in results in manifestation of associated phenotypes, and a recent study has demonstrated that similar to human and mammalian models, accumulation of insoluble tau aggregates in the form of typical neurotoxic NFTs triggers the pathogenesis of tauopathies in fly models. In view of the availability of remarkable genetic tools, tau models could be extremely useful for in-depth analysis of the role of NFTs in neurodegeneration and tau aetiology, and also for the screening of novel gene(s) and molecule(s) which suppress the toxicity of tau aggregates.
tau蛋白病是一类神经退行性疾病,其特征是存在tau蛋白阳性的特殊嗜银性和不溶性神经元内和神经胶质纤维状病变,称为神经原纤维缠结(NFTs)。tau是一种神经元特异性微管结合蛋白,对神经元细胞的完整性和功能是必需的,tau蛋白的过度磷酸化及其随后的聚集以及双螺旋丝(PHFs)和NFTs已成为人类和哺乳动物模型系统中tau蛋白病的主要致病机制之一。在果蝇中建立人类tau蛋白病模型会导致相关表型的出现,最近一项研究表明,与人类和哺乳动物模型相似,典型神经毒性NFTs形式的不溶性tau聚集体的积累会引发果蝇模型中tau蛋白病的发病机制。鉴于有出色的遗传工具,果蝇tau模型对于深入分析NFTs在神经退行性变和tau病因学中的作用极其有用,也可用于筛选抑制tau聚集体毒性的新基因和分子。