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首页> 外文期刊>Neurochemical research >Inducible Expression of a Truncated Form of Tau in Oligodendrocytes Elicits Gait Abnormalities and a Decrease in Myelin: Implications for Selective CNS Degenerative Diseases
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Inducible Expression of a Truncated Form of Tau in Oligodendrocytes Elicits Gait Abnormalities and a Decrease in Myelin: Implications for Selective CNS Degenerative Diseases

机译:少突胶质细胞中Tau的截短形式的诱导型表达引发步态异常和髓磷脂减少:对选择性中枢神经系统退行性疾病的影响。

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The cytoskeleton protein Tau present in oligodendrocytes (OLGs) promotes cellular process outgrowth and myelination; whereas abnormally hyperphosphorylated Tau has been shown to be present in the most debilitating form of multiple sclerosis and in selective dementias. This research examined the functional consequences of expressing a truncated form of Tau in OLGs during the second postnatal life. In particular, this truncated form of Tau (a dagger Tau) retains the Fyn-binding domain but lacks the microtubule-binding domain. Similar to hyperphosphorylated Tau, a dagger Tau cannot bind the cytoskeleton and is missorted. The Cre/loxP recombination system was used to generate transgenic (TG) founder lines, which contain a Floxed LacZ-STOP cassette to prevent expression of enhanced green fluorescence protein (EGFP)-a dagger Tau. The founder lines were then crossed with a Tamoxifen (TM)-inducible proteolipid protein (PLP)-dependent Cre driver line. Myelin PLP is the major myelin protein in the central nervous system (CNS). TM was given at postnatal day (p) 12 for 3 days, and CNS tissues were collected at p22. Only TG mice with both EGFP-a dagger Tau and Cre manifested an overt phenotype of loss of balance and stumbles starting around p18. CNS tissues obtained from TM-treated EGFP-a dagger Tau/Cre double transgenic mice had recombined PCR products, GFP, and diminished brain myelin. GFP was expressed in OLGs, but not in neurons or astrocytes. On the contrary, TM-treated TG mice with only one of the two transgenes, i.e., Cre or Tau, did not have recombinant PCR products, GFP, diminished myelin, or abnormal phenotype. Thus, this inducible model shows for the first time that a non-microtubule-associated Tau protein in OLGs elicits both myelin decrease and gait abnormalities, similar to the occurrence in selective demyelinating and neurodegenerative diseases.
机译:少突胶质细胞(OLG)中存在的细胞骨架蛋白Tau促进细胞过程的生长和髓鞘形成。异常高磷酸化的Tau已被证明以多发性硬化的最虚弱形式和选择性痴呆症存在。这项研究检查了在产后第二个生命中在OLG中表达截短形式的Tau的功能后果。特别地,这种截头形式的Tau(匕首Tau)保留了Fyn结合结构域,但缺乏微管结合结构域。类似于高磷酸化的Tau,匕首Tau无法结合细胞骨架并被错位。 Cre / loxP重组系统用于生成转基因(TG)创建者系,该系含有Floxed LacZ-STOP盒,以防止表达增强的绿色荧光蛋白(EGFP)-匕首Tau。然后,将创建者系与依赖于他莫昔芬(TM)诱导的蛋白脂蛋白(PLP)的Cre驱动系杂交。髓磷脂PLP是中枢神经系统(CNS)中的主要髓磷脂蛋白。在出生后第12天给予TM 3天,在p22收集CNS组织。只有同时带有EGFP-a Tau Tau和Cre的TG小鼠表现出明显的失衡表型,并在p18左右开始跌倒。从经TM处理的EGFP-a匕首Tau / Cre双转基因小鼠中获得的CNS组织具有重组的PCR产物,GFP和减少的脑髓磷脂。 GFP在OLG中表达,但在神经元或星形胶质细胞中不表达。相反,仅用两个转基因之一即Cre或Tau进行TM处理的TG小鼠没有重组PCR产物GFP,髓鞘蛋白减少或表型异常。因此,这种可诱导模型首次显示,OLG中非微管相关的Tau蛋白既引起髓鞘减少又导致步态异常,类似于选择性脱髓鞘和神经退行性疾病的发生。

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