首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Familial FTDP-17 Missense Mutations Inhibit Microtubule Assembly-promoting Activity of Tau by Increasing Phosphorylation at Ser202 in Vitro
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Familial FTDP-17 Missense Mutations Inhibit Microtubule Assembly-promoting Activity of Tau by Increasing Phosphorylation at Ser202 in Vitro

机译:家族性FTDP-17错义突变抑制微管 通过增加磷酸化Tau的组装促进活性 Ser202输入 体外

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摘要

In Alzheimer disease (AD), frontotemporal dementia and parkinsonism linked to chromosome 17 (FTDP-17) and other tauopathies, tau accumulates and forms paired helical filaments (PHFs) in the brain. Tau isolated from PHFs is phosphorylated at a number of sites, migrates as ∼60-, 64-, and 68-kDa bands on SDS-gel, and does not promote microtubule assembly. Upon dephosphorylation, the PHF-tau migrates as ∼50–60-kDa bands on SDS-gels in a manner similar to tau that is isolated from normal brain and promotes microtubule assembly. The site(s) that inhibits microtubule assembly-promoting activity when phosphorylated in the diseased brain is not known. In this study, when tau was phosphorylated by Cdk5 in vitro, its mobility shifted from ∼60-kDa bands to ∼64- and 68-kDa bands in a time-dependent manner. This mobility shift correlated with phosphorylation at Ser202, and Ser202 phosphorylation inhibited tau microtubule-assembly promoting activity. When several tau point mutants were analyzed, G272V, P301L, V337M, and R406W mutations associated with FTDP-17, but not nonspecific mutations S214A and S262A, promoted Ser202 phosphorylation and mobility shift to a ∼68-kDa band. Furthermore, Ser202 phosphorylation inhibited the microtubule assembly-promoting activity of FTDP-17 mutants more than of WT. Our data indicate that FTDP-17 missense mutations, by promoting phosphorylation at Ser202, inhibit the microtubule assembly-promoting activity of tau in vitro, suggesting that Ser202 phosphorylation plays a major role in the development of NFT pathology in AD and related tauopathies.
机译:在阿尔茨海默病(AD)中,额叶颞痴呆和帕金森氏症与17号染色​​体(FTDP-17)和其他tauopathies相关,tau在大脑中积累并形成成对的螺旋状细丝(PHF)。从PHF中分离出来的Tau在许多位点都被磷酸化,在SDS-gel上以〜60、64和68kDa的条带迁移,并且不促进微管组装。脱磷酸后,PHF-tau在SDS-凝胶上以〜50–60-kDa的条带迁移,其方式类似于从正常大脑分离出的tau并促进微管组装。当在患病的大脑中磷酸化时抑制微管组装促进活性的位点是未知的。在这项研究中,当tau在体外被Cdk5磷酸化时,其迁移率以时间依赖性的方式从60kDa的条带变为64kDa和68kDa的条带。这种迁移率的变化与Ser 202 处的磷酸化相关,而Ser 202 的磷酸化抑制了tau微管组装的促进活性。分析了几个tau点突变体后,与FTDP-17相关的G272V,P301L,V337M和R406W突变而非非特异性突变S214A和S262A促进了Ser 202 磷酸化,并且迁移率迁移至约68- kDa带。此外, Ser 202 磷酸化抑制微管组装 FTDP-17突变体的活性高于WT。我们的数据表明FTDP-17 通过促进Ser 202 处的磷酸化来实现错义突变抑制 tau在体外的微管组装促进活性 提示Ser 202 磷酸化在 NFT病理在AD和相关疾病中的发展。

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