iPSC-induced neurons with the V337M MAPT mutation are selectively vulnerable to caspase-mediated cleavage of tau and apoptotic cell death

IF 2.6 3区 医学 Q3 NEUROSCIENCES
Panos Theofilas , Chao Wang , David Butler , Dulce O. Morales , Cathrine Petersen , Andrew Ambrose , Brian Chin , Teddy Yang , Shireen Khan , Raymond Ng , Rakez Kayed , Celeste M. Karch , Bruce L. Miller , Jason E. Gestwicki , Li Gan , Sally Temple , Michelle R. Arkin , Lea T. Grinberg
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引用次数: 0

Abstract

Background

Tau post-translational modifications (PTMs) result in the gradual build-up of abnormal tau and neuronal degeneration in tauopathies, encompassing variants of frontotemporal lobar degeneration (FTLD) and Alzheimer's disease (AD). Tau proteolytically cleaved by active caspases, including caspase-6, may be neurotoxic and prone to self-aggregation. Also, our recent findings show that caspase-6 truncated tau represents a frequent and understudied aspect of tau pathology in AD in addition to phospho-tau pathology. In AD and Pick's disease, a large percentage of caspase-6 associated cleaved-tau positive neurons lack phospho-tau, suggesting that many vulnerable neurons to tau pathology go undetected when using conventional phospho-tau antibodies and possibly will not respond to phospho-tau based therapies. Therefore, therapeutic strategies against caspase cleaved-tau pathology could be necessary to modulate the extent of tau abnormalities in AD and other tauopathies.

Methods

To understand the timing and progression of caspase activation, tau cleavage, and neuronal death, we created two mAbs targeting caspase-6 tau cleavage sites and probed postmortem brain tissue from an individual with FTLD due to the V337M MAPT mutation. We then assessed tau cleavage and apoptotic stress response in cortical neurons derived from induced pluripotent stem cells (iPSCs) carrying the FTD-related V337M MAPT mutation. Finally, we evaluated the neuroprotective effects of caspase inhibitors in these iPSC-derived neurons.

Results

FTLD V337M MAPT postmortem brain showed positivity for both cleaved tau mAbs and active caspase-6. Relative to isogenic wild-type MAPT controls, V337M MAPT neurons cultured for 3 months post-differentiation showed a time-dependent increase in pathogenic tau in the form of caspase-cleaved tau, phospho-tau, and higher levels of tau oligomers. Accumulation of toxic tau species in V337M MAPT neurons was correlated with increased vulnerability to pro-apoptotic stress. Notably, this mutation-associated cell death was pharmacologically rescued by the inhibition of effector caspases.

Conclusions

Our results suggest an upstream, time-dependent accumulation of caspase-6 cleaved tau in V337M MAPT neurons promoting neurotoxicity. These processes can be reversed by caspase inhibition. These results underscore the potential of developing caspase-6 inhibitors as therapeutic agents for FTLD and other tauopathies. Additionally, they highlight the promise of using caspase-cleaved tau as biomarkers for these conditions.

具有 V337M MAPT 突变的 iPSC 诱导的神经元选择性地易受 caspase 介导的 tau 蛋白裂解和细胞凋亡的影响。
背景:Tau翻译后修饰(PTMs)会导致异常tau逐渐堆积,并导致tau病(包括额颞叶变性(FTLD)和阿尔茨海默病(AD)的变种)中的神经元变性。被活性caspase(包括caspase-6)蛋白水解的Tau可能具有神经毒性并容易自我聚集。此外,我们最近的研究结果表明,除了磷酸化tau病理学外,caspase-6截短的tau是AD中tau病理学的一个常见且未被充分研究的方面。在AD和Pick氏病中,很大一部分与caspase-6相关的裂解tau阳性神经元缺乏磷酸化tau,这表明使用传统的磷酸化tau抗体时,许多易受tau病理学影响的神经元未被检测到,而且可能不会对基于磷酸化tau的疗法产生反应。因此,针对caspase裂解tau病理学的治疗策略可能是调节AD和其他tau病的tau异常程度所必需的:为了了解caspase激活、tau裂解和神经元死亡的时间和进展,我们制作了两种靶向caspase-6 tau裂解位点的mAbs,并对一名因V337M MAPT突变而患有FTLD的患者的死后脑组织进行了检测。然后,我们评估了从携带FTD相关V337M MAPT突变的诱导多能干细胞(iPSC)中提取的皮质神经元的tau裂解和凋亡应激反应。最后,我们评估了caspase抑制剂对这些iPSC衍生神经元的神经保护作用:FTLD V337M MAPT死后大脑中裂解的tau mAbs和活性caspase-6均呈阳性。与同源野生型MAPT对照组相比,分化后培养3个月的V337M MAPT神经元显示出caspase-cleaved tau、phospho-tau和更高水平的tau寡聚体等形式的致病性tau的增加具有时间依赖性。V337M MAPT神经元中毒性tau物种的积累与更易受到促凋亡压力有关。值得注意的是,这种突变相关的细胞死亡可通过抑制效应caspases得到药理挽救:我们的研究结果表明,在 V337M MAPT 神经元中,caspase-6 已裂解 tau 的积累具有上游性和时间依赖性,可促进神经毒性。这些过程可以通过抑制 caspase 逆转。这些结果凸显了开发caspase-6抑制剂作为治疗FTLD和其他tau病的药物的潜力。此外,这些结果还凸显了使用caspase-cleaved tau作为这些疾病的生物标记物的前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
5.60
自引率
0.00%
发文量
65
审稿时长
37 days
期刊介绍: Molecular and Cellular Neuroscience publishes original research of high significance covering all aspects of neurosciences indicated by the broadest interpretation of the journal''s title. In particular, the journal focuses on synaptic maintenance, de- and re-organization, neuron-glia communication, and de-/regenerative neurobiology. In addition, studies using animal models of disease with translational prospects and experimental approaches with backward validation of disease signatures from human patients are welcome.
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