Generation of human induced pluripotent stem cell-derived cortical neurons expressing the six tau isoforms.

IF 3.4 3区 医学 Q2 NEUROSCIENCES
Houbo Jiang, Zichun Xiao, Komal Saleem, Ping Zhong, Li Li, Gaurav Chhetri, Pei Li, Zhongjiao Jiang, Zhen Yan, Jian Feng
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Abstract

BackgroundThe alternative splicing (AS) of MAPT, which encodes Tau, in the adult human brain produces six major isoforms that play critical roles in the pathogenesis of tauopathies including Alzheimer's disease. Previous efforts have failed to differentiate human induced pluripotent stem cells (hiPSCs) to cortical neurons expressing the six isoforms of Tau.ObjectiveWe aim to develop a differentiation method capable of producing the six Tau isoforms in hiPSC-derived cortical neurons.MethodsWe searched for the optimal concentration, duration and treatment window of morphogens in the differentiation of hiPSCs through embryoid bodies (EBs) to dorsal forebrain neuroepithelial cells then to cortical neurons.ResultsThe combined inhibition of WNT, SHH, and SMAD signaling in EBs generated neuroepithelial cells expressing appropriate dorsal forebrain markers, while suppressing ventral, midbrain, and hindbrain genes. Further differentiation in neurogenic and neurotrophic factors produced MAP2+ neurons at day 18. The iPSC-derived neurons expressed markers of all cortical layers and exhibited synapse formation and synaptic physiology. In addition, MAP2+ neurons and mitotic cells expressing radial glial markers formed aggregates that could be dissociated to produce mature neurons with similar properties. Most importantly, the six Tau isoforms were expressed from day 80 in a developmentally regulated manner, modeling the situation in human brains on an accelerated timeline.ConclusionsThis chemically defined differentiation method produces a key hallmark of mature human cortical neurons by expressing the six main splicing isoforms of Tau. It will greatly facilitate disease modeling and therapeutic discovery for many human brain disorders involving cortical neurons.

表达六种tau亚型的人诱导多能干细胞衍生的皮质神经元的产生。
成人大脑中编码Tau蛋白的MAPT的选择性剪接(AS)产生六种主要亚型,在包括阿尔茨海默病在内的Tau病的发病机制中发挥关键作用。先前的研究未能将人类诱导多能干细胞(hiPSCs)分化为表达Tau蛋白六种亚型的皮质神经元。目的建立一种在hipsc衍生的皮层神经元中产生6种Tau亚型的分化方法。方法探索hipsc经胚状体(EBs)向前脑背神经上皮细胞再向皮质神经元分化时形成因子的最佳浓度、持续时间和处理窗口。结果对EBs中WNT、SHH和SMAD信号的联合抑制产生了表达相应前脑背侧标记的神经上皮细胞,同时抑制了腹侧、中脑和后脑基因。神经源性因子和神经营养因子的进一步分化在第18天产生MAP2+神经元。ipsc衍生的神经元表达所有皮质层的标记物,并表现出突触形成和突触生理学。此外,MAP2+神经元和表达放射状胶质标记物的有丝分裂细胞形成聚集体,可以分离产生具有相似特性的成熟神经元。最重要的是,六种Tau亚型从第80天开始以发育调节的方式表达,模拟了人类大脑在加速时间轴上的情况。结论这种化学定义的分化方法通过表达Tau蛋白的六个主要剪接异构体,产生了成熟的人类皮质神经元的关键标志。它将极大地促进疾病建模和许多涉及皮质神经元的人类大脑疾病的治疗发现。
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来源期刊
Journal of Alzheimer's Disease
Journal of Alzheimer's Disease 医学-神经科学
CiteScore
6.40
自引率
7.50%
发文量
1327
审稿时长
2 months
期刊介绍: The Journal of Alzheimer''s Disease (JAD) is an international multidisciplinary journal to facilitate progress in understanding the etiology, pathogenesis, epidemiology, genetics, behavior, treatment and psychology of Alzheimer''s disease. The journal publishes research reports, reviews, short communications, hypotheses, ethics reviews, book reviews, and letters-to-the-editor. The journal is dedicated to providing an open forum for original research that will expedite our fundamental understanding of Alzheimer''s disease.
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