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TSC 患者来源同基因神经祖细胞揭示了早期神经发育表型的改变和雷帕霉素诱导的 MNK-eIF4E 信号通路。

TSC patient-derived isogenic neural progenitor cells reveal altered early neurodevelopmental phenotypes and rapamycin-induced MNK-eIF4E signaling.

机构信息

1Center for Genomic Medicine, Massachusetts General Hospital, Boston, MA 02114 USA.

2MERCK Research Laboratories, Boston, MA 02115 USA.

出版信息

Mol Autism. 2020 Jan 6;11(1):2. doi: 10.1186/s13229-019-0311-3. eCollection 2020.

Abstract

BACKGROUND

Tuberous sclerosis complex (TSC) is a neurodevelopmental disorder with frequent occurrence of epilepsy, autism spectrum disorder (ASD), intellectual disability (ID), and tumors in multiple organs. The aberrant activation of mTORC1 in TSC has led to treatment with mTORC1 inhibitor rapamycin as a lifelong therapy for tumors, but TSC-associated neurocognitive manifestations remain unaffected by rapamycin.

METHODS

Here, we generated patient-specific, induced pluripotent stem cells (iPSCs) from a TSC patient with a heterozygous, germline, nonsense mutation in exon 15 of and established an isogenic set of heterozygous (Het), null and corrected wildtype (Corr-WT) iPSCs using CRISPR/Cas9-mediated gene editing. We differentiated these iPSCs into neural progenitor cells (NPCs) and examined neurodevelopmental phenotypes, signaling and changes in gene expression by RNA-seq.

RESULTS

Differentiated NPCs revealed enlarged cell size in TSC1-Het and Null NPCs, consistent with mTORC1 activation. TSC1-Het and Null NPCs also revealed enhanced proliferation and altered neurite outgrowth in a genotype-dependent manner, which was not reversed by rapamycin. Transcriptome analyses of TSC1-NPCs revealed differentially expressed genes that display a genotype-dependent linear response, i.e., genes upregulated/downregulated in Het were further increased/decreased in Null. In particular, genes linked to ASD, epilepsy, and ID were significantly upregulated or downregulated warranting further investigation. In TSC1-Het and Null NPCs, we also observed basal activation of ERK1/2, which was further activated upon rapamycin treatment. Rapamycin also increased MNK1/2-eIF4E signaling in TSC1-deficient NPCs.

CONCLUSION

MEK-ERK and MNK-eIF4E pathways regulate protein translation, and our results suggest that aberrant translation distinct in TSC1/2-deficient NPCs could play a role in neurodevelopmental defects. Our data showing upregulation of these signaling pathways by rapamycin support a strategy to combine a MEK or a MNK inhibitor with rapamycin that may be superior for TSC-associated CNS defects. Importantly, our generation of isogenic sets of NPCs from TSC patients provides a valuable platform for translatome and large-scale drug screening studies. Overall, our studies further support the notion that early developmental events such as NPC proliferation and initial process formation, such as neurite number and length that occur prior to neuronal differentiation, represent primary events in neurogenesis critical to disease pathogenesis of neurodevelopmental disorders such as ASD.

摘要

背景

结节性硬化症(TSC)是一种神经发育障碍,常伴有癫痫、自闭症谱系障碍(ASD)、智力障碍(ID)和多器官肿瘤。TSC 中 mTORC1 的异常激活导致使用 mTORC1 抑制剂雷帕霉素作为肿瘤的终身治疗,但雷帕霉素对 TSC 相关的神经认知表现没有影响。

方法

在这里,我们从一个携带 15 号外显子杂合、种系、无意义突变的 TSC 患者中生成了患者特异性诱导多能干细胞(iPSC),并使用 CRISPR/Cas9 介导的基因编辑建立了杂合(Het)、缺失和校正野生型(Corr-WT)iPSC 的同基因系。我们将这些 iPSC 分化为神经祖细胞(NPC),并通过 RNA-seq 检查神经发育表型、信号和基因表达的变化。

结果

分化的 NPC 显示 TSC1-Het 和 Null NPC 细胞大小增大,这与 mTORC1 的激活一致。TSC1-Het 和 Null NPC 还表现出以基因型依赖的方式增强的增殖和改变的神经突生长,这不能被雷帕霉素逆转。TSC1-NPC 的转录组分析显示差异表达的基因显示出基因型依赖性的线性反应,即 Het 中上调/下调的基因在 Null 中进一步增加/减少。特别是,与 ASD、癫痫和 ID 相关的基因显著上调或下调,值得进一步研究。在 TSC1-Het 和 Null NPC 中,我们还观察到 ERK1/2 的基础激活,雷帕霉素处理后进一步激活。雷帕霉素还增加了 TSC1 缺陷 NPC 中的 MNK1/2-eIF4E 信号。

结论

MEK-ERK 和 MNK-eIF4E 途径调节蛋白质翻译,我们的结果表明,TSC1/2 缺陷 NPC 中独特的翻译异常可能在神经发育缺陷中发挥作用。我们的研究结果表明,雷帕霉素上调这些信号通路,支持将 MEK 或 MNK 抑制剂与雷帕霉素联合使用的策略,这可能对 TSC 相关的中枢神经系统缺陷更有效。重要的是,我们从 TSC 患者中生成同基因 NPC 系提供了一个有价值的转译组和大规模药物筛选研究平台。总的来说,我们的研究进一步支持了这样一种观点,即早期发育事件,如 NPC 增殖和初始过程形成,如神经元分化前的神经突数量和长度,代表神经发生中对 ASD 等神经发育障碍的发病机制至关重要的关键事件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0274/6945400/0ef66bc68887/13229_2019_311_Fig1_HTML.jpg

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