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高通量筛选鉴定出组蛋白去乙酰化酶抑制剂,可调节 7q11.23 微重复自闭症谱系障碍患者来源的皮质神经元中的 GTF2I 表达。

High-throughput screening identifies histone deacetylase inhibitors that modulate GTF2I expression in 7q11.23 microduplication autism spectrum disorder patient-derived cortical neurons.

机构信息

Department of Oncology and Hemato-Oncology, University of Milan, c/o High Definition Disease Modelling Lab: Stem Cell and Organoid Epigenetics, IEO, European Institute of Oncology IRCCS, Via Adamello 16, 20139, Milan, Italy.

High Definition Disease Modelling Lab: Stem Cell and Organoid Epigenetics, IEO, European Institute of Oncology IRCCS, Via Adamello 16, 20139, Milan, Italy.

出版信息

Mol Autism. 2020 Nov 19;11(1):88. doi: 10.1186/s13229-020-00387-6.

Abstract

BACKGROUND

Autism spectrum disorder (ASD) is a highly prevalent neurodevelopmental condition affecting almost 1% of children, and represents a major unmet medical need with no effective drug treatment available. Duplication at 7q11.23 (7Dup), encompassing 26-28 genes, is one of the best characterized ASD-causing copy number variations and offers unique translational opportunities, because the hemideletion of the same interval causes Williams-Beuren syndrome (WBS), a condition defined by hypersociability and language strengths, thereby providing a unique reference to validate treatments for the ASD symptoms. In the above-indicated interval at 7q11.23, defined as WBS critical region, several genes, such as GTF2I, BAZ1B, CLIP2 and EIF4H, emerged as critical for their role in the pathogenesis of WBS and 7Dup both from mouse models and human studies.

METHODS

We performed a high-throughput screening of 1478 compounds, including central nervous system agents, epigenetic modulators and experimental substances, on patient-derived cortical glutamatergic neurons differentiated from our cohort of induced pluripotent stem cell lines (iPSCs), monitoring the transcriptional modulation of WBS interval genes, with a special focus on GTF2I, in light of its overriding pathogenic role. The hits identified were validated by measuring gene expression by qRT-PCR and the results were confirmed by western blotting.

RESULTS

We identified and selected three histone deacetylase inhibitors (HDACi) that decreased the abnormal expression level of GTF2I in 7Dup cortical glutamatergic neurons differentiated from four genetically different iPSC lines. We confirmed this effect also at the protein level.

LIMITATIONS

In this study, we did not address the molecular mechanisms whereby HDAC inhibitors act on GTF2I. The lead compounds identified will now need to be advanced to further testing in additional models, including patient-derived brain organoids and mouse models recapitulating the gene imbalances of the 7q11.23 microduplication, in order to validate their efficacy in rescuing phenotypes across multiple functional layers within a translational pipeline towards clinical use.

CONCLUSIONS

These results represent a unique opportunity for the development of a specific class of compounds for treating 7Dup and other forms of intellectual disability and autism.

摘要

背景

自闭症谱系障碍(ASD)是一种常见的神经发育障碍,影响近 1%的儿童,是一种未满足的重大医疗需求,目前尚无有效的药物治疗方法。7q11.23 处的重复(7Dup),包含 26-28 个基因,是最具特征性的 ASD 致病拷贝数变异之一,提供了独特的转化机会,因为同一区间的半缺失会导致威廉姆斯综合征(WBS),这种病症的特点是过度社交和语言能力强,从而为验证 ASD 症状的治疗方法提供了独特的参考。在 7q11.23 处的上述区间,定义为 WBS 关键区域,GTF2I、BAZ1B、CLIP2 和 EIF4H 等几个基因因其在 WBS 和 7Dup 发病机制中的作用而成为关键基因,这些作用在小鼠模型和人类研究中都得到了证实。

方法

我们对 1478 种化合物进行了高通量筛选,包括中枢神经系统药物、表观遗传调节剂和实验物质,在我们诱导多能干细胞系(iPSC)的患者来源的皮质谷氨酸能神经元中进行,监测 WBS 区间基因的转录调节,特别关注 GTF2I,因为它具有压倒性的致病作用。通过 qRT-PCR 测量基因表达来验证所识别的命中物,并通过 Western blot 进行确认。

结果

我们鉴定并选择了三种组蛋白去乙酰化酶抑制剂(HDACi),它们可以降低来自四个不同 iPSC 系分化的 7Dup 皮质谷氨酸能神经元中 GTF2I 的异常表达水平。我们在蛋白质水平上也证实了这一效应。

局限性

在这项研究中,我们没有解决 HDAC 抑制剂作用于 GTF2I 的分子机制。现在需要将鉴定的先导化合物进一步推进到其他模型中进行进一步测试,包括患者来源的脑类器官和模拟 7q11.23 微重复基因失衡的小鼠模型,以验证它们在多个功能层面上恢复表型的疗效,从而为临床应用提供转化途径。

结论

这些结果为开发治疗 7Dup 和其他形式的智力障碍和自闭症的特定类别的化合物提供了独特的机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0c1/7677843/2b664e1eb474/13229_2020_387_Fig1_HTML.jpg

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