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表观遗传调控与神经发育障碍:从MeCP2到TCF20/PHF14复合物

Epigenetic Regulation and Neurodevelopmental Disorders: From MeCP2 to the TCF20/PHF14 Complex.

作者信息

Dominguez Gaea, Wu Yongji, Zhou Jian

机构信息

Department of Human Genetics, Emory University School of Medicine, Atlanta, GA 30322, USA.

Department of Pediatrics, Emory University School of Medicine, Atlanta, GA 30322, USA.

出版信息

Genes (Basel). 2024 Dec 23;15(12):1653. doi: 10.3390/genes15121653.

Abstract

BACKGROUND

Neurodevelopmental disorders (NDDs) affect approximately 15% of children and adolescents worldwide. This group of disorders is often polygenic with varying risk factors, with many associated genes converging on shared molecular pathways, including chromatin regulation and transcriptional control. Understanding how NDD-associated chromatin regulators and protein complexes orchestrate these regulatory pathways is crucial for elucidating NDD pathogenesis and developing targeted therapeutic strategies. Recently, the TCF20/PHF14 chromatin complex was identified in the mammalian brain, expanding the list of chromatin regulatory remodelers implicated in NDDs. This complex-which includes MeCP2, RAI1, TCF20, PHF14, and HMG20A-plays a vital role in epigenetic and transcriptional regulation.

METHODS

We review and summarize current research and clinical reports pertaining to the different components of the MeCP2-interacting TCF20/PHF14 complex. We examine the NDDs associated with the TCF20/PHF14 complex, explore the molecular and neuronal functions of its components, and discuss emerging therapeutic strategies targeting this complex to mitigate symptoms, with broader applicability to other NDDs.

RESULTS

Mutations in the genes encoding the components of the MeCP2-interacting TCF20/PHF14 complex have been linked to various NDDs, underscoring its critical contribution to brain development and NDD pathogenesis.

CONCLUSIONS

The MeCP2-interacting TCF20/PHF14 complex and its associated NDDs could serve as a model system to provide insight into the interplay between epigenetic regulation and NDD pathogenesis.

摘要

背景

神经发育障碍(NDDs)影响着全球约15%的儿童和青少年。这类疾病通常是多基因的,风险因素各异,许多相关基因汇聚于共同的分子途径,包括染色质调控和转录控制。了解与NDD相关的染色质调节因子和蛋白质复合物如何协调这些调节途径,对于阐明NDD的发病机制和制定靶向治疗策略至关重要。最近,在哺乳动物大脑中发现了TCF20/PHF14染色质复合物,扩大了与NDDs相关的染色质调节重塑因子的名单。这个复合物——包括MeCP2、RAI1、TCF20、PHF14和HMG20A——在表观遗传和转录调控中起着至关重要的作用。

方法

我们回顾并总结了与MeCP2相互作用的TCF20/PHF14复合物不同组分相关的当前研究和临床报告。我们研究了与TCF20/PHF14复合物相关的NDDs,探索了其组分的分子和神经元功能,并讨论了针对该复合物以减轻症状的新兴治疗策略,这些策略对其他NDDs具有更广泛的适用性。

结果

编码与MeCP2相互作用的TCF20/PHF14复合物组分的基因突变与各种NDDs相关,强调了其对大脑发育和NDD发病机制的关键贡献。

结论

与MeCP2相互作用的TCF20/PHF14复合物及其相关的NDDs可作为一个模型系统,以深入了解表观遗传调控与NDD发病机制之间的相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/179e/11728296/8fdc114829af/genes-15-01653-g001.jpg

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