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神经发育障碍中雷特综合征样(RTT-L)表型趋同的遗传和蛋白质网络。

Genetic and Protein Network Underlying the Convergence of Rett-Syndrome-like (RTT-L) Phenotype in Neurodevelopmental Disorders.

机构信息

Neurogenomics Division, Translational Genomics Research Institute (TGen), Phoenix, AZ 85004, USA.

Quantitative Medicine Division, Translational Genomics Research Institute (TGen), Phoenix, AZ 85004, USA.

出版信息

Cells. 2023 May 21;12(10):1437. doi: 10.3390/cells12101437.

Abstract

Mutations of the X-linked gene encoding methyl-CpG-binding protein 2 () cause classical forms of Rett syndrome (RTT) in girls. A subset of patients who are recognized to have an overlapping neurological phenotype with RTT but are lacking a mutation in a gene that causes classical or atypical RTT can be described as having a 'Rett-syndrome-like phenotype (RTT-L). Here, we report eight patients from our cohort diagnosed as having RTT-L who carry mutations in genes unrelated to RTT. We annotated the list of genes associated with RTT-L from our patient cohort, considered them in the light of peer-reviewed articles on the genetics of RTT-L, and constructed an integrated protein-protein interaction network (PPIN) consisting of 2871 interactions connecting 2192 neighboring proteins among RTT- and RTT-L-associated genes. Functional enrichment analysis of RTT and RTT-L genes identified a number of intuitive biological processes. We also identified transcription factors (TFs) whose binding sites are common across the set of RTT and RTT-L genes and appear as important regulatory motifs for them. Investigation of the most significant over-represented pathway analysis suggests that HDAC1 and CHD4 likely play a central role in the interactome between RTT and RTT-L genes.

摘要

X 连锁基因编码甲基-CpG 结合蛋白 2 () 的突变导致女孩出现经典型 Rett 综合征 (RTT)。一组被认为具有与 RTT 重叠的神经表型但在导致经典或非典型 RTT 的基因中没有突变的患者可以被描述为具有“Rett 综合征样表型 (RTT-L)”。在这里,我们报告了来自我们队列的 8 名被诊断为患有 RTT-L 的患者,他们携带与 RTT 无关的基因突变。我们注释了我们患者队列中与 RTT-L 相关的基因列表,根据 RTT-L 的遗传学的同行评审文章对其进行了考虑,并构建了一个由 2871 个相互作用组成的综合蛋白质-蛋白质相互作用网络 (PPIN),连接 RTT 和 RTT-L 相关基因中的 2192 个相邻蛋白。RTT 和 RTT-L 基因的功能富集分析确定了许多直观的生物学过程。我们还确定了转录因子 (TF),其结合位点在 RTT 和 RTT-L 基因集中是共同的,并且作为它们的重要调节基序出现。对最显著的过代表途径分析的研究表明,HDAC1 和 CHD4 可能在 RTT 和 RTT-L 基因的相互作用组中发挥核心作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee64/10217403/ae4ba4f712a3/cells-12-01437-g001a.jpg

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