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BREACHes处的镶嵌型H3K9me3预测与脆性X综合征认知严重程度相关的突触基因表达。

Mosaic H3K9me3 at BREACHes predicts synaptic gene expression associated with fragile X syndrome cognitive severity.

作者信息

Pham Kenneth, Malachowski Thomas, Zhou Linda, Kim Ji Hun, Su Chuanbin, Phillips-Cremins Jennifer E

机构信息

Department of Genetics, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA.

Department of Bioengineering, School of Engineering and Applied Sciences, University of Pennsylvania, Philadelphia, PA, USA.

出版信息

bioRxiv. 2025 Mar 19:2025.03.19.644148. doi: 10.1101/2025.03.19.644148.

Abstract

Diseases vary in clinical presentation across individuals despite the same molecular diagnosis. In fragile X syndrome (FXS), mutation-length expansion of a CGG short tandem repeat (STR) in causes reduced gene expression and FMRP loss. Nevertheless, and FMRP are limited predictors of adaptive functioning and cognition in FXS patients, suggesting that molecular correlates of clinical measures would add diagnostic value. We recently uncovered Megabase-scale domains of heterochromatin (BREACHes) in FXS patient-derived iPSCs. Here, we identify BREACHes in FXS brain tissue (N=4) and absent from sex/age-matched neurotypical controls (N=4). BREACHes span >250 genes and exhibit patient-specific H3K9me3 variation. Using N=4 FXS iPSC lines and N=7 single-cell isogenic FXS iPSC subclones, we observe a strong correlation between inter-sample H3K9me3 variation and heterogeneous BREACH gene repression. We demonstrate improved prediction of cognitive metrics in FXS patients with an additive model of blood FMRP and mRNA levels of H3K9me3-mosaic, but not H3K9me3-invariant, BREACH genes. Our results highlight the utility of H3K9me3 variation at BREACHes for identifying genes associated with FXS clinical metrics.

摘要

尽管分子诊断相同,但不同个体的疾病临床表现存在差异。在脆性X综合征(FXS)中,基因中CGG短串联重复序列(STR)的突变长度扩展会导致基因表达降低和FMRP缺失。然而, 和FMRP对FXS患者的适应性功能和认知的预测作用有限,这表明临床指标的分子相关性将增加诊断价值。我们最近在FXS患者来源的诱导多能干细胞(iPSC)中发现了兆碱基规模的异染色质结构域(BREACHes)。在这里,我们在FXS脑组织(N = 4)中鉴定出BREACHes,而在性别/年龄匹配的神经典型对照(N = 4)中未发现。BREACHes跨越超过250个基因,并表现出患者特异性的H3K9me3变异。使用N = 4个FXS iPSC系和N = 7个单细胞同基因FXS iPSC亚克隆,我们观察到样本间H3K9me3变异与异质性BREACH基因抑制之间存在强烈相关性。我们证明,使用血液FMRP和H3K9me3镶嵌而非H3K9me3不变的BREACH基因的mRNA水平的加性模型,可以改善对FXS患者认知指标的预测。我们的结果突出了BREACHes处H3K9me3变异在识别与FXS临床指标相关基因方面的效用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca12/11957133/8237fed358e5/nihpp-2025.03.19.644148v1-f0001.jpg

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