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威韦氏综合征小鼠模型表现为过度生长和过度骨生成,可通过 KDM6A/6B 抑制逆转。

A mouse model of Weaver syndrome displays overgrowth and excess osteogenesis reversible with KDM6A/6B inhibition.

机构信息

Department of Genetic Medicine.

Department of Molecular Biology and Genetics, and.

出版信息

JCI Insight. 2024 Jan 9;9(1):e173392. doi: 10.1172/jci.insight.173392.

Abstract

Weaver syndrome is a Mendelian disorder of the epigenetic machinery (MDEM) caused by germline pathogenic variants in EZH2, which encodes the predominant H3K27 methyltransferase and key enzymatic component of Polycomb repressive complex 2 (PRC2). Weaver syndrome is characterized by striking overgrowth and advanced bone age, intellectual disability, and distinctive facies. We generated a mouse model for the most common Weaver syndrome missense variant, EZH2 p.R684C. Ezh2R684C/R684C mouse embryonic fibroblasts (MEFs) showed global depletion of H3K27me3. Ezh2R684C/+ mice had abnormal bone parameters, indicative of skeletal overgrowth, and Ezh2R684C/+ osteoblasts showed increased osteogenic activity. RNA-Seq comparing osteoblasts differentiated from Ezh2R684C/+, and Ezh2+/+ BM-mesenchymal stem cells (BM-MSCs) indicated collective dysregulation of the BMP pathway and osteoblast differentiation. Inhibition of the opposing H3K27 demethylases KDM6A and KDM6B substantially reversed the excessive osteogenesis in Ezh2R684C/+ cells both at the transcriptional and phenotypic levels. This supports both the ideas that writers and erasers of histone marks exist in a fine balance to maintain epigenome state and that epigenetic modulating agents have therapeutic potential for the treatment of MDEMs.

摘要

Weaver 综合征是一种由 EZH2 种系致病性变异引起的表观遗传机制(MDEM)的孟德尔疾病,EZH2 编码主要的 H3K27 甲基转移酶和多梳抑制复合物 2(PRC2)的关键酶成分。Weaver 综合征的特征是明显的过度生长和骨龄提前、智力障碍和独特的面容。我们生成了一种最常见的 Weaver 综合征错义变异的小鼠模型,即 EZH2 p.R684C。Ezh2R684C/R684C 小鼠胚胎成纤维细胞(MEFs)显示 H3K27me3 的全局耗竭。Ezh2R684C/+ 小鼠具有异常的骨参数,表明骨骼过度生长,并且 Ezh2R684C/+ 成骨细胞表现出增加的成骨活性。比较从 Ezh2R684C/+和 Ezh2+/+ BM 间充质干细胞(BM-MSCs)分化的成骨细胞的 RNA-Seq 表明 BMP 途径和成骨细胞分化的集体失调。抑制相反的 H3K27 去甲基酶 KDM6A 和 KDM6B 在转录和表型水平上都大大逆转了 Ezh2R684C/+细胞的过度成骨作用。这既支持了组蛋白标记的写入器和擦除器之间存在精细平衡以维持表观基因组状态的观点,也支持了表观遗传调节剂具有治疗 MDEM 的治疗潜力的观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d4a8/10906465/2c4555b80d6e/jciinsight-9-173392-g124.jpg

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