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METTL23 突变改变正常眼压性青光眼的组蛋白 H3R17 甲基化。

METTL23 mutation alters histone H3R17 methylation in normal-tension glaucoma.

机构信息

National Institute of Sensory Organs, National Hospital Organization Tokyo Medical Center, Tokyo, Japan.

Department of Ophthalmology, Tokai University Hachioji Hospital, Tokyo, Japan.

出版信息

J Clin Invest. 2022 Nov 1;132(21):e153589. doi: 10.1172/JCI153589.

Abstract

Normal-tension glaucoma (NTG) is a heterogeneous disease characterized by retinal ganglion cell (RGC) death leading to cupping of the optic nerve head and visual field loss at normal intraocular pressure (IOP). The pathogenesis of NTG remains unclear. Here, we describe a single nucleotide mutation in exon 2 of the methyltransferase-like 23 (METTL23) gene identified in 3 generations of a Japanese family with NTG. This mutation caused METTL23 mRNA aberrant splicing, which abolished normal protein production and altered subcellular localization. Mettl23-knock-in (Mettl23+/G and Mettl23G/G) and -knockout (Mettl23+/- and Mettl23-/-) mice developed a glaucoma phenotype without elevated IOP. METTL23 is a histone arginine methyltransferase expressed in murine and macaque RGCs. However, the novel mutation reduced METTL23 expression in RGCs of Mettl23G/G mice, which recapitulated both clinical and biological phenotypes. Moreover, our findings demonstrated that METTL23 catalyzed the dimethylation of H3R17 in the retina and was required for the transcription of pS2, an estrogen receptor α target gene that was critical for RGC homeostasis through the negative regulation of NF-κB-mediated TNF-α and IL-1β feedback. These findings suggest an etiologic role of METTL23 in NTG with tissue-specific pathology.

摘要

正常眼压性青光眼(NTG)是一种异质性疾病,其特征是视网膜神经节细胞(RGC)死亡,导致视神经头部杯状凹陷和视野在正常眼压(IOP)下丧失。NTG 的发病机制仍不清楚。在这里,我们描述了一个在一个日本 NTG 家族的 3 代人中发现的位于甲基转移酶样 23(METTL23)基因外显子 2 中的单核苷酸突变。这种突变导致 METTL23 mRNA 异常剪接,从而取消了正常蛋白的产生并改变了亚细胞定位。Mettl23 敲入(Mettl23+/G 和 Mettl23G/G)和敲除(Mettl23+/-和 Mettl23-/-)小鼠在没有升高的 IOP 的情况下表现出青光眼表型。METTL23 是一种在鼠和猕猴 RGC 中表达的组蛋白精氨酸甲基转移酶。然而,新的突变降低了 Mettl23G/G 小鼠 RGC 中的 METTL23 表达,这重现了临床和生物学表型。此外,我们的研究结果表明,METTL23 催化视网膜中 H3R17 的二甲基化,并且是雌激素受体 α 靶基因 pS2 转录所必需的,pS2 通过负调控 NF-κB 介导的 TNF-α 和 IL-1β 反馈,对 RGC 稳态至关重要。这些发现表明 METTL23 在具有组织特异性病理学的 NTG 中起病因作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/00cc/9621137/06fe15f43369/jci-132-153589-g080.jpg

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