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Nexmif 的缺失导致表型变异性的表达和基因组完整性的丧失。

Loss of Nexmif results in the expression of phenotypic variability and loss of genomic integrity.

机构信息

Pediatric Endocrine and Diabetes Unit, Division of Development and Growth, Department of Pediatrics, Gynecology and Obstetrics, University Hospitals of Geneva, Children's University Hospital, 6, Rue Willy Donze, 1205, Geneva, Switzerland.

Faculty Diabetes Center, Faculty of Medicine, University of Geneva, Geneva, Switzerland.

出版信息

Sci Rep. 2022 Aug 15;12(1):13815. doi: 10.1038/s41598-022-17845-1.

Abstract

We identified two NEXMIF variants in two unrelated individuals with non-autoimmune diabetes and autistic traits, and investigated the expression of Nexmif in mouse and human pancreas and its function in pancreatic beta cells in vitro and in vivo. In insulin-secreting INS-1E cells, Nexmif expression increased strongly in response to oxidative stress. CRISPR Cas9-generated Nexmif knockout mice exhibited a reduced number of proliferating beta cells in pancreatic islets. RNA sequencing of pancreatic islets showed that the downregulated genes in Nexmif mutant islets are involved in stress response and the deposition of epigenetic marks. They include H3f3b, encoding histone H3.3, which is associated with the regulation of beta-cell proliferation and maintains genomic integrity by silencing transposable elements, particularly LINE1 elements. LINE1 activity has been associated with autism and neurodevelopmental disorders in which patients share characteristics with NEXMIF patients, and can cause genomic instability and genetic variation through retrotransposition. Nexmif knockout mice exhibited various other phenotypes. Mortality and phenotypic abnormalities increased in each generation in both Nexmif mutant and non-mutant littermates. In Nexmif mutant mice, LINE1 element expression was upregulated in the pancreas, brain, and testis, possibly inducing genomic instability in Nexmif mutant mice and causing phenotypic variability in their progeny.

摘要

我们在两名非自身免疫性糖尿病和自闭症特征的非相关个体中发现了两个 NEXMIF 变体,并研究了 Nexmif 在小鼠和人胰腺中的表达及其在体外和体内胰腺β细胞中的功能。在胰岛素分泌细胞 INS-1E 中,Nexmif 的表达在氧化应激下强烈增加。CRISPR Cas9 产生的 Nexmif 敲除小鼠表现出胰岛中增殖β细胞数量减少。胰腺胰岛的 RNA 测序显示,Nexmif 突变体胰岛下调的基因参与应激反应和表观遗传标记的沉积。它们包括编码组蛋白 H3.3 的 H3f3b,其与β细胞增殖的调节有关,并通过沉默转座元件(特别是 LINE1 元件)来维持基因组完整性。LINE1 活性与自闭症和神经发育障碍有关,其中患者与 NEXMIF 患者具有共同特征,并且可以通过逆转录转座引起基因组不稳定性和遗传变异。Nexmif 敲除小鼠还表现出其他各种表型。在 Nexmif 突变体和非突变体同窝仔鼠中,每一代的死亡率和表型异常都增加。在 Nexmif 突变体小鼠中,胰腺、大脑和睾丸中的 LINE1 元件表达上调,可能导致 Nexmif 突变体小鼠的基因组不稳定性,并导致其后代的表型变异性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4304/9378738/dadd9848dfce/41598_2022_17845_Fig1_HTML.jpg

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