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X 连锁 2'-O-甲基转移酶 Ftsj1 基因突变导致智力障碍的小鼠模型。

A mouse model for intellectual disability caused by mutations in the X-linked 2'‑O‑methyltransferase Ftsj1 gene.

机构信息

Department of Functional Genomics, Interfaculty Institute of Genetics and Functional Genomics, University Medicine Greifswald, Felix-Hausdorff-Strasse 8, 17489 Greifswald, Germany.

German Mouse Clinic, Helmholtz Zentrum München, German Research Center for Environmental Health, Neuherberg, Germany; Institute of Developmental Genetics, Helmholtz Zentrum München, German Research Center for Environmental Health, Ingolstädter Landstrasse 1, 85764 Neuherberg, Germany.

出版信息

Biochim Biophys Acta Mol Basis Dis. 2019 Sep 1;1865(9):2083-2093. doi: 10.1016/j.bbadis.2018.12.011. Epub 2018 Dec 14.

Abstract

Mutations in the X chromosomal tRNA 2'‑O‑methyltransferase FTSJ1 cause intellectual disability (ID). Although the gene is ubiquitously expressed affected individuals present no consistent clinical features beyond ID. In order to study the pathological mechanism involved in the aetiology of FTSJ1 deficiency-related cognitive impairment, we generated and characterized an Ftsj1 deficient mouse line based on the gene trapped stem cell line RRD143. Apart from an impaired learning capacity these mice presented with several statistically significantly altered features related to behaviour, pain sensing, bone and energy metabolism, the immune and the hormone system as well as gene expression. These findings show that Ftsj1 deficiency in mammals is not phenotypically restricted to the brain but affects various organ systems. Re-examination of ID patients with FTSJ1 mutations from two previously reported families showed that several features observed in the mouse model were recapitulated in some of the patients. Though the clinical spectrum related to Ftsj1 deficiency in mouse and man is variable, we suggest that an increased pain threshold may be more common in patients with FTSJ1 deficiency. Our findings demonstrate novel roles for Ftsj1 in maintaining proper cellular and tissue functions in a mammalian organism.

摘要

X 染色体 tRNA 2'‑O‑甲基转移酶 FTSJ1 的突变会导致智力障碍(ID)。虽然该基因在体内广泛表达,但除了 ID 之外,受影响的个体没有表现出一致的临床特征。为了研究与 FTSJ1 缺陷相关认知障碍发病机制相关的病理机制,我们基于基因捕获干细胞系 RRD143 生成并表征了 Ftsj1 缺陷的小鼠系。除了学习能力受损外,这些小鼠还表现出与行为、疼痛感知、骨骼和能量代谢、免疫和激素系统以及基因表达相关的几个具有统计学意义的特征改变。这些发现表明,哺乳动物中的 Ftsj1 缺陷不仅表型局限于大脑,还影响各种器官系统。对来自之前报道的两个家族的 FTSJ1 突变 ID 患者的重新检查表明,在一些患者中重现了在小鼠模型中观察到的几个特征。尽管与 Ftsj1 缺陷相关的临床谱在小鼠和人类之间存在差异,但我们认为,增加的疼痛阈值可能在 FTSJ1 缺陷患者中更为常见。我们的研究结果表明 Ftsj1 在维持哺乳动物机体中适当的细胞和组织功能方面具有新的作用。

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