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一个家族中 KLF11 变异,该家族中患者临床诊断为早发性 1B 型糖尿病。

KLF11 variant in a family clinically diagnosed with early childhood-onset type 1B diabetes.

机构信息

Department of Molecular Endocrinology, National Research Institute for Child Health and Development, Tokyo, Japan.

Department of Pediatrics, Hamamatsu University School of Medicine, Hamamatsu, Japan.

出版信息

Pediatr Diabetes. 2019 Sep;20(6):712-719. doi: 10.1111/pedi.12868. Epub 2019 Jun 3.

DOI:10.1111/pedi.12868
PMID:31124255
Abstract

KLF11 is the causative gene for maturity-onset diabetes of the young 7 (MODY7). KLF11 regulates insulin gene expression through binding to the GC box in the promoter. To date, only two KLF11 mutations have been identified in three families with early-onset type 2 diabetes. Here, we report a novel KLF11 variant associated with early childhood-onset type 1B diabetes. The proband and his younger sister exhibited hyperglycemia at age 1 year, and their mother developed diabetes at age 4 years. These three individuals required insulin injection from the initial phase of the disease. Being negative for islet cell autoantibodies, they were diagnosed with type 1B diabetes. Mutation screening for 30 diabetes-associated genes identified a heterozygous KLF11 variant (p.His418Gln) in the proband and his sister. The variant was also detected in the affected mother, as well as in the allegedly unaffected maternal grandmother. In silico analyses indicated that this variant involves a highly conserved histidine residue in the first C H zinc finger domain which ligates a zinc ion. In vitro analyses showed that expression levels and intracellular localization of His418Gln-KLF11 were comparable to those of wildtype (WT)-KLF11. Luciferase assays demonstrated that while WT-KLF11 suppressed the activity of a 6 × GC box-containing reporter, His418Gln-KLF11 lacked the suppressive effect. Notably, His418Gln-KLF11 canceled the suppressive effect of co-transfected WT-KLF11. Such a dominant-negative effect was absent in the previously reported Ala347Ser-KLF11 variant. These results indicate that specific variants of KLF11 (MODY7) with a dominant-negative effect underlie early childhood-onset type 1B diabetes with incomplete penetrance. This study documents a novel monogenic mutation associated with diabetes in children.

摘要

KLF11 是青少年发病的成年型糖尿病 7 型(MODY7)的致病基因。KLF11 通过与启动子中的 GC 盒结合来调节胰岛素基因的表达。迄今为止,只有三种早发型 2 型糖尿病家系中发现了两种 KLF11 突变。在这里,我们报告了一种与儿童期起病 1 型糖尿病相关的新型 KLF11 变异体。先证者及其妹妹在 1 岁时出现高血糖,其母亲在 4 岁时发病。这三个人从疾病的初始阶段就需要注射胰岛素。由于胰岛细胞自身抗体阴性,他们被诊断为 1 型 B 糖尿病。对 30 种糖尿病相关基因的突变筛查发现先证者及其妹妹存在杂合 KLF11 变异(p.His418Gln)。该变异也存在于受影响的母亲以及据称未受影响的外祖母中。体外分析表明,该变异涉及第一 C H 锌指结构域中高度保守的组氨酸残基,该残基连接锌离子。体外分析表明,His418Gln-KLF11 的表达水平和细胞内定位与野生型(WT)-KLF11 相当。荧光素酶检测表明,虽然 WT-KLF11 抑制了含有 6×GC 盒的报告基因的活性,但 His418Gln-KLF11 缺乏抑制作用。值得注意的是,His418Gln-KLF11 取消了共转染的 WT-KLF11 的抑制作用。这种显性负效应在先前报道的 Ala347Ser-KLF11 变异体中不存在。这些结果表明,具有显性负效应的特定 KLF11 变异体(MODY7)是不完全外显的儿童期起病 1 型 B 糖尿病的基础。本研究记录了一种与儿童期糖尿病相关的新型单基因突变。

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