成骨细胞特异性母源印记基因DLX5和DLX6的表达缺失会导致I型裂手/裂足畸形。

Absent expression of the osteoblast-specific maternally imprinted genes, DLX5 and DLX6, causes split hand/split foot malformation type I.

作者信息

Rattanasopha Sawitree, Tongkobpetch Siraprapa, Srichomthong Chalurmpon, Kitidumrongsook Pravit, Suphapeetiporn Kanya, Shotelersuk Vorasuk

机构信息

Doctor of Philosophy Program in Medical Sciences, Faculty of Medicine, Chulalongkorn University, Bangkok, Thailand.

Department of Pediatrics, Center of Excellence for Medical Genetics, Faculty of Medicine, Chulalongkorn University, Bangkok, Thailand Excellence Center for Medical Genetics, King Chulalongkorn Memorial Hospital, The Thai Red Cross Society, Bangkok, Thailand.

出版信息

J Med Genet. 2014 Dec;51(12):817-23. doi: 10.1136/jmedgenet-2014-102576. Epub 2014 Oct 20.

Abstract

BACKGROUND

Split hand/split foot malformation (SHFM) type 1 is characterised by missing central digital rays with clefts of the hands and/or feet, which was linked to chromosome 7q21.3. While double knockout of Dlx5 and Dlx6 resulted in limb defects in mice, the majority of patients with SHFM1 had only heterozygous chromosomal abnormalities.

OBJECTIVE

To investigate the clinical and molecular features of a large family with SHFM1.

METHODS

Blood samples of family members were investigated by linkage analysis, array comparative genomic hybridisation, exome sequencing and PCR-Sanger sequencing. Cultures from bone specimens obtained from the proband and an unrelated unaffected individual were established and subjected to quantitative real-time PCR, reverse-transcribed PCR, Western blot and imprinting analysis.

RESULTS

We report a large pedigree of SHFM1 with 10 members having a heterozygous 103 kb deletion, the smallest one ever reported to be associated with SHFM1. Of these 10, two had no limb anomalies, making a penetrance of 80%. The deletion encompassed exons 15 and 17 of DYNC1I1, which are known enhancers of two downstream genes, DLX5 and DLX6. Surprisingly, DLX5 and DLX6 RNA and proteins in our proband's cultured osteoblasts, instead of 50% decrease, were absent. Allelic expression studies in cultured osteoblasts of the unaffected individual showed that DSS1, DLX6 and DLX5 expressed only paternal alleles. These lines of evidence indicate that DSS1, DLX6 and DLX5 were maternally imprinted in osteoblasts.

CONCLUSIONS

SHFM1 in our family is caused by a heterozygous paternal deletion of enhancers of the osteoblast-specific maternally imprinted DLX6 and DLX5 genes, leading to the absence of their proteins.

摘要

背景

1型裂手/裂足畸形(SHFM)的特征是手部和/或足部中央指(趾)射线缺失并伴有裂隙,这与7号染色体q21.3区域相关。虽然Dlx5和Dlx6双敲除会导致小鼠出现肢体缺陷,但大多数SHFM1患者仅存在杂合染色体异常。

目的

研究一个SHFM1大家庭的临床和分子特征。

方法

通过连锁分析、阵列比较基因组杂交、外显子组测序和PCR-Sanger测序对家庭成员的血液样本进行研究。从先证者和一名无关的未受影响个体获取的骨标本进行培养,并进行定量实时PCR、逆转录PCR、蛋白质免疫印迹和印记分析。

结果

我们报告了一个SHFM1的大家系,其中10名成员存在杂合的103 kb缺失,这是迄今报道的与SHFM1相关的最小缺失。在这10名成员中,有2名没有肢体异常,外显率为80%。该缺失包含动力蛋白1中间链1(DYNC1I1)的第15和17外显子,这两个外显子是两个下游基因DLX5和DLX6的已知增强子。令人惊讶的是,在先证者培养的成骨细胞中,DLX5和DLX6的RNA和蛋白质并非减少50%,而是完全缺失。对未受影响个体培养的成骨细胞进行的等位基因表达研究表明,DSS1、DLX6和DLX5仅表达父本等位基因。这些证据表明,DSS1、DLX6和DLX5在成骨细胞中是母本印记的。

结论

我们家系中的SHFM1是由成骨细胞特异性母本印记的DLX6和DLX5基因增强子的父本杂合缺失引起的,导致其蛋白质缺失。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索