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首页> 外文期刊>European journal of human genetics: EJHG >Biallelic variants in EFEMP1 in a man with a pronounced connective tissue phenotype
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Biallelic variants in EFEMP1 in a man with a pronounced connective tissue phenotype

机译:efemp1中的双胞胎变体在一个具有明显的结缔组织表型的男性中

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Connective tissue disorders are a spectrum of diseases that affect the integrity of tissues including skin, vasculature, and joints. They are often caused by variants that disrupt genes encoding components of extracellular matrix (ECM). The fibulin glycoproteins are ECM proteins important for integrity of tissues including dermis, retina, fascia, and vasculature. The fibulin family consists of seven members (fibulins-1 to -7) and is defined by a fibulin-type domain at the C-terminus. The family is associated with human diseases, for instance a variant in FBLN1, encoding fibulin-1, is associated with synpolydactyly, while one in EFEMP1, encoding fibulin-3, causes Doyne honeycomb degeneration of the retina. Loss-of-function of fibulins-4 and -5 causes cutis laxa, while variants in fibulins-5 and -6 are associated with age-related macular degeneration. Of note, EFEMP1 is not currently associated with any connective tissue disorder. Here we show biallelic loss-of-function variants in EFEMP1 in an individual with multiple and recurrent abdominal and thoracic herniae, myopia, hypermobile joints, scoliosis, and thin translucent skin. Fibroblasts from this individual express significantly lower EFEMP1 transcript than age-matched control cells. A skin biopsy, visualised using light microscopy, showed normal structure and abundance of elastic fibres. The phenotype of this individual is remarkably similar to the Efemp1 knockout mouse model that displays multiple herniae with premature aging and scoliosis. We conclude that loss of EFEMP1 function in this individual is the cause of a connective tissue disorder with a novel combination of phenotypic features, and can perhaps explain similar, previously reported cases in the literature.
机译:结缔组织疾病是一种影响包括皮肤,脉管系统和关节的组织的完整性的疾病。它们通常由变体引起的,所述变体破坏编码细胞外基质组分(ECM)的基因。纤维素蛋白糖蛋白是ECM蛋白,对于包括真皮,视网膜,筋膜和脉管系统的组织的完整性重要。菲比林家族由七个成员(Fibulins-1至-7)组成,并由C-末端的纤维蛋白型结构域定义。该家庭与人类疾病相关,例如FBLN1中的变体,编码纤维蛋白-1,与SynppolyDacty相比,同时在EFEMP1中,编码纤维蛋白-3,导致视网膜的橘子蜂窝变性。纤维素-4和-5的函数丧失导致切割leaxa,而纤维蛋白-5和-6的变体与年龄相关的黄斑变性相关。值得注意的是,EFEMP1目前与任何结缔组织障碍无关。在这里,我们在具有多个和复发性腹部和胸部Herniae,近视,高毛细管接头,脊柱侧凸和薄半透明皮肤的个体中展示了在eFemp1中的双胞胎致态丧失的变体。来自该个体的成纤维细胞显着降低EFEMP1转录性比年龄匹配的对照细胞。皮肤活组织检查,使用光学显微镜可视化,显示出正常的结构和丰度的弹性纤维。该个体的表型非常类似于efemp1敲除小鼠模型,该模型显示多个疝气,具有过早的老化和脊柱侧凸。我们得出结论,在该个体中丧失eFEMP1功能是结缔组织障碍与表型特征的新组合的原因,也许可以解释在文献中的类似案例。

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