首页> 外文期刊>American journal of medical genetics, Part A >A novel mutation in CDH11 CDH11 , encoding cadherin‐11, cause Branchioskeletogenital (Elsahy‐Waters) syndrome
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A novel mutation in CDH11 CDH11 , encoding cadherin‐11, cause Branchioskeletogenital (Elsahy‐Waters) syndrome

机译:CDH11 CDH11中的一种新型突变,编码钙粘蛋白-11,导致Brankioskelesgital(Elsahy-Waters)综合征

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摘要

Abstract Cadherins are cell‐adhesion molecules that control morphogenesis, cell migration, and cell shape changes during multiple developmental processes. Until now four distinct cadherins have been implicated in human Mendelian disorders, mainly featuring skin, retinal and hearing manifestations. Branchio‐skeleto‐genital (or Elsahy‐Waters) syndrome (BSGS) is an ultra‐rare condition featuring a characteristic face, premature loss of teeth, vertebral and genital anomalies, and intellectual disability. We have studied two sibs with BSGS originally described by Castori et al. in 2010. Exome sequencing led to the identification of a novel homozygous nonsense variant in the first exon of the cadherin‐11 gene ( CDH11 ), which results in a prematurely truncated form of the protein. Recessive variants in CDH11 have been recently demonstrated in two other sporadic patients and a pair of sisters affected by BSGS. Although the function of this cadherin (also termed Osteoblast‐Cadherin) is not completely understood, its prevalent expression in osteoblastic cell lines and up‐regulation during differentiation suggest a specific function in bone formation and development. This study identifies a novel loss‐of‐function variant in CDH11 as a cause of BSGS and supports the role of cadherin‐11 as a key player in axial and craniofacial malformations.
机译:摘要Cadherins是在多种发育过程中控制形态发生,细胞迁移和细胞形状变化的细胞 - 粘附分子。到目前为止,四种不同的嗜睡蛋白涉及人类孟德梅疾病,主要是皮肤,视网膜和听力表现形式。 Branchio-kceleto-生殖器(或elsahy-waters)综合征(bsgs)是一种超罕见的条件,具有特征面,牙齿过早丧失,椎体和生殖器异常,以及智力残疾。我们已经研究了两种SIBS,其中包含Castori等人描述的BSG。 2010年。Exome测序导致鉴定在Cadherin-11基因(CDH11)的第一个外显子中的新型纯合子无意义变体,这导致蛋白质的过早截短的形式。最近在另外两种零星患者中证明了CDH11中的隐性变体和由BSG的影响一对姐妹们。尽管该钙粘蛋白(也称为Osteoblast-Cadherin)的功能尚未完全理解,但其在分化期间的骨细胞细胞系和上调中的普遍表达表明骨形成和发育中的特定功能。该研究识别CDH11中的新功能致功能变体作为BSG的原因,并支持Cadherin-11作为轴向和颅面形状畸形的关键球员的作用。

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  • 作者单位

    Division of Medical GeneticsIRCCS Casa Sollievo della SofferenzaSan Giovanni Rotondo Italy;

    Institute of Medical and Human GeneticsCharité ‐ Universit?tsmedizin BerlinBerlin Germany;

    Division of Medical GeneticsIRCCS Casa Sollievo della SofferenzaSan Giovanni Rotondo Italy;

    Division of Medical GeneticsIRCCS Casa Sollievo della SofferenzaSan Giovanni Rotondo Italy;

    Bioinformatics UnitIRCCS Casa Sollievo della SofferenzaSan Giovanni Rotondo Italy;

    Bioinformatics UnitIRCCS Casa Sollievo della SofferenzaSan Giovanni Rotondo Italy;

    Neurological Rehabilitation UnitSan Raffaele HospitalCassino Italy;

    Medical Genetics Residency ProgrammeTor Vergata UniversityRome Italy;

    Institute of Medical and Human GeneticsCharité ‐ Universit?tsmedizin BerlinBerlin Germany;

    Department of PediatricsAcademic Medical Centre University of AmsterdamAmsterdam The Netherlands;

    Institute of Medical and Human GeneticsCharité ‐ Universit?tsmedizin BerlinBerlin Germany;

    Department of LifeHealth and Environmental Sciences University of L'AquilaL'Aquila Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学遗传学;
  • 关键词

    Branchioskeletogenital; Elsahy‐Waters; CDH11; Cadherin‐11;

    机译:Brankioskeletigal;elsahy-waters;cdh11;cadherin-11;

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