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首页> 外文期刊>Molecular Genetics & Genomic Medicine >Mutations in STAG2 cause an X‐linked cohesinopathy associated with undergrowth, developmental delay, and dysmorphia: Expanding the phenotype in males
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Mutations in STAG2 cause an X‐linked cohesinopathy associated with undergrowth, developmental delay, and dysmorphia: Expanding the phenotype in males

机译:Stag2中的突变导致与患有灌木丛,发育延迟和痛经相关的X型核心病:在雄性中扩张表型

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Background The cohesin complex is a multi‐subunit protein complex which regulates sister chromatid cohesion and separation during cellular division. In addition, this evolutionarily conserved protein complex plays an integral role in DNA replication, DNA repair, and the regulation of transcription. The core complex is composed of four subunits: RAD21, SMC1A, SMC3, and STAG1/2. Mutations in these proteins have been implicated in human developmental disorders collectively termed “cohesinopathies.” Methods Using clinical exome sequencing, we have previously identified three female cases with heterozygous STAG2 mutations and overlapping syndromic phenotypes. Subsequently, a familial missense variant was identified in five male family members. Results We now present the case of a 4‐year‐old male with developmental delay, failure to thrive, short stature, and polydactyly with a likely pathogenic STAG2 de novo missense hemizygous variant, c.3027AT, p.Lys1009Asn. Furthermore, we compare the phenotypes of the four previously reported STAG2 variants with our case. Conclusion We conclude that mutations in STAG2 cause a novel constellation of sex‐specific cohesinopathy‐related phenotypes and are furthermore, essential for neurodevelopment, human growth, and behavioral development.
机译:背景技术Cohesin Complex是一种多亚基蛋白质复合物,其调节细胞分裂期间的姐妹染色体内聚力和分离。此外,这种进化保守的蛋白质复合物在DNA复制,DNA修复和转录调节中起着积分作用。核心复合体由四个亚基组成:RAD21,SMC1A,SMC3和STAG1 / 2。这些蛋白质中的突变涉及统称“凝固性的人类发育障碍”。方法采用临床外壳测序,我们先前鉴定过三种杂合子静脉突变和重叠综合征表型的雌性病例。随后,在五个男性家庭成员中确定了家族密码变异。结果我们现在呈现了一个4岁男性的发育延迟,未能茁壮成长,身材矮小和多乳糖,具有可能的致病性STAG2 de Novo畸形血管型变异,C.3027A> T,P.Lys1009ASN。此外,我们将四个先前报告的STAG2变体的表型与我们的案例进行了比较。结论我们得出结论,Stag2中的突变导致一种新的性别凝固性疾病相关表型,进一步,对于神经发育,人类生长和行为发展至关重要。

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