首页> 外文期刊>The American Journal of Human Genetics >Hypomorphic Recessive Variants in SUFU Impair the Sonic Hedgehog Pathway and Cause Joubert Syndrome with Cranio-facial and Skeletal Defects
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Hypomorphic Recessive Variants in SUFU Impair the Sonic Hedgehog Pathway and Cause Joubert Syndrome with Cranio-facial and Skeletal Defects

机译:Sufu中的警长隐性变体损害了Sonic Hedgehog途径,导致Joubert综合征与颅骨 - 面部和骨骼缺陷

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摘要

The Sonic Hedgehog (SHH) pathway is a key signaling pathway orchestrating embryonic development, mainly of the CNS and limbs. In vertebrates, SHH signaling is mediated by the primary cilium, and genetic defects affecting either SHH pathway members or ciliary proteins cause a spectrum of developmental disorders. SUFU is the main negative regulator of the SHH pathway and is essential during development. Indeed, Sufu knock-out is lethal in mice, and recessive pathogenic variants of this gene have never been reported in humans. Through whole-exome sequencing in subjects with Joubert syndrome, we identified four children from two unrelated families carrying homozygous missense variants in SUFU . The children presented congenital ataxia and cerebellar vermis hypoplasia with elongated superior cerebellar peduncles (mild “molar tooth sign”), typical cranio-facial dysmorphisms (hypertelorism, depressed nasal bridge, frontal bossing), and postaxial polydactyly. Two siblings also showed polymicrogyria. Molecular dynamics simulation predicted random movements of the mutated residues, with loss of the native enveloping movement of the binding site around its ligand GLI3. Functional studies on cellular models and fibroblasts showed that both variants significantly reduced SUFU stability and its capacity to bind GLI3 and promote its cleavage into the repressor form GLI3R. In turn, this impaired SUFU-mediated repression of the SHH pathway, as shown by altered expression levels of several target genes. We demonstrate that germline hypomorphic variants of SUFU cause deregulation of SHH signaling, resulting in recessive developmental defects of the CNS and limbs which share features with both SHH-related disorders and ciliopathies.
机译:Sonic Hedgehog(SHH)途径是协调胚胎发育的关键信号途径,主要是CNS和四肢。在脊椎动物中,SHH信号传导由初级纤西介导,并且影响SHH途径构件或睫状体蛋白的遗传缺陷导致发育障碍的光谱。 SUFU是SHH途径的主要负调节器,在开发过程中至关重要。实际上,Sufu敲除在小鼠中致命,并且这种基因的隐性致病变异从未在人类中报道。通过对joubert综合征的受试者的全体exome测序,我们确定了来自携带苏季纯合物畸形变种的两个无关家庭的四个孩子。孩子们提出了先天性共济失调和小脑禁虫发育不全,具有细长的高级小脑梗死(轻度“磨牙迹象”),典型的颅骨面部钝化术(超兴奋,抑郁的鼻桥,额头凸起)和逐次多透明度。两个兄弟姐妹也显示出多发性血症。分子动力学模拟预测突变残留物的随机运动,损失其配体GLI3周围的粘合位点的天然包围运动。对细胞模型和成纤维细胞的功能研究表明,两种变体显着降低了SUFU稳定性及其结合GLI3的能力,并促进其切割到阻遏物形成GLI3R中。反过来,这种受损的SUFU介导的SHH途径镇压,如改变的几种靶基因的表达水平所示。我们证明了SUFU的种系长晶变体引起SHH信号的放松管制,导致CNS和肢体的隐性发育缺陷,其与HHH相关的疾病和纤维疗法分享特征。

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  • 作者单位

    Neurogenetics Unit IRCCS Santa Lucia Foundation Rome 00143 Italy;

    Molecular Genetics Laboratory GENOMA Group Rome 00138 Italy;

    Developmental Neurology Division Foundation IRCCS Neurological Institute Carlo Besta Milan 20133;

    Clinical Genetics Department Human Genetics and Genome Research Division National Research Centre;

    Neurogenetics Unit IRCCS Santa Lucia Foundation Rome 00143 Italy;

    Neurogenetics Unit IRCCS Santa Lucia Foundation Rome 00143 Italy;

    IRCCS Casa Sollievo della Sofferenza Laboratory of Bioinformatics San Giovanni Rotondo (FG) 71013;

    Laboratory for Pediatric Brain Diseases Rady Children’s Institute for Genomic Medicine University;

    Laboratory for Pediatric Brain Diseases Rady Children’s Institute for Genomic Medicine University;

    Pediatric Neurology Unit Geneva Children’s Hospital 1211 Genève 4 Switzerland;

    Neurogenetics Unit IRCCS Santa Lucia Foundation Rome 00143 Italy;

    Neurogenetics Unit IRCCS Santa Lucia Foundation Rome 00143 Italy;

    Institute of Molecular Biology and Pathology National Research Council Rome 00185 Italy;

    Neuroradiology Department Foundation IRCCS Neurological Institute Carlo Besta Milan 20133 Italy;

    Department of Molecular Medicine and Istituto Pasteur Fondazione Cenci Bolognetti Sapienza;

    Clinical Genetics Department Human Genetics and Genome Research Division National Research Centre;

    Neurogenetics Unit IRCCS Santa Lucia Foundation Rome 00143 Italy;

    Neurogenetics Unit IRCCS Santa Lucia Foundation Rome 00143 Italy;

    Neurogenetics Unit IRCCS Santa Lucia Foundation Rome 00143 Italy;

    Laboratory for Pediatric Brain Diseases Rady Children’s Institute for Genomic Medicine University;

    Department of Human Genetics Radboud University Medical Center Nijmegen 6525 GA the Netherlands;

    Department of Molecular Medicine and Istituto Pasteur Fondazione Cenci Bolognetti Sapienza;

    IRCCS Casa Sollievo della Sofferenza Laboratory of Cellular Reprogramming San Giovanni Rotondo;

    Department of Clinical Genetics Erasmus Medical Center Rotterdam 3015 CN the Netherlands;

    Department of Clinical Genetics Erasmus Medical Center Rotterdam 3015 CN the Netherlands;

    Laboratory of Molecular Medicine Unit of Neuromuscular and NeuroDegenerative Disorders Department;

    Departments of Pediatrics and Neurology University of Washington Seattle WA 98101 USA;

    IRCCS Casa Sollievo della Sofferenza Laboratory of Bioinformatics San Giovanni Rotondo (FG) 71013;

    Laboratory for Pediatric Brain Diseases Rady Children’s Institute for Genomic Medicine University;

    Neurogenetics Unit IRCCS Santa Lucia Foundation Rome 00143 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

    SUFU; Sonic Hedgehog; Joubert syndrome; ciliopathies; developmental defects; GLI3; hypomorphic variants; polymicrogyria; molar tooth sign; congenital ataxia;

    机译:sufu;sonic hedgehog;joubert综合征;ciliopathies;发育缺陷;gli3;雄性肾性变异;多发性血糖;磨牙迹象;先天性共济失调;

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