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双等位基因CCDC47变异导致一种以羊毛状头发、肝功能障碍、畸形特征和全面发育迟缓为特征的疾病。

Bi-allelic CCDC47 Variants Cause a Disorder Characterized by Woolly Hair, Liver Dysfunction, Dysmorphic Features, and Global Developmental Delay.

作者信息

Morimoto Marie, Waller-Evans Helen, Ammous Zineb, Song Xiaofei, Strauss Kevin A, Pehlivan Davut, Gonzaga-Jauregui Claudia, Puffenberger Erik G, Holst Charles R, Karaca Ender, Brigatti Karlla W, Maguire Emily, Coban-Akdemir Zeynep H, Amagata Akiko, Lau C Christopher, Chepa-Lotrea Xenia, Macnamara Ellen, Tos Tulay, Isikay Sedat, Nehrebecky Michele, Overton John D, Klein Matthew, Markello Thomas C, Posey Jennifer E, Adams David R, Lloyd-Evans Emyr, Lupski James R, Gahl William A, Malicdan May Christine V

机构信息

National Institutes of Health Undiagnosed Diseases Program, Common Fund, Office of the Director, National Institutes of Health, Bethesda, MD 20892, USA.

School of Biosciences, Cardiff University, Cardiff CF10 3AX, UK.

出版信息

Am J Hum Genet. 2018 Nov 1;103(5):794-807. doi: 10.1016/j.ajhg.2018.09.014. Epub 2018 Oct 25.

Abstract

Ca signaling is vital for various cellular processes including synaptic vesicle exocytosis, muscle contraction, regulation of secretion, gene transcription, and cellular proliferation. The endoplasmic reticulum (ER) is the largest intracellular Ca store, and dysregulation of ER Ca signaling and homeostasis contributes to the pathogenesis of various complex disorders and Mendelian disease traits. We describe four unrelated individuals with a complex multisystem disorder characterized by woolly hair, liver dysfunction, pruritus, dysmorphic features, hypotonia, and global developmental delay. Through whole-exome sequencing and family-based genomics, we identified bi-allelic variants in CCDC47 that encodes the Ca-binding ER transmembrane protein CCDC47. CCDC47, also known as calumin, has been shown to bind Ca with low affinity and high capacity. In mice, loss of Ccdc47 leads to embryonic lethality, suggesting that Ccdc47 is essential for early development. Characterization of cells from individuals with predicted likely damaging alleles showed decreased CCDC47 mRNA expression and protein levels. In vitro cellular experiments showed decreased total ER Ca storage, impaired Ca signaling mediated by the IPR Ca release channel, and reduced ER Ca refilling via store-operated Ca entry. These results, together with the previously described role of CCDC47 in Ca signaling and development, suggest that bi-allelic loss-of-function variants in CCDC47 underlie the pathogenesis of this multisystem disorder.

摘要

钙信号传导对于包括突触小泡胞吐作用、肌肉收缩、分泌调节、基因转录和细胞增殖在内的各种细胞过程至关重要。内质网(ER)是细胞内最大的钙储存库,内质网钙信号传导和稳态的失调会导致各种复杂疾病和孟德尔疾病特征的发病机制。我们描述了四名患有复杂多系统疾病的无关个体,其特征为羊毛状头发、肝功能障碍、瘙痒、畸形特征、肌张力减退和全面发育迟缓。通过全外显子组测序和基于家系的基因组学研究,我们在编码钙结合内质网跨膜蛋白CCDC47的CCDC47中鉴定出双等位基因变异。CCDC47,也称为钙调蛋白,已被证明以低亲和力和高容量结合钙。在小鼠中,Ccdc47的缺失会导致胚胎致死,这表明Ccdc47对早期发育至关重要。对具有预测可能有害等位基因的个体的细胞进行表征,结果显示CCDC47 mRNA表达和蛋白水平降低。体外细胞实验显示内质网总钙储存减少、由肌醇1,4,5-三磷酸受体(IPR)钙释放通道介导的钙信号传导受损以及通过储存操纵性钙内流进行的内质网钙再填充减少。这些结果,连同先前描述的CCDC47在钙信号传导和发育中的作用,表明CCDC47中的双等位基因功能丧失变异是这种多系统疾病发病机制的基础。

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