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Analysis of Single Nucleotide Variants in CRISPR-Cas9 Edited Zebrafish Exomes Shows No Evidence of Off-Target Inflation.对CRISPR-Cas9编辑的斑马鱼外显子组中单个核苷酸变异的分析表明,没有脱靶膨胀的证据。
Front Genet. 2019 Oct 11;10:949. doi: 10.3389/fgene.2019.00949. eCollection 2019.
2
A CEP104-CSPP1 Complex Is Required for Formation of Primary Cilia Competent in Hedgehog Signaling.CEP104-CSPP1 复合物对于形成有 Hedgehog 信号功能的初级纤毛是必需的。
Cell Rep. 2019 Aug 13;28(7):1907-1922.e6. doi: 10.1016/j.celrep.2019.07.025.
3
Bi-allelic Variants in DYNC1I2 Cause Syndromic Microcephaly with Intellectual Disability, Cerebral Malformations, and Dysmorphic Facial Features.DYNC1I2 中的双等位基因突变导致伴有智力障碍、脑畸形和面部畸形特征的综合征性小头畸形。
Am J Hum Genet. 2019 Jun 6;104(6):1073-1087. doi: 10.1016/j.ajhg.2019.04.002. Epub 2019 May 9.
4
Recessive variants in ZNF142 cause a complex neurodevelopmental disorder with intellectual disability, speech impairment, seizures, and dystonia.ZNF142 中的隐性变异导致一种复杂的神经发育障碍,伴有智力残疾、言语障碍、癫痫发作和肌张力障碍。
Genet Med. 2019 Nov;21(11):2532-2542. doi: 10.1038/s41436-019-0523-0. Epub 2019 Apr 30.
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Mutations in NCAPG2 Cause a Severe Neurodevelopmental Syndrome that Expands the Phenotypic Spectrum of Condensinopathies.NCAPG2 基因突变导致一种严重的神经发育综合征,扩展了凝聚素病变的表型谱。
Am J Hum Genet. 2019 Jan 3;104(1):94-111. doi: 10.1016/j.ajhg.2018.11.017.
6
The complexity of the cilium: spatiotemporal diversity of an ancient organelle.纤毛的复杂性:古老细胞器的时空多样性。
Curr Opin Cell Biol. 2018 Dec;55:139-149. doi: 10.1016/j.ceb.2018.08.001. Epub 2018 Aug 20.
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Small molecule inhibition of RAS/MAPK signaling ameliorates developmental pathologies of Kabuki Syndrome.小分子抑制 RAS/MAPK 信号通路可改善卡波济氏综合征的发育病理学。
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9
Variation in a range of mTOR-related genes associates with intracranial volume and intellectual disability.一系列与mTOR相关的基因变异与颅内体积和智力残疾相关。
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Haploinsufficiency of the Chromatin Remodeler BPTF Causes Syndromic Developmental and Speech Delay, Postnatal Microcephaly, and Dysmorphic Features.染色质重塑因子BPTF单倍剂量不足导致综合征性发育和语言迟缓、出生后小头畸形及畸形特征。
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CCDC32 基因功能丧失性突变导致一种先天性综合征,其特征为颅面、心脏和神经发育异常。

Loss of function mutations in CCDC32 cause a congenital syndrome characterized by craniofacial, cardiac and neurodevelopmental anomalies.

机构信息

Department of Genetic and Metabolic Diseases, Hadassah-Hebrew University Medical Center, Jerusalem 91120, Israel.

Center for Human Disease Modeling, Duke University, Durham, NC 27701, USA.

出版信息

Hum Mol Genet. 2020 Jun 3;29(9):1489-1497. doi: 10.1093/hmg/ddaa073.

DOI:10.1093/hmg/ddaa073
PMID:32307552
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7268788/
Abstract

Despite the wide use of genomics to investigate the molecular basis of rare congenital malformations, a significant fraction of patients remains bereft of diagnosis. As part of our continuous effort to recruit and perform genomic and functional studies on such cohorts, we investigated the genetic and mechanistic cause of disease in two independent consanguineous families affected by overlapping craniofacial, cardiac, laterality and neurodevelopmental anomalies. Using whole exome sequencing, we identified homozygous frameshift CCDC32 variants in three affected individuals. Functional analysis in a zebrafish model revealed that ccdc32 depletion recapitulates the human phenotypes. Because some of the patient phenotypes overlap defects common to ciliopathies, we asked if loss of CCDC32 might contribute to the dysfunction of this organelle. Consistent with this hypothesis, we show that ccdc32 is required for normal cilia formation in zebrafish embryos and mammalian cell culture, arguing that ciliary defects are at least partially involved in the pathomechanism of this disorder.

摘要

尽管基因组学已被广泛用于研究罕见先天性畸形的分子基础,但仍有相当一部分患者未得到明确诊断。作为我们不断努力的一部分,我们对两个受重叠颅面、心脏、侧位和神经发育异常影响的近亲家族的疾病进行了基因组和功能研究。使用全外显子组测序,我们在三个受影响的个体中发现了纯合移码 CCDC32 变异。在斑马鱼模型中的功能分析表明,ccdc32 缺失可重现人类表型。由于一些患者表型与纤毛病共有的缺陷重叠,我们询问 CCDC32 的缺失是否可能导致该细胞器的功能障碍。与该假说一致,我们表明 ccdc32 对于斑马鱼胚胎和哺乳动物细胞培养中的正常纤毛形成是必需的,这表明纤毛缺陷至少部分参与了该疾病的发病机制。