scholarly journals Nonsense Mutation in Coiled-Coil Domain Containing 151 Gene (CCDC151) Causes Primary Ciliary Dyskinesia

2014 ◽  
Vol 35 (12) ◽  
pp. 1446-1448 ◽  
Author(s):  
Muslim M. Alsaadi ◽  
A. Mesut Erzurumluoglu ◽  
Santiago Rodriguez ◽  
Philip A. I. Guthrie ◽  
Tom R. Gaunt ◽  
...  
2018 ◽  
pp. bcr-2018-224964 ◽  
Author(s):  
Hasan Ghandourah ◽  
Sharon D Dell

Primary ciliary dyskinesia (PCD) can manifest in the neonatal period with severe respiratory distress. We describe a child with PCD who presented at term with severe neonatal respiratory distress, persistent right upper lobe collapse and failure to thrive who underwent lobectomy prior to the diagnosis of PCD at the age of 3 years. This case report illustrates the severe spectrum of lung disease associated with coiled-coil domain containing protein 40 (CCDC40) gene variants in patients with PCD.


2021 ◽  
Vol 10 (21) ◽  
pp. 5102
Author(s):  
Mohammed T. Alsamri ◽  
Amnah Alabdouli ◽  
Durdana Iram ◽  
Alia M. Alkalbani ◽  
Ayesha S. Almarzooqi ◽  
...  

Primary ciliary dyskinesia (PCD) is a poorly understood disorder. It is primarily autosomal recessive and is prevalent in tribal communities of the United Arab Emirates due to consanguineous marriages. This retrospective study aimed to assess the pathogenicity of the genetic variants of PCD in indigenous patients with significant clinical respiratory problems. Pathogenicity scores of variants obtained from the chart review were consolidated using the Ensembl Variant Effect Predictor. The multidimensional dataset of scores was clustered into three groups based on their pathogenicity. Sequence alignment and the Jensen–Shannon Divergence (JSD) were generated to evaluate the amino acid conservation at the site of the variation. One-hundred and twelve variants of 28 genes linked to PCD were identified in 66 patients. Twenty-two variants were double heterozygous, two triple heterozygous, and seven homozygous. Of the thirteen novel variants, two, c.11839 + 1G > A in dynein, axonemal, heavy chain 11 (DNAH11) and p.Lys92Trpfs in dynein, axonemal, intermediate chain 1 (DNAI1) were associated with dextrocardia with situs inversus, and one, p.Gly21Val in coiled-coil domain-containing protein 40 (CCDC40), with absent inner dynein arms. Homozygous C1orf127:p.Arg113Ter (rs558323413) was also associated with laterality defects in two related patients. The majority of variants were missense involving conserved residues with a median JSD score of 0.747. Homology models of two deleterious variants in the stalk of DNAH11, p.Gly3102Asp and p.Leu3127Arg, revealed structural importance of the conserved glycine and leucine. These results define potentially damaging PCD variants in the region. Future studies, however, are needed to fully comprehend the genetic underpinnings of PCD.


2007 ◽  
Vol 104 (9) ◽  
pp. 3336-3341 ◽  
Author(s):  
B. Duriez ◽  
P. Duquesnoy ◽  
E. Escudier ◽  
A.-M. Bridoux ◽  
D. Escalier ◽  
...  

2021 ◽  
Vol 12 ◽  
Author(s):  
Rongchun Wang ◽  
Danhui Yang ◽  
Ting Guo ◽  
Cheng Lei ◽  
Xu Chen ◽  
...  

Background:ODAD3 encodes a protein of 595 amino acids and contain three highly conserved coiled-coil domains, which is essential for cilia axoneme dynein arm assembly and docking. Primary ciliary dyskinesia (PCD) of ODAD3 deficiency are rarely reported. Female infertility in PCD related to ODAD3 variants has not been reported.Methods: Whole-exome and Sanger sequencing were used to identify the disease-related gene of the patient with PCD in a consanguineous Chinese family. Domain analysis was applied to predict the impact of the variant on ODAD3 protein.Results: The 35 year-old female patient exhibited chronic sinusitis, diffuse bronchiectasis, dextrocardia and infertility. We identified a novel homozygous variant in ODAD3, c.1166_1169dupAGAC, p.(Leu391Aspfs*105) in the PCD patient by exome sequencing and Sanger sequencing. This frameshift variant was predicted to be disease causing by bioinformatics analysis and was also not presented in the current authorized large genetic databases.Conclusions: Our study enriches the genetic spectrum and clinical phenotypes of ODAD3 variants in PCD and provide more evidence for future genetic counseling and gene-targeted therapy for this disease.


2020 ◽  
Vol 40 (6) ◽  
Author(s):  
Sheng Deng ◽  
Shan Wu ◽  
Hong Xia ◽  
Wei Xiong ◽  
Xiong Deng ◽  
...  

Abstract Kartagener syndrome (KS), a subtype of primary ciliary dyskinesia (PCD), is characterized by bronchiectasis, chronic sinusitis, male infertility and situs inversus. KS is a genetically heterogeneous disease that is inherited in an autosomal recessive form; however, X-linked inheritance has also been reported. As of this writing [late 2020], at least 34 loci, most of which have known genes, have been reported in the literature as associating with KS. In the present study, we identified a frame shift mutation, c.167delG (p.G56Dfs*26), in the coiled-coil domain containing 151 gene (CCDC151) responsible for KS in a Han-Chinese family. To our knowledge, this is the first report of a CCDC151 c.167delG mutation in the KS patient. These findings may expand the CCDC151 mutation spectrum of KS, and contribute to future genetic counseling and gene-targeted therapy for this disease.


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