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NC_000005.10:g.13786213_13786217dup

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Interpretation:
Pathogenic​

Review status:
criteria provided, single submitter
Submissions:
1 (Most recent: Jan 7, 2021)
Last evaluated:
May 5, 2019
Accession:
VCV000952589.2
Variation ID:
952589
Description:
5bp duplication
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NC_000005.10:g.13786213_13786217dup

Allele ID
923837
Variant type
Duplication
Variant length
5 bp
Cytogenetic location
5p15.2
Genomic location
5: 13786212-13786213 (GRCh38) GRCh38 UCSC
5: 13786321-13786322 (GRCh37) GRCh37 UCSC
HGVS
Nucleotide Protein Molecular
consequence
NC_000005.10:g.13786213_13786217dup
NC_000005.9:g.13786322_13786326dup
NG_013081.2:g.163264_163268dup
NG_013081.1:g.163264_163268dup
Protein change
F2930fs
Other names
-
Canonical SPDI
NC_000005.10:13786212:ACCAT:ACCATACCAT
Functional consequence
-
Global minor allele frequency (GMAF)
-

Allele frequency
-
Links
Varsome
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Aggregate interpretations per condition

Interpreted condition Interpretation Number of submissions Review status Last evaluated Variation/condition record
Pathogenic 1 criteria provided, single submitter May 5, 2019 RCV001224725.2
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Gene OMIM ClinGen Gene Dosage Sensitivity Curation Variation viewer Related variants
HI score Help TS score Help Within gene All
DNAH5 - - GRCh38
GRCh37
2404 2538

Submitted interpretations and evidence

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Interpretation
(Last evaluated)
Review status
(Assertion criteria)
Condition
(Inheritance)
Submitter Supporting information
Pathogenic
(May 05, 2019)
criteria provided, single submitter
Method: clinical testing
Primary ciliary dyskinesia
Allele origin: germline
Invitae
Accession: SCV001396941.2
Submitted: (Jan 07, 2021)
Evidence details
Publications
PubMed (2)
Comment:
This sequence change creates a premature translational stop signal (p.Phe2930Trpfs*11) in the DNAH5 gene. It is expected to result in an absent or disrupted protein … (more)

Functional evidence

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There is no functional evidence in ClinVar for this variation. If you have generated functional data for this variation, please consider submitting that data to ClinVar.

Citations for this variant

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Title Author Journal Year Link
DNAH5 mutations are a common cause of primary ciliary dyskinesia with outer dynein arm defects. Hornef N American journal of respiratory and critical care medicine 2006 PMID: 16627867
Mutations in DNAH5 cause primary ciliary dyskinesia and randomization of left-right asymmetry. Olbrich H Nature genetics 2002 PMID: 11788826

Record last updated Jun 14, 2021