NM_080632.3(UPF3B):c.674_677del (p.Arg225fs) AND Syndromic X-linked intellectual disability 14

Germline classification:
Pathogenic (4 submissions)
Last evaluated:
Dec 27, 2023
Review status:
2 stars out of maximum of 4 stars
criteria provided, multiple submitters, no conflicts
Somatic classification
of clinical impact:
None
Review status:
(0/4) 0 stars out of maximum of 4 stars
no assertion criteria provided
Somatic classification
of oncogenicity:
None
Review status:
(0/4) 0 stars out of maximum of 4 stars
no assertion criteria provided
Record status:
current
Accession:
RCV000012151.21

Allele description [Variation Report for NM_080632.3(UPF3B):c.674_677del (p.Arg225fs)]

NM_080632.3(UPF3B):c.674_677del (p.Arg225fs)

Gene:
UPF3B:UPF3B regulator of nonsense mediated mRNA decay [Gene - OMIM - HGNC]
Variant type:
Microsatellite
Cytogenetic location:
Xq24
Genomic location:
Preferred name:
NM_080632.3(UPF3B):c.674_677del (p.Arg225fs)
HGVS:
  • NC_000023.11:g.119841207TTCT[1]
  • NG_009241.1:g.16793GAAA[1]
  • NM_023010.4:c.674_677del
  • NM_080632.3:c.674_677delMANE SELECT
  • NP_075386.1:p.Arg225fs
  • NP_542199.1:p.Arg225fs
  • NC_000023.10:g.118975169_118975172del
  • NC_000023.10:g.118975170TTCT[1]
  • NM_080632.1:c.674_677del
  • NM_080632.1:c.674_677delGAAA
  • NM_080632.2:c.674_677del
  • p.Arg225Lysfs*22
Protein change:
R225fs
Links:
OMIM: 300298.0001; dbSNP: rs794727881
NCBI 1000 Genomes Browser:
rs794727881
Molecular consequence:
  • NM_023010.4:c.674_677del - frameshift variant - [Sequence Ontology: SO:0001589]
  • NM_080632.3:c.674_677del - frameshift variant - [Sequence Ontology: SO:0001589]

Condition(s)

Name:
Syndromic X-linked intellectual disability 14 (MRXS14)
Synonyms:
INTELLECTUAL DEVELOPMENTAL DISORDER, X-LINKED, SYNDROMIC 14
Identifiers:
MONDO: MONDO:0010398; MedGen: C1970822; Orphanet: 776; OMIM: 300676

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Assertion and evidence details

Submission AccessionSubmitterReview Status
(Assertion method)
Clinical Significance
(Last evaluated)
OriginMethodCitations
SCV000032385OMIM
no assertion criteria provided
Pathogenic
(Sep 1, 2007)
germlineliterature only

PubMed (2)
[See all records that cite these PMIDs]

SCV001427222Clinical Genomics Program, Stanford Medicine
no assertion criteria provided
Pathogenic
(Feb 10, 2020)
germlineclinical testing

SCV003445192Invitae
criteria provided, single submitter

(Invitae Variant Classification Sherloc (09022015))
Pathogenic
(Dec 27, 2023)
germlineclinical testing

PubMed (3)
[See all records that cite these PMIDs]

SCV003823824Revvity Omics, Revvity
criteria provided, single submitter

(ACMG Guidelines, 2015)
Pathogenic
(Jan 17, 2022)
germlineclinical testing

PubMed (1)
[See all records that cite this PMID]

Summary from all submissions

EthnicityOriginAffectedIndividualsFamiliesChromosomes testedNumber TestedFamily historyMethod
not providedgermlineyesnot providednot providednot providednot providednot providedclinical testing
not providedgermlinenot providednot providednot providednot providednot providednot providedliterature only
not providedgermlineunknownnot providednot providednot providednot providednot providedclinical testing

Citations

PubMed

FG syndrome: report of three new families with linkage to Xq12-q22.1.

Graham JM Jr, Tackels D, Dibbern K, Superneau D, Rogers C, Corning K, Schwartz CE.

Am J Med Genet. 1998 Nov 2;80(2):145-56.

PubMed [citation]
PMID:
9805132

Mutations of the UPF3B gene, which encodes a protein widely expressed in neurons, are associated with nonspecific mental retardation with or without autism.

Laumonnier F, Shoubridge C, Antar C, Nguyen LS, Van Esch H, Kleefstra T, Briault S, Fryns JP, Hamel B, Chelly J, Ropers HH, Ronce N, Blesson S, Moraine C, Gécz J, Raynaud M.

Mol Psychiatry. 2010 Jul;15(7):767-76. doi: 10.1038/mp.2009.14. Epub 2009 Feb 24.

PubMed [citation]
PMID:
19238151
See all PubMed Citations (5)

Details of each submission

From OMIM, SCV000032385.4

#EthnicityIndividualsChromosomes TestedFamily HistoryMethodCitations
1not providednot providednot providednot providedliterature only PubMed (2)

Description

In 2 brothers with X-linked syndromic intellectual developmental disorder-14 (MRXS14; 300676), Tarpey et al. (2007) identified a hemizygous 4-bp deletion (674delGAAA) in exon 7 of the UPF3B gene, resulting in a frameshift and premature termination of the protein. The family had originally been reported by Graham et al. (1998) as having Opitz-Kaveggia syndrome (305450). Clinical features included macrocephaly, long, thin face, widow's peak, upslanting palpebral fissures, long fingers, broad thumbs, and severe mental retardation associated with dysgenesis of the corpus callosum. Further studies showed that nonsense-mediated decay of mutant mRNA was only partially compromised.

#SampleMethodObservation
OriginAffectedNumber testedTissuePurposeMethodIndividualsAllele frequencyFamiliesCo-occurrences
1germlinenot providednot providednot providednot providednot providednot providednot providednot provided

From Clinical Genomics Program, Stanford Medicine, SCV001427222.1

#EthnicityIndividualsChromosomes TestedFamily HistoryMethodCitations
1not providednot providednot providedclinical testingnot provided

Description

The p.Arg225Lysfs*22 variant in the UPF3B gene has been reported de novo in 1 individual and maternally inherited in 4 additional unrelated individuals (GeneDx, personal communication, January 17, 2020; Tarpey et al., 2007). In one family the variant co-segregated with disease between siblings. All of these individuals were hemizygous males who presented features consistent with UPF3B-associated intellectual disability disorder. The p.Arg225Lysfs*22 variant results in a 4 bp deletion, which causes a shift in the protein reading frame, leading to a premature termination codon 22 amino acids downstream. Hemizygous loss of function is an established mechanism of disease for the UPF3B gene.The variant is absent from large population databases, including the Genome Aggregation Database (http://gnomad.broadinstitute.org/). These data were assessed using the ACMG/AMP variant interpretation guidelines. In summary, there is sufficient evidence to classify the p.Arg225Lysfs*22 variant as pathogenic for X-linked UPF3B-associated intellectual disability disorder based on the information above. [ACMG evidence codes used: PVS1; PS2_supporting; PS4_supporting; PM2_supporting]

#SampleMethodObservation
OriginAffectedNumber testedTissuePurposeMethodIndividualsAllele frequencyFamiliesCo-occurrences
1germlineyesnot providednot providednot providednot providednot providednot providednot provided

From Invitae, SCV003445192.2

#EthnicityIndividualsChromosomes TestedFamily HistoryMethodCitations
1not providednot providednot providednot providedclinical testing PubMed (3)

Description

This sequence change creates a premature translational stop signal (p.Arg225Lysfs*22) in the UPF3B gene. It is expected to result in an absent or disrupted protein product. Loss-of-function variants in UPF3B are known to be pathogenic (PMID: 17704778, 19238151). This variant is not present in population databases (gnomAD no frequency). This premature translational stop signal has been observed in individual(s) with UPF3B-related conditions (PMID: 17704778). It has also been observed to segregate with disease in related individuals. This variant is also known as 674_677delGAAA and/or R225fs*20. ClinVar contains an entry for this variant (Variation ID: 198608). For these reasons, this variant has been classified as Pathogenic.

#SampleMethodObservation
OriginAffectedNumber testedTissuePurposeMethodIndividualsAllele frequencyFamiliesCo-occurrences
1germlineunknownnot providednot providednot providednot providednot providednot providednot provided

From Revvity Omics, Revvity, SCV003823824.2

#EthnicityIndividualsChromosomes TestedFamily HistoryMethodCitations
1not providednot providednot providednot providedclinical testing PubMed (1)
#SampleMethodObservation
OriginAffectedNumber testedTissuePurposeMethodIndividualsAllele frequencyFamiliesCo-occurrences
1germlineunknownnot providednot providednot providednot providednot providednot providednot provided

Last Updated: Apr 15, 2024