Heterozygous intragenic deletions of FREM1 are not associated with trigonocephaly
Angelika J Dawson1,2, Karine Hovanes3, Jing Liu1,2
1Genomics, Shared Health Manitoba, Winnipeg.
Abstract:
Recessive mutations in FRAS1-related extracellular matrix 1 (FREM1) are associated with two rare genetic disorders, Manitoba-oculo-tricho-anal (MOTA) and bifid nose with or without anorectal and renal anomalies (BNAR). Fraser syndrome is a more severe disorder that shows phenotypic overlap with both MOTA and anorectal and renal anomalies and results from mutations in FRAS1, FREM2 and GRIP1. Heterozygous missense mutations in FREM1 were reported in association with isolated trigonocephaly with dominant inheritance and incomplete penetrance. Moreover, large deletions encompassing FREM1 have been reported in association with a syndromic form of trigonocephaly and were designated as trigonocephaly type 2. Trigonocephaly results from premature closure of the metopic suture and typically manifests as a form of nonsyndromic craniosynostosis. We report on 20 patients evaluated for developmental delay and without abnormal metopic suture. Chromosomal microarray analysis revealed heterozygous FREM1 deletions in 18 patients and in 4 phenotypically normal parents. Two patients were diagnosed with MOTA and had homozygous FREM1 deletions. Therefore, although our results are consistent with the previous reports of homozygous deletions causing MOTA, we report no association between heterozygous FREM1 deletions and trigonocephaly in this cohort.
Insights
Recessive FRAS1-related extracellular matrix 1 (FREM1) deletions cause Manitoba-oculo-tricho-anal (MOTA) syndrome. This study found no link between heterozygous FREM1 deletions and trigonocephaly in patients with developmental delay.
Area of Science:
- Genetics
- Developmental Biology
- Rare Diseases
Background:
- Recessive FREM1 mutations are linked to MOTA and BNAR syndromes.
- Fraser syndrome involves mutations in FRAS1, FREM2, and GRIP1.
- Previous studies suggested heterozygous FREM1 mutations cause trigonocephaly.
Purpose of the Study:
- Investigate the role of FREM1 deletions in patients with developmental delay.
- Clarify the association between FREM1 deletions and trigonocephaly.
Main Methods:
- Analyzed 20 patients with developmental delay using chromosomal microarray.
- Identified homozygous FREM1 deletions in two MOTA patients.
- Detected heterozygous FREM1 deletions in 18 patients and 4 parents.
Main Results:
- Homozygous FREM1 deletions confirmed in MOTA patients.
- Heterozygous FREM1 deletions were found in patients without trigonocephaly.
- No association was observed between heterozygous FREM1 deletions and trigonocephaly in this cohort.
Conclusions:
- Confirms homozygous FREM1 deletions cause MOTA.
- Challenges previous findings linking heterozygous FREM1 deletions to trigonocephaly.
- Suggests FREM1 deletions in patients with developmental delay should be investigated for MOTA.
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