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May 1, 1995Journal of Clinical Investigation189 citationsOpen Access

A mutation in FBN1 disrupts profibrillin processing and results in isolated skeletal features of the Marfan syndrome.

DMDianna M. MilewiczJGJoseph GrossfieldSCShinuo Cao

Key Result

A heterozygous R2726W mutation in the FBN1 gene disrupts profibrillin processing and results in isolated skeletal features of Marfan syndrome without cardiac or ocular manifestations.

Study Design

Type

Case Report (n=13)

Multicenter

No

PICO

P
Population
Marfan syndrome (isolated skeletal features) (n=13)
I
Intervention / Comparator
FBN1 R2726W mutation vs Wild-type FBN1 (controls)
O
Primary Outcome
Profibrillin to fibrillin processing

Limitations

  • The cellular protease responsible for processing profibrillin to fibrillin has not been identified.
  • The exact mechanism by which unprocessed profibrillin affects microfibrils from the normal allele remains unclear.

Abstract

Dermal fibroblasts from a 13-yr-old boy with isolated skeletal features of the Marfan syndrome were used to study fibrillin synthesis and processing. Only one half of the secreted profibrillin was proteolytically processed to fibrillin outside the cell and deposited into the extracellular matrix. Electron microscopic examination of rotary shadowed microfibrils made by the proband's fibroblasts were indistinguishable from control cells. Sequencing of the FBN1 gene revealed a heterozygous C to T transition at nucleotide 8176 resulting in the substitution of a tryptophan for an arginine (R2726W), at a site immediately adjacent to a consensus sequence recognized by a cellular protease. Six other individuals in the proband's family had the FBN1 mutation that segregated with tall stature. None of the affected individuals have cardiac or ocular manifestations of the Marfan syndrome. This mutation identifies a putative site for profibrillin to fibrillin processing, and is associated with isolated skeletal features of the Marfan syndrome, indicating that the FBN1 gene is one of the genes that determines height in the general population. The cellular effect of the mutation may be equivalent to a "null" FBN1 allele and may define the phenotype associated with FBN1 "null" alleles.

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Cite This Study

Milewicz et al. (1995) conducted a case report in Marfan syndrome (isolated skeletal features) (n=13). FBN1 R2726W mutation vs. Wild-type FBN1 (controls) was evaluated on Profibrillin to fibrillin processing. A heterozygous R2726W mutation in the FBN1 gene disrupts profibrillin processing and results in isolated skeletal features of Marfan syndrome without cardiac or ocular manifestations.

synapsesocial.com/papers/6a13e1d6c4c5e9e518625fcdhttps://doi.org/10.1172/jci117930
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1A familial case of Marfan syndrome: a novel variant in the FBN1 gene2025
  2. 2Detection of 53 <i>FBN1</i> mutations (41 novel and 12 recurrent) and genotype–phenotype correlations in 113 unrelated probands referred with Marfan syndrome, or a related fibrillinopathy2009 · 40 citations
  3. 3Clustering of mutations associated with mild Marfan-like phenotypes in the 3? region ofFBN1 suggests a potential genotype-phenotype correlation2000 · 63 citations
  4. 4Four Novel FBN1 Mutations: Significance for Mutant Transcript Level and EGF-like Domain Calcium Binding in the Pathogenesis of Marfan Syndrome1993 · 307 citations
  5. 5Genotype and Phenotype Analysis of 171 Patients Referred for Molecular Study of the Fibrillin-1 Gene FBN1 Because of Suspected Marfan Syndrome2001 · 240 citations