The vast majority of reported (likely) pathogenic missense variants in the genes coding for the fibrillar collagens leads to the substitution of one of the obligatory glycine residues in the Gly-Xaa-Yaa repeat sequence of the triple helical domain. Their phenotypic consequences and deleterious effects have been well-documented. However, with increasing access to molecular diagnostic testing based on next-generation sequencing techniques, such as sequencing of multi-gene panels and wholeexome sequencing, non-glycine substitutions are more frequently identified in individuals suspected to have a heritable collagen disorder, but their pathogenic effect is often difficult to predict. Some specific non-glycine substitutions in the proa1(I)- (p.(Arg312Cys)) and proa1(III)- (glutamic acid to lysine at different positions) collagen chain have been identified in a number of individuals presenting a phenotype showing features of both classical and vascular Ehlers-Danlos syndrome. The number of reported individuals with these defects is currently very low, and several of these non-glycine substitutions had initially been categorised as variants of unknown significance (VUS), complicating early diagnosis, accurate counselling, management guidelines, and correct classification. This collaborative study reports on the phenotype of 22 and 7 individuals harbouring these rare variants in COL1A1 and COL3A1, respectively, expanding our knowledge on clinical presentation, phenotypic variability, and natural history, and informing on the risk for potentially life-threatening events, such as vascular, gastro-intestinal, and pregnancy-related complications.

Atypical variants in COL1A1 and COL3A1 associated with classical and vascular Ehlers-Danlos syndrome overlap phenotypes: expanding the clinical phenotype based on additional case reports

Ritelli, Marco;Colombi, Marina;
2022-01-01

Abstract

The vast majority of reported (likely) pathogenic missense variants in the genes coding for the fibrillar collagens leads to the substitution of one of the obligatory glycine residues in the Gly-Xaa-Yaa repeat sequence of the triple helical domain. Their phenotypic consequences and deleterious effects have been well-documented. However, with increasing access to molecular diagnostic testing based on next-generation sequencing techniques, such as sequencing of multi-gene panels and wholeexome sequencing, non-glycine substitutions are more frequently identified in individuals suspected to have a heritable collagen disorder, but their pathogenic effect is often difficult to predict. Some specific non-glycine substitutions in the proa1(I)- (p.(Arg312Cys)) and proa1(III)- (glutamic acid to lysine at different positions) collagen chain have been identified in a number of individuals presenting a phenotype showing features of both classical and vascular Ehlers-Danlos syndrome. The number of reported individuals with these defects is currently very low, and several of these non-glycine substitutions had initially been categorised as variants of unknown significance (VUS), complicating early diagnosis, accurate counselling, management guidelines, and correct classification. This collaborative study reports on the phenotype of 22 and 7 individuals harbouring these rare variants in COL1A1 and COL3A1, respectively, expanding our knowledge on clinical presentation, phenotypic variability, and natural history, and informing on the risk for potentially life-threatening events, such as vascular, gastro-intestinal, and pregnancy-related complications.
2022
2022
UE
LS2_6 Molecular genetics, reverse genetics and RNAi
LS7_2 Diagnostic tools (e.g. genetic, imaging)
Esperti anonimi
Inglese
Internazionale
STAMPA
40 Suppl 134
5
46
62
17
Ehlers-Danlos syndrome; vascular rupture; collagen; joint hypermobility; skin hyperextensibility; connective tissue; Collagen; Collagen Type III; Humans; Mutation; Phenotype; Ehlers-Danlos Syndrome
Altre Istituz. pubb. estere
https://www.clinexprheumatol.org/abstract.asp?a=18165
Goal 3: Good health and well-being for people
22
info:eu-repo/semantics/article
262
Colman, Marlies; Castori, Marco; Micale, Lucia; Ritelli, Marco; Colombi, Marina; Ghali, Neeti; Van Dijk, Fleur; Marsili, Luisa; Weeks, Adrienne; Vande...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11379/558459
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