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1.
Hum Mutat ; 43(7): 900-918, 2022 07.
Article de Anglais | MEDLINE | ID: mdl-35344616

RÉSUMÉ

Robinow syndrome is characterized by a triad of craniofacial dysmorphisms, disproportionate-limb short stature, and genital hypoplasia. A significant degree of phenotypic variability seems to correlate with different genes/loci. Disturbances of the noncanonical WNT-pathway have been identified as the main cause of the syndrome. Biallelic variants in ROR2 cause an autosomal recessive form of the syndrome with distinctive skeletal findings. Twenty-two patients with a clinical diagnosis of autosomal recessive Robinow syndrome were screened for variants in ROR2 using multiple molecular approaches. We identified 25 putatively pathogenic ROR2 variants, 16 novel, including single nucleotide variants and exonic deletions. Detailed phenotypic analyses revealed that all subjects presented with a prominent forehead, hypertelorism, short nose, abnormality of the nasal tip, brachydactyly, mesomelic limb shortening, short stature, and genital hypoplasia in male patients. A total of 19 clinical features were present in more than 75% of the subjects, thus pointing to an overall uniformity of the phenotype. Disease-causing variants in ROR2, contribute to a clinically recognizable autosomal recessive trait phenotype with multiple skeletal defects. A comprehensive quantitative clinical evaluation of this cohort delineated the phenotypic spectrum of ROR2-related Robinow syndrome. The identification of exonic deletion variant alleles further supports the contention of a loss-of-function mechanism in the etiology of the syndrome.


Sujet(s)
Malformations crâniofaciales , Nanisme , Anomalies morphologiques congénitales des membres , Récepteurs orphelins de type récepteur à tyrosine kinase , Malformations urogénitales , Malformations crâniofaciales/diagnostic , Malformations crâniofaciales/génétique , Nanisme/diagnostic , Nanisme/génétique , Gènes récessifs , Humains , Anomalies morphologiques congénitales des membres/diagnostic , Anomalies morphologiques congénitales des membres/génétique , Mâle , Phénotype , Récepteurs orphelins de type récepteur à tyrosine kinase/génétique , Malformations urogénitales/diagnostic , Malformations urogénitales/génétique
2.
Am J Hum Genet ; 108(7): 1342-1349, 2021 07 01.
Article de Anglais | MEDLINE | ID: mdl-34143952

RÉSUMÉ

EDEM3 encodes a protein that converts Man8GlcNAc2 isomer B to Man7-5GlcNAc2. It is involved in the endoplasmic reticulum-associated degradation pathway, responsible for the recognition of misfolded proteins that will be targeted and translocated to the cytosol and degraded by the proteasome. In this study, through a combination of exome sequencing and gene matching, we have identified seven independent families with 11 individuals with bi-allelic protein-truncating variants and one individual with a compound heterozygous missense variant in EDEM3. The affected individuals present with an inherited congenital disorder of glycosylation (CDG) consisting of neurodevelopmental delay and variable facial dysmorphisms. Experiments in human fibroblast cell lines, human plasma, and mouse plasma and brain tissue demonstrated decreased trimming of Man8GlcNAc2 isomer B to Man7GlcNAc2, consistent with loss of EDEM3 enzymatic activity. In human cells, Man5GlcNAc2 to Man4GlcNAc2 conversion is also diminished with an increase of Glc1Man5GlcNAc2. Furthermore, analysis of the unfolded protein response showed a reduced increase in EIF2AK3 (PERK) expression upon stimulation with tunicamycin as compared to controls, suggesting an impaired unfolded protein response. The aberrant plasma N-glycan profile provides a quick, clinically available test for validating variants of uncertain significance that may be identified by molecular genetic testing. We propose to call this deficiency EDEM3-CDG.


Sujet(s)
Protéines de liaison au calcium/génétique , Troubles congénitaux de la glycosylation/génétique , Réticulum endoplasmique/génétique , alpha-Mannosidase/génétique , Adolescent , Allèles , Protéines de liaison au calcium/déficit , Lignée cellulaire , Enfant , Enfant d'âge préscolaire , Troubles congénitaux de la glycosylation/sang , Incapacités de développement/génétique , Femelle , Glycoprotéines/sang , Glycosylation , Humains , Nourrisson , Déficience intellectuelle/génétique , Mâle , Mutation , Pedigree , Polyosides/sang , Troubles de l'homéostasie des protéines/génétique , alpha-Mannosidase/déficit
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