A displasia espondilometafisária axial é um distúrbio genético do crescimento ósseo. O termo axial significa em direção ao centro do corpo. Sphondylos é um termo grego que significa vértebra. A displasia metafisária refere-se a anormalidades nas extremidades dos ossos longos. A displasia espondilometafisária axial afeta principalmente os ossos do tórax, pelve, coluna vertebral, braços e pernas, e resulta em estatura reduzida. A causa genética subjacente da displasia espondilometafisária axial é atualmente desconhecida. Acredita-se que seja herdada de forma autossômica recessiva.
Introdução
O que você precisa saber de cara
A displasia espondilometafisária axial é um distúrbio genético do crescimento ósseo. O termo axial significa em direção ao centro do corpo. Sphondylos é um termo grego que significa vértebra. A displasia metafisária refere-se a anormalidades nas extremidades dos ossos longos. A displasia espondilometafisária axial afeta principalmente os ossos do tórax, pelve, coluna vertebral, braços e pernas, e resulta em estatura reduzida. A causa genética subjacente da displasia espondilometafisária axial é atualmente desconhecida. Acredita-se que seja herdada de forma autossômica recessiva.
Escala de raridade
<1/50kMuito rara
1/20kRara
1/10kPouco freq.
1/5kIncomum
1/2k
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Sinais e sintomas
O que aparece no corpo e com que frequência cada sintoma acontece
Partes do corpo afetadas
+ 23 sintomas em outras categorias
Características mais comuns
Os sintomas variam de pessoa para pessoa. Abaixo estão as 62 características clínicas mais associadas, ordenadas por frequência.
Linha do tempo da pesquisa
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Genética e causas
O que está alterado no DNA e como passa nas famílias
Genes associados
1 gene identificado com associação a esta condição. Padrão de herança: Autosomal recessive.
Plays a role in cilia formation and/or maintenance (By similarity). Plays a role in the regulation of cell morphology and cytoskeletal organization (PubMed:21834987). Involved in DNA damage repair (PubMed:26290490)
MitochondrionCytoplasm, cytoskeleton, cilium basal bodyCell projection, cilium, photoreceptor outer segmentCytoplasm
Retinal dystrophy with or without macular staphyloma
An ocular disorder characterized by decreased vision which worsen over time, and dystrophic changes in the retina, such as retinal pigment epithelium mottling and vessel narrowing. Macular staphyloma, without high myopia, is present in some patients.
Variantes genéticas (ClinVar)
158 variantes patogênicas registradas no ClinVar.
Classificação de variantes (ClinVar)
Distribuição de 13 variantes classificadas pelo ClinVar.
Diagnóstico
Os sinais que médicos procuram e os exames que confirmam
Tratamento e manejo
Remédios, cuidados de apoio e o que precisa acompanhar
Onde tratar no SUS
Hospitais de referência no Brasil e o protocolo oficial do SUS (PCDT)
🇧🇷 Atendimento SUS — Displasia espondilometafisária axial
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Dados de DATASUS/CNES, SBGM, ABNeuro e Ministério da Saúde. Sempre confirme a disponibilidade diretamente com o estabelecimento.
Pesquisa ativa
Ensaios clínicos abertos e novidades científicas recentes
Pesquisa e ensaios clínicos
Nenhum ensaio clínico registrado para esta condição.
Publicações mais relevantes
Variants in CFAP410 cause a range of retinal and skeletal phenotypes.
Ciliopathies are associated with a range of phenotypes including retinal degeneration and skeletal abnormalities. We present a retrospective study of 49 patients with variants in Cilia and Flagella Associated Protein 410 (CFAP410) from multiple ophthalmic centers across the world. Common clinical features included early-onset reduced visual acuity, photophobia, and delayed light-to-dark adaptation. A cone-rod dystrophy pattern was observed roughly two times more commonly than rod-cone dystrophy. A minority of patients (22.4%) presented with skeletal abnormalities consistent with axial spondylometaphyseal dysplasia (SMDAX). Patients with the most severe ophthalmic and skeletal phenotypes had disease-associated variants within conserved leucine-rich regions of CFAP410, and the structural effects of these variants were modelled using ChimeraX. This report furthers our understanding of CFAP410-associated clinical phenotypes such as retinal dystrophy and skeletal dysplasia.
Functional characterization of C21ORF2 association with the NEK1 kinase mutated in human in diseases.
The NEK1 kinase controls ciliogenesis, mitosis, and DNA repair, and NEK1 mutations cause human diseases including axial spondylometaphyseal dysplasia and amyotrophic lateral sclerosis. C21ORF2 mutations cause a similar pattern of human diseases, suggesting close functional links with NEK1 Here, we report that endogenous NEK1 and C21ORF2 form a tight complex in human cells. A C21ORF2 interaction domain "CID" at the C-terminus of NEK1 is necessary for its association with C21ORF2 in cells, and pathogenic mutations in this region disrupt the complex. AlphaFold modelling predicts an extended binding interface between a leucine-rich repeat domain in C21ORF2 and the NEK1-CID, and our model may explain why pathogenic mutations perturb the complex. We show that NEK1 mutations that inhibit kinase activity or weaken its association with C21ORF2 severely compromise ciliogenesis, and that C21ORF2, like NEK1 is required for homologous recombination. These data enhance our understanding of how the NEK1 kinase is regulated, and they shed light on NEK1-C21ORF2-associated diseases.
A case of siblings with juvenile retinitis pigmentosa associated with NEK1 gene variants.
Axial spondylometaphyseal dysplasia(axial SMD) is associated with early-onset retinal dystrophy and various skeletal dysplasias of varying severity. NEK1 is the causative gene for short rib polydactyly syndrome and axial SMD. Here, we report a case of siblings with juvenile retinitis pigmentosa (RP) and NEK1 variants not associated with systemic disorders. The patients were a 7-year-old-girl and a 9-year-old boy with RP, who were followed for 9 years. Whole exome sequencing (WES) was performed on the siblings and their parents, who were not consanguineous. The corrected visual acuity of the girl and the boy at first visit was binocular 20/63 and 20/100 OD and 20/63 OS, respectively. The siblings had narrowing of retinal blood vessels and retinal pigment epithelium atrophy in the fundus and showed an extinguished pattern in electroretinogram. On optical coherence tomography, there was a mottled ellipsoid band with progressive loss in the outer macular, the edges of which corresponded to the ring of hyperautofluorescence on fundus autofluorescence imaging. The siblings showed progressive visual field constriction. Radiological examination did not reveal any skeletal abnormalities. We identified two rare heterozygous NEK1 variants in the patients: c.240 G>A; p.(M80I) and c.634_639dup;p.(V212_L213dup). Heterozygous variants were recognized in the father and mother, respectively. According to the guidelines of the American College of Medical Genetics and Genomics, both variants were classified as likely pathogenic. This is the first report of RP patients with NEK1 variants not associated with skeletal abnormalities.
Homozygous variant in C21orf2 in a case of Jeune syndrome with severe thoracic involvement: Extending the phenotypic spectrum.
We previously reported exome sequencing in a short-rib thoracic dystrophy (SRTD) cohort, in whom recessive mutations were identified in SRTD-associated genes in 10 of 11 cases. A heterozygous stop mutation in the known SRTD gene WDR60 was identified in the remaining case; no novel candidate gene/s were suggested by homozygous/compound heterozygous analysis. This case was thus considered unsolved. Re-analysis following an analysis pipeline update identified a homozygous mutation in C21orf2 (c.218G > C; p.Arg73Pro). This homozygous variant was previously removed at the quality control stage by the default GATK parameter "in-breeding co-efficient." C21orf2 was recently associated with both Jeune asphyxiating thoracic dystrophy (JATD) and axial spondylometaphyseal dysplasia (axial SMD); this particular mutation was reported in homozygous and compound heterozygous state in both conditions. Our case has phenotypic features of both JATD and axial SMD; and the extent of thoracic involvement appears more severe than in other C21orf2-positive cases. Identification of a homozygous C21orf2 mutation in this case emphasizes the value of exome sequencing for simultaneously screening known genes and identifying novel genes. Additionally, it highlights the importance of re-interrogating data both as novel gene associations are identified and as analysis pipelines are refined. Finally, the severity of thoracic restriction in this case adds to the phenotypic spectrum attributable to C21orf2 mutations.
Axial spondylometaphyseal dysplasia is also caused by NEK1 mutations.
Axial spondylometaphyseal dysplasia (axial SMD) is a unique form of SMD characterized by dysplasia of axial skeleton and retinal dystrophy. Recently, C21orf2 has been identified as the first disease gene for axial SMD; however, the presence of genetic heterogeneity is known. In this study, we identified NEK1 as the second disease gene for axial SMD. By whole-exome sequencing in a patient with axial SMD, we identified compound heterozygous mutations of NEK1, c.3107C>G (p.S1036*) and c.3830A>C (p.D1277A), which co-segregated in the family. NEK1 mutations have previously been found in three types of short rib thoracic dystrophy, which have no retinal dystrophy. The skeletal phenotype of our patient was milder than those of previously reported cases with NEK1 mutations and those with axial SMD harboring C21orf2 mutations. Phenotypes associated with NEK1 mutations are variable and the phenotype-genotype corelation in skeletal ciliopathies is challenging.
Publicações recentes
Variants in CFAP410 cause a range of retinal and skeletal phenotypes.
Functional characterization of C21ORF2 association with the NEK1 kinase mutated in human in diseases.
A case of siblings with juvenile retinitis pigmentosa associated with NEK1 gene variants.
Homozygous variant in C21orf2 in a case of Jeune syndrome with severe thoracic involvement: Extending the phenotypic spectrum.
Axial spondylometaphyseal dysplasia is also caused by NEK1 mutations.
📚 EuropePMC6 artigos no totalmostrando 6
Variants in CFAP410 cause a range of retinal and skeletal phenotypes.
NPJ genomic medicineFunctional characterization of C21ORF2 association with the NEK1 kinase mutated in human in diseases.
Life science allianceA case of siblings with juvenile retinitis pigmentosa associated with NEK1 gene variants.
Ophthalmic geneticsHomozygous variant in C21orf2 in a case of Jeune syndrome with severe thoracic involvement: Extending the phenotypic spectrum.
American journal of medical genetics. Part AAxial spondylometaphyseal dysplasia is also caused by NEK1 mutations.
Journal of human geneticsAxial Spondylometaphyseal Dysplasia Is Caused by C21orf2 Mutations.
PloS oneAssociações
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Comunidades
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Referências e fontes
Bases de dados externas citadas neste artigo
Publicações científicas
Artigos indexados no PubMed ligados a esta doença no grafo RarasNet — título, periódico e PMID direto da fonte, sem intermediação de IA.
- Variants in CFAP410 cause a range of retinal and skeletal phenotypes.
- Functional characterization of C21ORF2 association with the NEK1 kinase mutated in human in diseases.
- A case of siblings with juvenile retinitis pigmentosa associated with NEK1 gene variants.
- Homozygous variant in C21orf2 in a case of Jeune syndrome with severe thoracic involvement: Extending the phenotypic spectrum.
- Axial spondylometaphyseal dysplasia is also caused by NEK1 mutations.
Bases de dados e fontes oficiais
Identificadores e referências canônicas usadas para montar este verbete.
- ORPHA:168549(Orphanet)
- OMIM OMIM:602271(OMIM)
- MONDO:0011211(MONDO)
- GARD:8720(GARD (NIH))
- Variantes catalogadas(ClinVar)
- Busca completa no PubMed(PubMed)
- Q55783257(Wikidata)
Dados compilados pelo RarasNet a partir de fontes abertas (Orphanet, OMIM, MONDO, PubMed/EuropePMC, ClinicalTrials.gov, DATASUS, PCDT/MS). Este conteúdo é informativo e não substitui avaliação médica.
Conteúdo mantido por Agente Raras · Médicos e pesquisadores podem colaborar