A variante de Xeroderma Pigmentoso é um tipo mais leve de Xeroderma Pigmentoso (XP), uma doença genética de pele rara marcada por uma sensibilidade extrema ao sol e um risco maior de desenvolver câncer de pele.
Introdução
O que você precisa saber de cara
A variante de Xeroderma Pigmentoso é um tipo mais leve de Xeroderma Pigmentoso (XP), uma doença genética de pele rara marcada por uma sensibilidade extrema ao sol e um risco maior de desenvolver câncer de pele.
Escala de raridade
<1/50kMuito rara
1/20kRara
1/10kPouco freq.
1/5kIncomum
1/2k
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Entender a doença
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Sinais e sintomas
O que aparece no corpo e com que frequência cada sintoma acontece
Partes do corpo afetadas
+ 12 sintomas em outras categorias
Características mais comuns
Os sintomas variam de pessoa para pessoa. Abaixo estão as 22 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.
DNA polymerase specifically involved in the DNA repair by translesion synthesis (TLS) (PubMed:10385124, PubMed:11743006, PubMed:16357261, PubMed:20388628, PubMed:24449906, PubMed:24553286, PubMed:38212351). Due to low processivity on both damaged and normal DNA, cooperates with the heterotetrameric (REV3L, REV7, POLD2 and POLD3) POLZ complex for complete bypass of DNA lesions. Inserts one or 2 nucleotide(s) opposite the lesion, the primer is further extended by the tetrameric POLZ complex. In th
Nucleus
Xeroderma pigmentosum variant type
An autosomal recessive pigmentary skin disorder characterized by solar hypersensitivity of the skin, high predisposition for developing cancers on areas exposed to sunlight and, in some cases, neurological abnormalities. XPV shows normal nucleotide excision repair, but an exaggerated delay in recovery of replicative DNA synthesis. Most patients with the variant type of xeroderma pigmentosum do not develop clinical symptoms and skin neoplasias until a later age. Clinical manifestations are limited to photo-induced deterioration of the skin and eyes.
Variantes genéticas (ClinVar)
111 variantes patogênicas registradas no ClinVar.
Classificação de variantes (ClinVar)
Distribuição de 246 variantes classificadas pelo ClinVar.
Vias biológicas (Reactome)
3 vias biológicas associadas aos genes desta condição.
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 — Variante de xeroderma pigmentoso
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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
Uncovering the Role of DNA Repair Impairment in UVA-Induced Mutagenesis in Human Xeroderma Pigmentosum Variant Cells.
Ultraviolet A (UVA) radiation induces DNA damage both directly, by forming cyclobutane pyrimidine dimers (CPDs), and indirectly, by generating oxidative stress. Cells rely on nucleotide excision repair (NER) and translesion synthesis (TLS) to tolerate these lesions. Xeroderma pigmentosum variant (XP-V) cells, deficient in DNA polymerase eta (pol eta), exhibit a heightened risk of skin cancer due to impaired TLS. While XP-V patients are considered NER-proficient, our findings challenge this assumption by demonstrating that UVA-induced oxidative stress impaired NER activity, leading to increased C > T transitions at CPD sites. Whole-exome sequencing of UVA-irradiated XP-V cells revealed a substantial rise in mutations, with a distinct C > T signature characteristic of defective CPD repair. Notably, pretreatment with the antioxidant N-acetylcysteine (NAC) mitigated this effect, reducing C > T transitions through enhanced NER function and decreasing C > A transversions via its antioxidant properties. These results redefine the mutagenic landscape of XP-V cells, revealing that oxidatively generated damage to NER proteins-rather than TLS deficiency alone-contributes to their elevated mutation burden. Our findings suggest that antioxidant strategies may partially protect XP-V patients from UVA-driven mutagenesis enhancing the cells' DNA repair capacity, ultimately reducing skin cancer and contributing to better overall health outcomes.
Four germline POLH variants, including two found in skin tumors, impair DNA polymerase η function and cellular tolerance to UV radiation and cisplatin.
DNA polymerase (pol) η is vital for accurately replicating DNA opposite ultraviolet light (UV)-induced cyclobutane pyrimidine dimers and cisplatin-induced intrastrand purine crosslinks. While human POLH deficiency is linked to the disease xeroderma pigmentosum variant, the functional consequences of germline and somatic POLH variants remain largely unexplored. We characterized nine nonsynonymous POLH germline variants, five of which have also been found in various tumors. Enzyme activity was first assessed using recombinant pol η (residues 1-432) proteins. Variants F17S, C227Y, and R356X displayed substantially reduced or nearly abolished polymerase activity opposite cis-syn cyclobutane thymine dimer (CTD) compared to the wild-type. Cellular effects were then evaluated in POLH-deficient human embryonic kidney (HEK) 293 cells. Unlike cells transfected with wild-type POLH, cells transfected with F17S, R81C, C227Y, or R356X variants failed to rescue UV- and cisplatin-sensitivity. Interestingly, the R81C variant protein was undetectable in transfected cells. Further steady-state kinetic analysis revealed that the F17S, C227Y, and R356X variants had 3- to 5000-fold reductions in kcat/Km values for correct dATP insertion opposite CTD, while the R81C variant exhibited kinetics comparable to the wild-type enzyme. CRISPR/Cas9-mediated knock-in of the R81C variant in HEK 293T cells was associated with significantly impaired pol η protein expression and increased cisplatin sensitivity. Notably, R81C and R356X mutations have been reported in skin cancer samples. These findings suggest that R81C, F17S, C227Y, and R356X POLH variants-underexpressed or hypoactive-may be insufficient to protect cells from UV radiation and cisplatin, highlighting their potential implications for individual susceptibility to UV and cisplatin damage.
Evaluation of Photoaging and Sun Protection Behavior in Children With Xeroderma Pigmentosum, Group C: A Prospective Analysis.
Thirteen children with xeroderma pigmentosum variant C were evaluated using the Dermoscopic Photoaging Assessment Scale (DPAS), the Glogau scale, and the Sun Protection Behavior Scale (SPBS). Most patients exhibited signs of epidermal photoaging, with pigmentary and vascular changes and poor sun protection behavior (mean SPBS score: 18.92 ± 5.69). The mean DPAS score of 13.15 correlated with the Glogau scale and ocular severity score. Sun protection behavior improved significantly at 6 months after repeated reinforcement of sun protection measures (35 ± 5.68).
A Case of Xeroderma Pigmentosum Variant Type With a Novel Mutation Diagnosed in Early Childhood.
Canonical and Non-Canonical Roles of Human DNA Polymerase η.
DNA damage tolerance pathways that allow for the completion of replication following fork arrest are critical in maintaining genome stability during cell division. The main DNA damage tolerance pathways include strand switching, replication fork reversal and translesion synthesis (TLS). The TLS pathway is mediated by specialised DNA polymerases that can accommodate altered DNA structures during DNA synthesis, and are important in allowing replication to proceed after fork arrest, preventing fork collapse that can generate more deleterious double-strand breaks in the genome. TLS may occur directly at the fork, or at gaps remaining behind the fork, in the process of post-replication repair. Inactivating mutations in the human POLH gene encoding the Y-family DNA polymerase Pol η causes the skin cancer-prone genetic disease xeroderma pigmentosum variant (XPV). Pol η also contributes to chemoresistance during cancer treatment by bypassing DNA lesions induced by anti-cancer drugs including cisplatin. We review the current understanding of the canonical role of Pol η in translesion synthesis following replication arrest, as well as a number of emerging non-canonical roles of the protein in other aspects of DNA metabolism.
Publicações recentes
Uncovering the Role of DNA Repair Impairment in UVA-Induced Mutagenesis in Human Xeroderma Pigmentosum Variant Cells.
Four germline POLH variants, including two found in skin tumors, impair DNA polymerase η function and cellular tolerance to UV radiation and cisplatin.
Evaluation of Photoaging and Sun Protection Behavior in Children With Xeroderma Pigmentosum, Group C: A Prospective Analysis.
A Case of Xeroderma Pigmentosum Variant Type With a Novel Mutation Diagnosed in Early Childhood.
Canonical and Non-Canonical Roles of Human DNA Polymerase η.
📚 EuropePMC108 artigos no totalmostrando 43
Uncovering the Role of DNA Repair Impairment in UVA-Induced Mutagenesis in Human Xeroderma Pigmentosum Variant Cells.
Molecular carcinogenesisFour germline POLH variants, including two found in skin tumors, impair DNA polymerase η function and cellular tolerance to UV radiation and cisplatin.
Chemico-biological interactionsEvaluation of Photoaging and Sun Protection Behavior in Children With Xeroderma Pigmentosum, Group C: A Prospective Analysis.
Pediatric dermatologyA Case of Xeroderma Pigmentosum Variant Type With a Novel Mutation Diagnosed in Early Childhood.
Photodermatology, photoimmunology & photomedicineCanonical and Non-Canonical Roles of Human DNA Polymerase η.
GenesCutaneous Squamous Cell Carcinoma and Multiple Basal Cell Carcinomas in Xeroderma Pigmentosum-Variant Type Treated with Imiquimod 5% Cream and Radiotherapy: A Case Report.
Acta medica PhilippinaHomozygous substitution of threonine 191 by proline in polymerase η causes Xeroderma pigmentosum variant.
Scientific reportsThe accurate bypass of pyrimidine dimers by DNA polymerase eta contributes to ultraviolet-induced mutagenesis.
Mutation researchMutational signatures and increased retrotransposon insertions in xeroderma pigmentosum variant skin tumors.
CarcinogenesisIdentification of Three Human POLH Germline Variants Defective in Complementing the UV- and Cisplatin-Sensitivity of POLH-Deficient Cells.
International journal of molecular sciencesRoles of trans-lesion synthesis (TLS) DNA polymerases in tumorigenesis and cancer therapy.
NAR cancerNontraditional Roles of DNA Polymerase Eta Support Genome Duplication and Stability.
GenesA compound heterozygous Chinese patient with xeroderma pigmentosum variant type caused by novel POLH variants.
Experimental dermatologyChanges in the architecture and abundance of replication intermediates delineate the chronology of DNA damage tolerance pathways at UV-stalled replication forks in human cells.
Nucleic acids researchA new POLH mutation in a consanguineous Chinese family with xeroderma pigmentosum variant type.
Clinical and experimental dermatologyCurrent state of knowledge of human DNA polymerase eta protein structure and disease-causing mutations.
Mutation research. Reviews in mutation researchEfficacy of pembrolizumab in a patient with xeroderma pigmentosum variant and advanced cutaneous squamous-cell carcinoma.
Acta oncologica (Stockholm, Sweden)DNA polymerase eta protects human cells against DNA damage induced by the tumor chemotherapeutic temozolomide.
Mutation research. Genetic toxicology and environmental mutagenesisNovel pathogenic frameshift mutation in the POLH gene contributes to xeroderma pigmentosum variant type in a 16-year-old girl.
The Australasian journal of dermatologyXeroderma pigmentosum variant: squamous cell carcinoma of the lower lip harboring exon 11 mutation of POLH.
Oral surgery, oral medicine, oral pathology and oral radiologyAngiosarcoma of the Auricle in a Patient with Xeroderma Pigmentosum Variant.
Case reports in dermatologyNovel variants in POLH and TREM2 genes associated with a complex phenotype of xeroderma pigmentosum variant type and early-onset dementia.
Molecular genetics & genomic medicineRare exon 10 deletion in POLH gene in a family with xeroderma pigmentosum variant correlating with protein expression by immunohistochemistry.
Giornale italiano di dermatologia e venereologia : organo ufficiale, Societa italiana di dermatologia e sifilografiaLentigo maligna in a patient with xeroderma pigmentosum, variant type: A case report with dermoscopic findings and review of the literature.
Photodermatology, photoimmunology & photomedicineThe Iberian legacy into a young genetic xeroderma pigmentosum cluster in central Brazil.
Mutation research. Genetic toxicology and environmental mutagenesisLarge deletions in immunoglobulin genes are associated with a sustained absence of DNA Polymerase η.
Scientific reportsWhole-exome sequencing reveals the impact of UVA light mutagenesis in xeroderma pigmentosum variant human cells.
Nucleic acids researchExome-based search for recurrent disease-causing alleles in Russian population.
European journal of medical geneticsThe key role of UVA-light induced oxidative stress in human Xeroderma Pigmentosum Variant cells.
Free radical biology & medicineVariant subtype of xeroderma pigmentosum diagnosed in a 77-year-old woman.
JAAD case reportsFilling gaps in translesion DNA synthesis in human cells.
Mutation research. Genetic toxicology and environmental mutagenesisATR/Chk1 Pathway is Activated by Oxidative Stress in Response to UVA Light in Human Xeroderma Pigmentosum Variant Cells.
Photochemistry and photobiologyWhole genome sequencing and 6-year follow-up of a mother and daughter with frontometaphyseal dysplasia associated with keratitis, xerosis, poikiloderma, and acro-osteolysis: A case report.
MedicineDifferential Roles of Rad18 and Chk2 in Genome Maintenance and Skin Carcinogenesis Following UV Exposure.
The Journal of investigative dermatologyDiverse roles of RAD18 and Y-family DNA polymerases in tumorigenesis.
Cell cycle (Georgetown, Tex.)Angiosarcoma arising on the scalp in a Korean patient with xeroderma pigmentosum variant type.
Photodermatology, photoimmunology & photomedicineXeroderma Pigmentosum Diagnosis Using a Flow Cytometry-Based Nucleotide Excision Repair Assay.
The Journal of investigative dermatologyDiagnosis of Xeroderma pigmentosum variant in a young patient with two novel mutations in the POLH gene.
American journal of medical genetics. Part AMolecular diagnosis of xeroderma pigmentosum variant in an isolated population: the interface between precision medicine and public health.
The British journal of dermatologyO6-2'-Deoxyguanosine-butylene-O6-2'-deoxyguanosine DNA Interstrand Cross-Links Are Replication-Blocking and Mutagenic DNA Lesions.
Chemical research in toxicology129-Derived Mouse Strains Express an Unstable but Catalytically Active DNA Polymerase Iota Variant.
Molecular and cellular biologyAberrant C-terminal domain of polymerase η targets the functional enzyme to the proteosomal degradation pathway.
DNA repairUV-induced mutations in epidermal cells of mice defective in DNA polymerase η and/or ι.
DNA repairAssociações
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Comunidades
Grupos ativos de quem convive com esta doença aqui no Raras
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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.
- Uncovering the Role of DNA Repair Impairment in UVA-Induced Mutagenesis in Human Xeroderma Pigmentosum Variant Cells.
- Four germline POLH variants, including two found in skin tumors, impair DNA polymerase η function and cellular tolerance to UV radiation and cisplatin.
- Evaluation of Photoaging and Sun Protection Behavior in Children With Xeroderma Pigmentosum, Group C: A Prospective Analysis.
- A Case of Xeroderma Pigmentosum Variant Type With a Novel Mutation Diagnosed in Early Childhood.
- Canonical and Non-Canonical Roles of Human DNA Polymerase η.
Bases de dados e fontes oficiais
Identificadores e referências canônicas usadas para montar este verbete.
- ORPHA:90342(Orphanet)
- OMIM OMIM:278750(OMIM)
- MONDO:0010214(MONDO)
- GARD:5630(GARD (NIH))
- Variantes catalogadas(ClinVar)
- Busca completa no PubMed(PubMed)
- Q32143762(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
