Frequent Long-Range Epigenetic Silencing of Protocadherin Gene Clusters on Chromosome 5q31 in Wilms' Tumor
Частое дальнодействующее эпигенетическое замолкание кластеров генов протокадгеринов на хромосоме 5q31 при опухоли Вильмса
2009-11-25
SCID: 54.1/aqw2ea54
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Wilms' tumorcanonical Wnt signalinglong-range epigenetic silencingpromoter hypermethylationprotocadherin gene clusters
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Abstract (AI)
Wilms' tumour (WT) is a pediatric tumor of the kidney that arises via failure of the fetal developmental program. The absence of identifiable mutations in the majority of WTs suggests the frequent involvement of epigenetic aberrations in WT. We therefore conducted a genome-wide analysis of promoter hypermethylation in WTs and identified hypermethylation at chromosome 5q31 spanning 800 kilobases (kb) and more than 50 genes. The methylated genes all belong to alpha-, beta-, and gamma-protocadherin (PCDH) gene clusters (Human Genome Organization nomenclature PCDHA@, PCDHB@, and PCDHG@, respectively). This demonstrates that long-range epigenetic silencing (LRES) occurs in developmental tumors as well as in adult tumors. Bisulfite polymerase chain reaction analysis showed that PCDH hypermethylation is a frequent event found in all Wilms' tumor subtypes. Hypermethylation is concordant with reduced PCDH expression in tumors. WT precursor lesions showed no PCDH hypermethylation, suggesting that de novo PCDH hypermethylation occurs during malignant progression. Discrete boundaries of the PCDH domain are delimited by abrupt changes in histone modifications; unmethylated genes flanking the LRES are associated with permissive marks which are absent from methylated genes within the domain. Silenced genes are marked with non-permissive histone 3 lysine 9 dimethylation. Expression analysis of embryonic murine kidney and differentiating rat metanephric mesenchymal cells demonstrates that Pcdh expression is developmentally regulated and that Pcdhg@ genes are expressed in blastemal cells. Importantly, we show that PCDHs negatively regulate canonical Wnt signalling, as short-interfering RNA-induced reduction of PCDHG@ encoded proteins leads to elevated beta-catenin protein, increased beta-catenin/T-cell factor (TCF) reporter activity, and induction of Wnt target genes. Conversely, over-expression of PCDHs suppresses beta-catenin/TCF-reporter activity and also inhibits colony formation and growth of cancer cells in soft agar. Thus PCDHs are candidate tumor suppressors that modulate regulatory pathways critical in development and disease, such as canonical Wnt signaling.
Key Findings
1
Genome-wide profiling identified an 800-kb hypermethylated region on chromosome 5q31 encompassing more than 50 protocadherin genes in Wilms’ tumors.
2
Long-range epigenetic silencing of alpha-, beta-, and gamma-protocadherin clusters occurs frequently across all Wilms’ tumor subtypes and represents a developmental-tumor epigenetic alteration.
3
Protocadherin hypermethylation correlates with reduced gene expression, is absent from precursor lesions, and likely arises de novo during malignant progression.
4
Protocadherins negatively regulate canonical Wnt signaling: their depletion elevates beta-catenin, Wnt/TCF reporter activity, and target-gene expression, whereas overexpression suppresses reporter activity and inhibits colony formation.
5
The silenced protocadherin domain is defined by abrupt histone-modification boundaries, with H3K9 dimethylation marking methylated genes and permissive marks flanking the region.
Research Object
Protocadherin gene clusters (PCDHA@, PCDHB@, and PCDHG@) on chromosome 5q31 in Wilms' tumors
Research Subject
Long-range epigenetic silencing through promoter hypermethylation, its association with reduced protocadherin expression and tumor progression, and the role of protocadherins in canonical Wnt/β-catenin signaling
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2009-11-25
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