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1.
J Mol Med (Berl) ; 99(8): 1043-1055, 2021 08.
Article in English | MEDLINE | ID: mdl-33950291

ABSTRACT

Non-coding RNAs are involved with maintenance and regulation of physiological mechanisms and are involved in pathological processes, such as cancer. Among the small ncRNAs, miRNAs are the most explored in tumorigenesis, metastasis development, and resistance to chemotherapy. These small molecules of ~ 22 nucleotides are modulated during early renal development, involved in the regulation of gene expression and Wilms' tumor progression. Wilms' tumors are embryonic tumors with few mutations and complex epigenetic dysregulation. In recent years, the small ncRNAs have been explored as potentially related both in physiological development and in the tumorigenesis of several types of cancer. Besides, genes regulated by miRNAs are related to biological pathways as PI3K, Wnt, TGF-ß, and Hippo signaling pathways, among others, which may be involved with the underlying mechanisms of resistance to chemotherapy, and in this way, it has emerged as potential targets for cancer therapies, including for Wilms' tumors.


Subject(s)
Biomarkers, Tumor , Gene Expression Regulation, Neoplastic , RNA, Untranslated/genetics , Wilms Tumor/etiology , Disease Susceptibility , Drug Resistance, Neoplasm , Genetic Predisposition to Disease , Humans , MicroRNAs/genetics , RNA Interference , RNA, Messenger/genetics , Signal Transduction , Wilms Tumor/diagnosis , Wilms Tumor/metabolism , Wilms Tumor/therapy
2.
Cells ; 8(8)2019 08 17.
Article in English | MEDLINE | ID: mdl-31426508

ABSTRACT

To identify underlying mechanisms involved with metastasis formation in Wilms tumors (WTs), we performed comprehensive DNA methylation and gene expression analyses of matched normal kidney (NK), WT blastemal component, and metastatic tissues (MT) from patients treated under SIOP 2001 protocol. A linear Bayesian framework model identified 497 differentially methylated positions (DMPs) between groups that discriminated NK from WT, but MT samples were divided in two groups. Accordingly, methylation variance grouped NK and three MT samples tightly together and all WT with four MT samples that showed high variability. WT were hypomethylated compared to NK, and MT had a hypermethylated pattern compared to both groups. The methylation patterns were in agreement with methylases and demethylases expression. Methylation data pointed to the existence of two groups of metastases. While hierarchical clustering analysis based on the expression of all 2569 differentially expressed genes (DEGs) discriminated WT and MT from all NK samples, the hierarchical clustering based on the expression of 44 genes with a differentially methylated region (DMR) located in their promoter region revealed two groups: one containing all NKs and three MTs and one containing all WT and four MTs. Methylation changes might be controlling expression of genes associated with WT progression. The 44 genes are candidates to be further explored as a signature for metastasis formation in WT.


Subject(s)
Genes, Wilms Tumor , Kidney Neoplasms , Kidney , Wilms Tumor , DNA Methylation , Disease Progression , Epigenesis, Genetic , Female , Gene Expression Regulation, Neoplastic , Humans , Kidney/metabolism , Kidney/pathology , Kidney Neoplasms/epidemiology , Kidney Neoplasms/genetics , Male , Transcriptome , Wilms Tumor/epidemiology , Wilms Tumor/genetics
3.
Clin Epigenetics ; 9: 128, 2017.
Article in English | MEDLINE | ID: mdl-29255497

ABSTRACT

BACKGROUND: Wilms tumor (WT) is a curable pediatric renal malignancy, but there is a need for new molecular biomarkers to improve relapse risk-directed therapy. Somatic alterations occur at relatively low frequencies whereas epigenetic changes at 11p15 are the most common aberration. We analyzed long interspersed element-1 (LINE-1) methylation levels in the blastemal component of WT and normal kidney samples to explore their prognostic significance. RESULTS: WT samples presented a hypomethylated pattern at all five CpG sites compared to matched normal kidney samples; therefore, the averaged methylation levels of the five CpG sites were used for further analyses. WT presented a hypomethylation profile (median 65.0%, 47.4-73.2%) compared to normal kidney samples (median 71.8%, 51.5-77.5%; p < 0.0001). No significant associations were found between LINE-1 methylation levels and clinical-pathological characteristics. We observed that LINE-1 methylation levels were lower in tumor samples from patients with relapse (median methylation 60.5%) compared to patients without relapse (median methylation 66.5%; p = 0.0005), and a receiving operating characteristic curve analysis was applied to verify the ability of LINE-1 methylation levels to discriminate WT samples from these patients. Using a cut-off value of 62.71% for LINE-1 methylation levels, the area under the curve was 0.808, with a sensitivity of 76.5% and a specificity of 83.3%. Having identified differences in LINE-1 methylation between WT samples from patients with and without relapse in this cohort, we evaluated other prognostic factors using a logistic regression model. This analysis showed that in risk stratification, LINE-1 methylation level was an independent variable for relapse risk: the lower the methylation levels, the higher the risk of relapse. The logistic regression model indicated a relapse risk increase of 30% per decreased unit of methylation (odds ratio 1.30; 95% confidence interval 1.07-1.57). CONCLUSION: Our results reinforce previous data showing a global hypomethylation profile in WT. LINE-1 methylation levels can be suggested as a marker of relapse after chemotherapy treatment in addition to risk classification, helping to guide new treatment approaches.


Subject(s)
DNA Methylation , Kidney Neoplasms/pathology , Long Interspersed Nucleotide Elements , Wilms Tumor/pathology , Adolescent , Child , Child, Preschool , CpG Islands , Epigenesis, Genetic , Female , Genetic Association Studies , Humans , Infant , Infant, Newborn , Kidney Neoplasms/genetics , Male , Neoplasm Staging , Prognosis , Recurrence , Wilms Tumor/genetics
4.
Genet Test Mol Biomarkers ; 19(2): 75-81, 2015 Feb.
Article in English | MEDLINE | ID: mdl-25536437

ABSTRACT

AIM: Embryonic tumors are associated with an interruption during normal organ development; they may be related to disturbances in the folate pathway involved in DNA synthesis, methylation, and repair. Prenatal supplementation with folic acid is associated with a decreased risk of neuroblastoma, brain tumors, retinoblastoma, and nephroblastoma. The aim of this study was to investigate the association between MTHFR rs1801133 (C677T) and RFC-1 rs1051266 (G80A) genotypes with the risk of developing nephroblastoma and neuroblastoma. MATERIALS AND METHODS: Case-mother/control-mother dyad study. Samples from Brazilian children with nephroblastoma (n=80), neuroblastoma (n=66), healthy controls (n=453), and their mothers (case n=93; control n=75) were analyzed. Genomic DNA was isolated from peripheral blood cells and/or buccal cells and genotyped to identify MTHFR C677T and RFC-1 G80A polymorphisms. Differences in genotype distribution between patients and controls were tested by multiple logistic regression analysis. RESULTS: Risk for nephroblastoma and neuroblastoma was two- to fourfold increased among children with RFC-1 polymorphisms. An increased four- to eightfold risk for neuroblastoma and nephroblastoma was seen when the child and maternal genotypes were combined. CONCLUSION: Our results suggest that mother and child RFC-1 G80A genotypes play a role on the risk of neuroblastoma and nephroblastoma since this polymorphism may impair the intracellular levels of folate, through carrying fewer folate molecules to the cell interior, and thus, the intracellular concentration is not enough to maintain regular DNA synthesis and methylation pathways.


Subject(s)
Kidney Neoplasms/genetics , Methylenetetrahydrofolate Reductase (NADPH2)/genetics , Mothers , Neoplasm Proteins/genetics , Neuroblastoma/genetics , Polymorphism, Single Nucleotide , Replication Protein C/genetics , Wilms Tumor/genetics , Brazil/epidemiology , Case-Control Studies , Child , Child, Preschool , Female , Folic Acid/metabolism , Gene Frequency , Genetic Predisposition to Disease , Genotype , Humans , Infant , Infant, Newborn , Male , Neuroblastoma/epidemiology , Risk , Wilms Tumor/epidemiology
5.
Mol Biol Rep ; 41(9): 6111-5, 2014 Sep.
Article in English | MEDLINE | ID: mdl-24972570

ABSTRACT

Genetic susceptibility and environment exposures are associated risk factors in carcinogenesis. Gene polymorphisms that decrease the activity of detoxifying carcinogen substances may modify the effect of exposures. We investigated whether the polymorphisms PON1 rs662 (Q192R), and PON1 rs854560 (L55M) would be associated with embryonal tumors in Brazilian children. Blood samples from 163 children with embryonal tumors and 342 as control group were genotyped by TaqMAN real-time PCR assays. Logistic regression was used to evaluate the association between the polymorphisms of cases and controls groups, adjusted by skin color and age strata. When all tumors were taken together, the presence of the PON1 rs662 (Q192R) variant genotype (RR) was associated with an increased risk of developing embryonal tumors (OR = 2.80, 95 % CI 1.12-7.02). The presence of at least one variant PON1 rs662 R allele increased the risk of developing Wilms´ Tumor although without statistical power. However, it was observed a significant association of PON1 rs662 (Q192R) variant genotype (RR) with retinoblastoma (OR = 4.08, 95 % CI 1.13-14.97), whereas the PON1 rs854560 (L55M) polymorphism was not associated with any tumor. These results indicate that PON1 polymorphisms may have an influence on the risk of developing embryonal tumors.


Subject(s)
Aryldialkylphosphatase/genetics , Kidney Neoplasms/genetics , Neoplasms, Germ Cell and Embryonal/genetics , Polymorphism, Single Nucleotide , Retinal Neoplasms/genetics , Retinoblastoma/genetics , Wilms Tumor/genetics , Child , Child, Preschool , Female , Genetic Predisposition to Disease , Humans , Infant , Infant, Newborn , Logistic Models , Male , Medulloblastoma/genetics , Neuroblastoma/genetics , Risk
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