Epigenetic inactivation of the MIR129-2 in hematological malignancies
نویسندگان
چکیده
BACKGROUND MIR129-2 has been shown to be a tumor suppressor microRNA hypermethylated in epithelial cancers. PATIENTS AND METHODS Epigenetic inactivation of MIR129-2 was studied by methylation-specific PCR (MSP) in 13 cell lines (eight myeloma and five lymphoma), 15 normal controls and 344 primary samples including acute myeloid leukemia (AML), acute lymphoblastic leukemia (ALL), chronic myeloid leukemia (CML), chronic lymphocytic leukemia (CLL), non-Hodgkin's lymphoma (NHL), multiple myeloma (MM) at diagnosis, MM at relapse/progression, and monoclonal gammopathy of undetermined significance (MGUS). Expression of MIR129 and its target, SOX4, in cell lines was measured before and after hypomethylating treatment and MIR129 overexpression. MIR129 expression was correlated with MIR129-2 methylation status in primary lymphoma samples. Tumor suppressor function of MIR129 was demonstrated by MTT and trypan blue exclusion assay after MIR129 overexpression. RESULTS The sensitivity of the methylated-MSP was one in 10(3). Different MSP statuses, including complete methylation, partial methylation, and complete unmethylation, were verified by quantitative bisulfite pyrosequencing. All five lymphoma and seven of eight myeloma cell lines showed complete and partial MIR129-2 methylation. In primary samples, MIR129-2 methylation was absent in AML and CML, but detected in 5% ALL, 45.9% CLL, 49.5% MM at diagnosis, and 59.1% NHL. In CLL, MIR129-2 methylation adversely impacted on survival (p=0.004). In MM, MIR129-2 methylation increased from 27.5% MGUS to 49.5% MM at diagnosis and 41.5% at relapse/progression (p=0.023). In NHL, MIR129-2 methylation was associated with MIR124-1 and MIR203 methylation (p<0.001), and lower MIR129 expression (p=0.009). Hypomethylation treatment of JEKO-1, homozygously methylated for MIR129-2, led to MIR129-2 demethylation and MIR129 re-expression, with downregulation of SOX4 mRNA. Moreover, MIR129 overexpression in both mantle cell lines, JEKO-1 and GRANTA-519, inhibited cellular proliferation and enhanced cell death, with concomitant SOX4 mRNA downregulation. CONCLUSIONS MIR129-2 is a tumor suppressive microRNA frequently methylated in lymphoid but not myeloid malignancies, leading to reversible MIR129-2 silencing. In CLL, MIR129-2 methylation was associated with an inferior survival. In MM, MIR129-2 methylation might be acquired during progression from MGUS to symptomatic MM. In NHL, MIR129-2 methylation might collaborate with MIR124-1 and MIR203 methylation in lymphomagenesis.
منابع مشابه
HDAC Inhibitors and Heat Shock Proteins (Hsps)
Epigenetic alterations, including DNA acetylation, hypermethylation and hypomethylation, and the associated transcriptional changes of the affected genes are central to the evolution and progression of various human cancers, including pancreatic cancer. Cancer-associated epigenetic alterations are attractive therapeutic targets because such epigenetic alterations, unlike genetic changes, are po...
متن کاملDetermination of Serologic and Molecular Prevalence of Hepatitis Type B, C, and G Infections in Patients with Hematological Malignancy in the South of Fars Province, Iran
Background & Objectives: Hepatitis type G virus (HGV) is a flavivirus with RNA genome which has high nucleotide and amino acid similarity with HCV. HGV can infect blood lymphocytes for long period and may have role in inducing or complicating the clinical outcomes in patients with hematological malignancies. Therefore in this study the prevalence of HGV, HCV, and HBV infections were evaluated i...
متن کاملAssociation between Cytochrome P450 2C19 Gene Polymorphisms and Hematological Malignancies in an Iranian Population
Background: Cytochrome P450 2C19 (CYP2C19) is widely involved in the metabolism of some medications. On the other hand, recent studies have shown the contribution of the CYP2C19 polymorphisms to different malignancies. We aimed to investigate the association between CYP2C19 polymorphism and occurrence of hematological malignancies by comparing the phenotype distribution of this enzyme in patien...
متن کاملEpigenetic programming contributes to development of drug resistance in hematological malignancies.
Epigenetics is the study of long term and stable but not necessarily heritable alterations in transcriptional potential and gene expression profile of a cell that are not due to any alterations in the DNA sequence. Epigenetic modifications include DNA methylation, posttranslational modifications of histone proteins and expression of small regulatory RNAs. In recent years, the role of epigenetic...
متن کاملMolecular Biology, Pathobiology, and Genetics Epigenetic Inactivation of the Circadian Clock Gene BMAL1 in Hematologic Malignancies
Disruption of circadian rhythms, daily oscillations in biological processes that are regulated by an endogenous clock, has been linked to tumorigenesis. Normal and malignant tissues often show asynchronies in cell proliferation and metabolic rhythms. Cancer chronotherapy takes biological time into account to improve the therapy. However, alterations of the circadian clock machinery genes have r...
متن کامل