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1.
Mol Cell ; 49(1): 80-93, 2013 Jan 10.
Article in English | MEDLINE | ID: mdl-23159737

ABSTRACT

Histone methyltransferases (HMTases), as chromatin modifiers, regulate the transcriptomic landscape in normal development as well in diseases such as cancer. Here, we molecularly order two HMTases, EZH2 and MMSET, that have established genetic links to oncogenesis. EZH2, which mediates histone H3K27 trimethylation and is associated with gene silencing, was shown to be coordinately expressed and function upstream of MMSET, which mediates H3K36 dimethylation and is associated with active transcription. We found that the EZH2-MMSET HMTase axis is coordinated by a microRNA network and that the oncogenic functions of EZH2 require MMSET activity. Together, these results suggest that the EZH2-MMSET HMTase axis coordinately functions as a master regulator of transcriptional repression, activation, and oncogenesis and may represent an attractive therapeutic target in cancer.


Subject(s)
Gene Expression Regulation, Neoplastic , Histone-Lysine N-Methyltransferase/metabolism , Polycomb Repressive Complex 2/metabolism , Prostatic Neoplasms/enzymology , Repressor Proteins/metabolism , 3' Untranslated Regions , Animals , Cell Line, Tumor , Cell Proliferation , Cell Transformation, Neoplastic/genetics , Cell Transformation, Neoplastic/metabolism , Chick Embryo , Chorioallantoic Membrane/pathology , Enhancer of Zeste Homolog 2 Protein , Gene Expression , Gene Knockdown Techniques , Histone-Lysine N-Methyltransferase/genetics , Histones/metabolism , Humans , Male , Mice , Mice, Inbred BALB C , Mice, Nude , MicroRNAs/metabolism , Neoplasm Invasiveness , Neoplasm Transplantation , Polycomb Repressive Complex 2/genetics , Prostatic Neoplasms/metabolism , Prostatic Neoplasms/pathology , RNA Interference , Repressor Proteins/genetics , Tissue Array Analysis , Transcriptional Activation
2.
Hum Mutat ; 40(12): 2414-2429, 2019 12.
Article in English | MEDLINE | ID: mdl-31448843

ABSTRACT

PARN encodes poly(A)-specific ribonuclease. Biallelic and monoallelic PARN variants are associated with Hoyeraal-Hreidarsson syndrome/dyskeratosis congenita and idiopathic pulmonary fibrosis (IPF), respectively. The molecular features associated with incomplete penetrance of PARN-associated IPF have not been described. We report a family with a rare missense, p.Y91C, and a novel insertion, p.(I274*), PARN variant. We found PARN p.Y91C had reduced deadenylase activity and the p.(I274*) transcript was depleted. Detailed analysis of the consequences of these variants revealed that, while PARN protein was lowest in the severely affected biallelic child who had the shortest telomeres, it was also reduced in his mother with the p.(I274*) variant but telomeres at the 50th percentile. Increased adenylation of telomerase RNA, human telomerase RNA, and certain small nucleolar RNAs, and impaired ribosomal RNA maturation were observed in cells derived from the severely affected biallelic carrier, but not in the other, less affected biallelic carrier, who had less severely shortened telomeres, nor in the monoallelic carriers who were unaffected and had telomeres ranging from the 1st to the 50th percentiles. We identified hsa-miR-202-5p as a potential negative regulator of PARN. We propose one or more genetic modifiers influence the impact of PARN variants on its targets and this underlies incomplete penetrance of PARN-associated disease.


Subject(s)
Dyskeratosis Congenita/genetics , Exoribonucleases/genetics , Fetal Growth Retardation/genetics , Intellectual Disability/genetics , MicroRNAs/genetics , Microcephaly/genetics , Mutagenesis, Insertional , Mutation, Missense , Adolescent , Cell Line , Child, Preschool , Down-Regulation , Exoribonucleases/metabolism , Female , Humans , Male , Pedigree , Penetrance , Telomere Shortening
4.
Mol Cell Biol ; 38(12)2018 06 15.
Article in English | MEDLINE | ID: mdl-29581185

ABSTRACT

TIN2 is central to the shelterin complex, linking the telomeric proteins TRF1 and TRF2 with TPP1/POT1. Mutations in TINF2, which encodes TIN2, that are found in dyskeratosis congenita (DC) result in very short telomeres and cluster in a region shared by the two TIN2 isoforms, TIN2S (short) and TIN2L (long). Here we show that TIN2L, but not TIN2S, is phosphorylated. TRF2 interacts more with TIN2L than TIN2S, and both the DC cluster and phosphorylation promote this enhanced interaction. The binding of TIN2L, but not TIN2S, is affected by TRF2-F120, which is also required for TRF2's interaction with end processing factors such as Apollo. Conversely, TRF1 interacts more with TIN2S than with TIN2L. A DC-associated mutation further reduces TIN2L-TRF1, but not TIN2S-TRF1, interaction. Cells overexpressing TIN2L or phosphomimetic TIN2L are permissive to telomere elongation, whereas cells overexpressing TIN2S or phosphodead TIN2L are not. Telomere lengths are unchanged in cell lines in which TIN2L expression has been eliminated by clustered regularly interspaced short palindromic repeat (CRISPR)/Cas9-mediated mutation. These results indicate that TIN2 isoforms are biochemically and functionally distinguishable and that shelterin composition could be fundamentally altered in patients with TINF2 mutations.


Subject(s)
Telomere-Binding Proteins/genetics , Telomere-Binding Proteins/metabolism , Telomeric Repeat Binding Protein 2/genetics , CRISPR-Cas Systems/genetics , Cell Line , Dyskeratosis Congenita/genetics , Humans , Mutation/genetics , Phosphorylation , Protein Isoforms/genetics , Protein Isoforms/metabolism , Shelterin Complex , Telomere/metabolism
5.
Oncotarget ; 3(9): 1011-25, 2012 Sep.
Article in English | MEDLINE | ID: mdl-22948084

ABSTRACT

MicroRNAs (miRs) play a key role in cancer etiology by coordinately repressing numerous target genes involved in cell proliferation, migration and invasion. The genomic region in chromosome 9p21 that encompasses miR-31 is frequently deleted in solid cancers including melanoma; however the expression and functional role of miR-31 has not been previously studied in melanoma. Here, we queried the expression status and performed functional characterization of miR-31 in melanoma tissues and cell lines. We found that down-regulation of miR-31 was a common event in melanoma tumors and cell lines and was associated with genomic loss in a subset of samples. Down-regulation of miR-31 gene expression was also a result of epigenetic silencing by DNA methylation, and via EZH2-mediated histone methylation. Ectopic overexpression of miR-31 in various melanoma cell lines inhibited cell migration and invasion. miR-31 targets include oncogenic kinases such as SRC, MET, NIK (MAP3K14) and the melanoma specific oncogene RAB27a. Furthermore, miR-31 overexpression resulted in down-regulation of EZH2 and a de-repression of its target gene rap1GAP; increased expression of EZH2 was associated with melanoma progression and overall patient survival. Taken together, our study supports a tumor suppressor role for miR-31 in melanoma and identifies novel therapeutic targets.


Subject(s)
Melanoma/genetics , MicroRNAs/genetics , Polycomb Repressive Complex 2/biosynthesis , Cell Growth Processes/genetics , Cell Line, Tumor , Enhancer of Zeste Homolog 2 Protein , Epigenesis, Genetic , Gene Knockdown Techniques , Humans , Melanoma/metabolism , Melanoma/pathology , MicroRNAs/metabolism , Polycomb Repressive Complex 2/genetics , Polycomb Repressive Complex 2/metabolism , Transfection
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