Case control analysis of repeat expansion size in ataxia
NEUROSCIENCE LETTERS
Authors: Majounie, E.; Wardle, M.; Muzaimi, M.; Cross, W. C.; Robertson, N. P.; Williams, N. M.; Morris, H. R.
Abstract
Spinocerebellar ataxias (SCAB) are a group of clinically and genetically heterogeneous neurological diseases. The expansion of unstable microsatellite repeats has been identified as the underlying pathogenic cause of 10 subtypes of autosomal dominant SCAB. The aetiology of sporadic SCA is unknown. The aim of this study was to investigate the effect of large normal repeats in patients presenting with sporadic or familial ataxia compared to a control population. The size of the expansion was determined using a fluorescent PCR approach in 10 common SCA genes: SCA-1 (ATXN1), SCA-2 (ATXN2), SCA-3 (ATXN3), SCA-6 (CACNA1A), SCA-7 (ATXN7), SCA-8 (ATXN8OS), SCA-10 (ATXN10), SCA-12 (PPP2R2B). SCA-17 (TBP) and DRPLA (ATN1), in 165 ataxia patients and 307 controls of Welsh origin. There was no difference between cases and controls in the distribution of the large normal alleles, or in the distribution of the combined CAG repeats. The normal allele distribution in the Welsh population was largely similar to that of other Caucasian populations. Our study failed to demonstrate an effect of large normal repeats on the susceptibility to develop ataxia. (c) 2007 Elsevier Ireland Ltd. All rights reserved.
EZH2-Mediated Concordant Repression of Wnt Antagonists Promotes beta-Catenin-Dependent Hepatocarcinogenesis
CANCER RESEARCH
Authors: Cheng, Alfred S. L.; Lau, Suki S.; Chen, Yangchao; Kondo, Yutaka; Li, May S.; Feng, Hai; Ching, Arthur K.; Cheung, Kin F.; Wong, Hoi K.; Tong, Joanna H.; Jin, Hongchuan; Choy, Kwong W.; Yu, Jun; To, Ka F.; Wong, Nathalie; Huang, Tim H. -M.; Sung, Joseph J. Y.
Abstract
Enhancer of zeste homolog 2 (EZH2) is the catalytic subunit of the Polycomb-repressive complex 2 (PRC2) that represses gene transcription through histone H3 lysine 27 trimethylation (H3K27me3). Although EZH2 is abundantly present in various cancers, the molecular consequences leading to oncogenesis remain unclear. Here, we show that EZH2 concordantly silences the Wnt pathway antagonists operating at several subcellular compartments, which in turn activate Wnt/beta-catenin signaling in hepatocellular carcinomas (HCC). Chromatin immunoprecipitation promoter array and gene expression analyses in HCCs revealed EZH2 occupancy and reduced expression of Wnt antagonists, including the growth-suppressive AXIN2, NKD1, PPP2R2B, PRICKLE1, and SFRP5. Knockdown of EZH2 reduced the promoter occupancy of PRC2, histone deacetylase 1 (HDAC1), and H3K27me3, whereas the activating histone marks were increased, leading to the transcriptional upregulation of the Wnt antagonists. Combinatorial EZH2 and HDAC inhibition dramatically reduced the levels of nuclear beta-catenin, T-cell factor-dependent transcriptional activity, and downstream pro-proliferative targets CCND1 and EGFR. Functional analysis revealed that downregulation of EZH2 reduced HCC cell growth, partially through the inhibition of beta-catenin signaling. Conversely, ectopic overexpression of EZH2 in immortalized hepatocytes activated Wnt/beta-catenin signaling to promote cellular proliferation. In human HCCs, concomitant overexpression of EZH2 and beta-catenin was observed in one-third (61/179) of cases and significantly correlated with tumor progression. Our data indicate that EZH2-mediated epigenetic silencing contributes to constitutive activation of Wnt/beta-catenin signaling and consequential proliferation of HCC cells, thus representing a novel therapeutic target for this highly malignant tumor. Cancer Res; 71(11); 4028-39. (C)2011 AACR.