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1.
Mol Cell Biol ; 31(13): 2605-17, 2011 Jul.
Article in English | MEDLINE | ID: mdl-21536653

ABSTRACT

The high-mobility group A2 gene (HMGA2) is one of the most frequently amplified genes in human cancers. However, functions of HMGA2 in tumorigenesis are not fully understood due to limited knowledge of its targets in tumor cells. Our study reveals a novel link between HMGA2 and the regulation of human telomerase reverse transcriptase (hTERT), the catalytic subunit of telomerase, which offers critical insight into how HMGA2 contributes to tumorigenesis. The expression of HMGA2 modulates the expression of hTERT, resulting in cells with enhanced telomerase activities and increased telomere length. Treatment with suberoylanilide hydroxamide (SAHA), a histone deacetylase (HDAC) inhibitor, causes dose-dependent hTERT reporter activation, mimicking HMGA2 overexpression. By interacting with Sp1, HMGA2 interferes with the recruitment of HDAC2 to the hTERT proximal promoter, enhancing localized histone H3-K9 acetylation and thereby stimulating hTERT expression and telomerase activity. Moreover, HMGA2 knockdown by short hairpin HMGA2 in HepG2 cells leads to progressive telomere shortening and a concurrent decrease of steady-state hTERT mRNA levels, attenuating their ability to form colonies in soft agar. Importantly, HMGA2 partially replaces the function of hTERT during the tumorigenic transformation of normal human fibroblasts. These findings are potentially clinically relevant, because HMGA2 expression is reported to be upregulated in a number of human cancers as telomere maintenance is essential for tumorigenesis.


Subject(s)
Cell Transformation, Neoplastic/genetics , Gene Expression Regulation, Enzymologic , Gene Expression Regulation, Neoplastic , HMGA2 Protein/metabolism , Telomerase/genetics , Acetylation , Base Sequence , HMGA2 Protein/genetics , HeLa Cells , Hep G2 Cells , Histone Deacetylase 2 , Humans , Molecular Sequence Data , Promoter Regions, Genetic , Telomerase/metabolism , Transcription, Genetic
2.
Clin Cancer Res ; 17(8): 2570-80, 2011 Apr 15.
Article in English | MEDLINE | ID: mdl-21252160

ABSTRACT

PURPOSE: This study aims to address the hypothesis that the high-mobility group A2 (HMGA2), an oncofetal protein, relates to survivability and serves as a prognostic biomarker for colorectal cancer (CRC). EXPERIMENTAL DESIGN: This is a retroprospective multiple center study. The HMGA2 expression level was determined by performing immunohistochemistry on surgical tissue samples of 89 CRCs from a training set and 191 CRCs from a validation set. The Kaplan-Meier analysis and COX proportional hazard model were employed to analyze the survivability. RESULTS: Multivariate logistic analysis indicated that the expression of HMGA2 significantly correlates with distant metastasis in training set (odds ratio, OR = 3.53, 95% CI: 1.37-9.70) and validation set (OR = 6.38, 95% CI: 1.47-43.95). Survival analysis revealed that the overexpression of HMGA2 is significantly associated with poor survival of CRC patients (P < 0.05). The adjusted HRs for overall survival were 2.38 (95% CI: 1.30-4.34) and 2.14 (95% CI: 1.21-3.79) in training and validation sets, respectively. Further investigation revealed that HMGA2 delays the clearance of γ-H2AX in HCT-116 and SW480 cells post γ-irradiation, which supports our finding that CRC patients with HMAG2-positive staining in primary tumors had augmented the efficacy of adjuvant radiotherapy (HR = 0.18, 95% CI: 0.04-0.63). CONCLUSION: Overexpression of HMGA2 is associated with metastasis and unequivocally occurred in parallel with reduced survival rates of patients with CRC. Therefore, HMGA2 may potentially serve as a biomarker for predicting aggressive CRC with poor survivability and as an indicator for better response of radiotherapy.


Subject(s)
Biomarkers, Tumor/biosynthesis , Colorectal Neoplasms/metabolism , HMGA2 Protein/biosynthesis , Adult , Aged , Aged, 80 and over , Blotting, Western , Cell Line, Tumor , Colon/metabolism , Colon/pathology , Colon/radiation effects , Colorectal Neoplasms/pathology , Female , HCT116 Cells , HEK293 Cells , HMGA2 Protein/genetics , Histones/metabolism , Humans , Immunohistochemistry/statistics & numerical data , Kaplan-Meier Estimate , Logistic Models , Male , Middle Aged , Multivariate Analysis , Neoplasm Metastasis , Prognosis , Proportional Hazards Models , Retrospective Studies
3.
Front Oncol ; 1: 61, 2011.
Article in English | MEDLINE | ID: mdl-22649771

ABSTRACT

Small ubiquitin-like modifier-1/2/3 (SUMO-1/2/3) and ubiquitin share similar structure and utilize analogous machinery for protein lysine conjugation. Although sumoylation and ubiquitylation have distinct functions, they are often tightly associated with each other to fine-tune protein fate in transducing signals to regulate a wide variety of cellular functions, including DNA damage response, cell proliferation, DNA replication, embryonic development, and cell differentiation. In this Perspective, we specifically highlight the role of sumoylation and ubiquitylation in ataxia-telangiectasia mutated (ATM) signaling in response to DNA double-strand breaks and hypothesize that ATM-induced phosphorylation is a unique node in regulating SUMO-targeted ubiquitylation in mammalian cells to combat DNA damage and to maintain genome integrity. A potential role for the coordination of three types of post-translational modification in dictating the tempo and extent of cellular response to genotoxic stress is speculated.

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