4.4 Article

The High Mobility Group A1 (HMGA1) Transcriptome in Cancer and Development

期刊

CURRENT MOLECULAR MEDICINE
卷 16, 期 4, 页码 353-393

出版社

BENTHAM SCIENCE PUBL LTD
DOI: 10.2174/1566524016666160316152147

关键词

High mobility group A1; HMGA; chromatin; cancer; tumor progression; metastasis; genes; cancer stem cells; embryonic stem cells

资金

  1. NATIONAL CANCER INSTITUTE [R03CA139331, R21CA149550, R03CA182679, R21CA187495, R01CA092339, R03CA164677, R15CA137520, R03CA191621, R21CA118343] Funding Source: NIH RePORTER
  2. NATIONAL CENTER FOR RESEARCH RESOURCES [P20RR016461] Funding Source: NIH RePORTER
  3. NATIONAL INSTITUTE OF GENERAL MEDICAL SCIENCES [P20GM103499] Funding Source: NIH RePORTER
  4. NCI NIH HHS [R01 CA092339, R03 CA139331, R21 CA149550, R03 CA191621, R03 CA182679, R21 CA118343, R15 CA137520, R21 CA187495, R03 CA164677] Funding Source: Medline
  5. NCRR NIH HHS [P20 RR016461] Funding Source: Medline
  6. NIGMS NIH HHS [P20 GM103499] Funding Source: Medline

向作者/读者索取更多资源

Background & Objectives: Chromatin structure is the single most important feature that distinguishes a cancer cell from a normal cell histologically. Chromatin remodeling proteins regulate chromatin structure and high mobility group A (HMGA1) proteins are among the most abundant, nonhistone chromatin remodeling proteins found in cancer cells. These proteins include HMGA1a/HMGA1b isoforms, which result from alternatively spliced mRNA. The HMGA1 gene is overexpressed in cancer and high levels portend a poor prognosis in diverse tumors. HMGA1 is also highly expressed during embryogenesis and postnatally in adult stem cells. Overexpression of HMGA1 drives neoplastic transformation in cultured cells, while inhibiting HMGA1 blocks oncogenic and cancer stem cell properties. Hmga1 transgenic mice succumb to aggressive tumors, demonstrating that dysregulated expression of HMGA1 causes cancer in vivo. HMGA1 is also required for reprogramming somatic cells into induced pluripotent stem cells. HMGA1 proteins function as ancillary transcription factors that bend chromatin and recruit other transcription factors to DNA. They induce oncogenic transformation by activating or repressing specific genes involved in this process and an HMGA1 transcriptome is emerging. Although prior studies reveal potent oncogenic properties of HMGA1, we are only beginning to understand the molecular mechanisms through which HMGA1 functions. In this review, we summarize the list of putative downstream transcriptional targets regulated by HMGA1. We also briefly discuss studies linking HMGA1 to Alzheimer's disease and type-2 diabetes. Conclusion: Further elucidation of HMGA1 function should lead to novel therapeutic strategies for cancer and possibly for other diseases associated with aberrant HMGA1 expression.

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