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      Induction of ID1 expression and apoptosis by the histone deacetylase inhibitor (trichostatin A) in human acute myeloid leukaemic cells

      research-article
      1 , 2 , 2 , 2
      Cell Proliferation
      Blackwell Publishing Ltd

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          Abstract

          Abstract.  Introduction: ID1, founding member of the inhibitor of differentiation (ID) family, is involved in cell population growth, apoptosis and tumourigenesis. Methods and Results: We investigated mRNA levels of ID1 in human myeloid leukaemic cell lines and in specimens of patients with acute myeloid leukaemia (AML), using semiquantitative reverse transcription‐polymerase chain reaction, and protein levels of ID1 in human myeloid leukaemic cell lines using Western blot analysis. Six of seven AML cell lines and 12 of 15 AML patient samples were found to have barely detectable ID1 mRNA. All of these cell lines showed the same levels of protein in proportion to levels of mRNA. Two of the AML cell lines with low ID1 expression, KG1 and KG‐1a, were chosen for treatment with either the DNA demethylation reagent, 5‐aza‐2′‐deoxycytidine (DAC), or the histone deacetylase (HDAC) inhibitor, trichostatin A (TSA). These treatments were alone or in combination, and ID1 expression was induced by both DAC and TSA. No hypermethylated ID1 gene promoter was detected in the majority of the cell lines and patient specimens, by methylation‐specific polymerase chain reaction, suggesting that induction of ID1 in KG1 and KG‐1a was not due to direct demethylation of the ID1 gene promoter. Chromatin immunoprecipitation showed that accumulation of acetyl‐histone H3 and release of HDAC1 were correlated with ID1 induction by these drugs. Flow cytometric assay demonstrated more apoptosis induced by TSA or TSA in combination with DAC, in both KG‐1 and KG‐1a cell lines. Increase of intracellular reactive oxygen species was observed when treated with TSA. Conclusion: Most AML cell lines and human AML samples have very low levels of expression of ID1. TSA or TSA in combination with DAC is able to restore ID1 expression in low ID1‐expressing AML cell lines by re‐activating the aberrantly deacetylated promoter, and this also results in more apoptotic cell death, in which ID1 and the redox pathway may be involved.

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          Author and article information

          Journal
          Cell Prolif
          Cell Prolif
          10.1111/(ISSN)1365-2184
          CPR
          Cell Proliferation
          Blackwell Publishing Ltd (Oxford, UK )
          0960-7722
          1365-2184
          16 January 2008
          February 2008
          : 41
          : 1 ( doiID: 10.1111/cpr.2008.41.issue-1 )
          : 86-97
          Affiliations
          [ 1 ]Department of Pathophysiology, College of Medicine, Southeast University, Nanjing, Jiangsu, China,
          [ 2 ]Department of Pathology, Saskatoon Cancer Centre, University of Saskatchewan, Saskatoon, Saskatchewan, Canada
          Author notes
          [*]s: Wei‐Feng Dong, Department of Pathology, University of Calgary, Foothills Medical Center, 11th Floor, 1403‐29 Street N.W., Calgary, AB T2N 2T9, Canada. Tel.: +1 403 944‐8503; Fax: +1 403 944‐4748; E‐mail: wei-feng.dong@ 123456cls.ab.ca . Wei‐Ping Yu, Department of Pathophysiology, College of Medicine, Southeast University, 87 Ding Jia Qiao Lu, Nanjing 210009, Jiangsu, China. Tel.: +86‐25‐83272508; Fax: +86‐25‐84454318; E‐mail: wpylg@ 123456hotmail.com
          Article
          PMC6496488 PMC6496488 6496488 CPR499
          10.1111/j.1365-2184.2007.00499.x
          6496488
          18211287
          5e4a643a-479d-431e-b653-713eb52d8a83
          © 2008 The Authors
          History
          : 16 April 2007
          : 23 August 2007
          Page count
          Figures: 5, Tables: 0, Equations: 0, References: 30, Pages: 12, Words: 4989
          Categories
          Original Articles
          Custom metadata
          2.0
          February 2008
          Converter:WILEY_ML3GV2_TO_NLMPMC version:5.6.2.1 mode:remove_FC converted:02.05.2019

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