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

机译:组蛋白脱乙酰基酶抑制剂(曲古抑菌素A)在人急性髓系白血病细胞中诱导ID1表达和凋亡

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摘要

: ID1, founding member of the inhibitor of differentiation (ID) family, is involved in cell population growth, apoptosis and tumourigenesis. : 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. : 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.
机译::ID1是分化抑制剂(ID)家族的创始成员,参与细胞群体的生长,凋亡和肿瘤发生。 :我们使用半定量逆转录聚合酶链反应研究了人类髓样白血病细胞系和急性髓样白血病(AML)患者标本中ID1的mRNA水平,并使用Western blot分析了人髓样白血病细胞系中ID1的蛋白水平。发现七个AML细胞系中的六个和15个AML患者样品中的12个具有几乎无法检测到的ID1 mRNA。所有这些细胞系均显示与mRNA水平成比例的相同蛋白质水平。选择两种ID1低表达的AML细胞系KG1和KG-1a进行DNA去甲基化试剂5-氮杂2'-脱氧胞苷(DAC)或组蛋白脱乙酰基酶(HDAC)抑制剂曲古司汀的治疗A(TSA)。这些治疗可以单独使用或联合使用,并且DAC和TSA均可诱导ID1表达。通过甲基化特异性聚合酶链反应,在大多数细胞系和患者标本中均未检测到超甲基化的ID1基因启动子,这表明KG1和KG-1a中ID1的诱导不是由于ID1基因启动子的直接去甲基化。染色质免疫沉淀表明,乙酰组蛋白H3的积累和HDAC1的释放与这些药物对ID1的诱导有关。流式细胞仪分析显示,在KG-1和KG-1a细胞系中,TSA或TSA与DAC联合诱导的细胞凋亡更多。当用TSA处理时,观察到细胞内活性氧的增加。 :大多数AML细胞系和人AML样品的ID1表达水平非常低。 TSA或TSA与DAC结合能够通过重新激活异常脱乙酰化的启动子来恢复低表达ID1的AML细胞系中ID1的表达,并且还导致更多的细胞凋亡,其中可能涉及ID1和氧化还原途径。

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