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The methionine salvage pathway-involving ADI1 inhibits hepatoma growth by epigenetically altering genes expression via elevating S-adenosylmethionine

机译:涉及蛋氨酸抢救途径的ADI1通过提高S-腺苷蛋氨酸的表观遗传改变基因表达来抑制肝癌的生长

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摘要

The 5′-methylthioadenosine (MTA) cycle-participating human acireductone dioxygenase 1 (ADI1) has been implicated as a tumor suppressor in prostate cancer, yet its role remains unclear in hepatocellular carcinoma (HCC). Here, we demonstrated a significant reduction of ADI1, either in protein or mRNA level, in HCC tissues. Additionally, higher ADI1 levels were associated with favorable postoperative recurrence-free survival in HCC patients. By altering ADI1 expression in HCC cells, a negative correlation between ADI1 and cell proliferation was observed. Cell-based and xenograft experiments were performed by using cells overexpressing ADI1 mutants carrying mutations at the metal-binding sites (E94A and H133A, respectively), which selectively disrupted differential catalytic steps, resulting in staying or leaving the MTA cycle. The results showed that the growth suppression effect was mediated by accelerating the MTA cycle. A cDNA microarray analysis followed by verification experiments identified that caveolin-1 (CAV1), a growth-promoting protein in HCC, was markedly decreased upon ADI1 overexpression. Suppression of CAV1 expression was mediated by an increase of S-adenosylmethionine (SAMe) level. The methylation status of CAV1 promoter was significantly altered upon ADI1 overexpression. Finally, a genome-wide methylation analysis revealed that ADI1 overexpression altered promoter methylation profiles in a set of cancer-related genes, including CAV1 and genes encoding antisense non-coding RNAs, long non-coding RNAs, and microRNAs, resulting in significant changes of their expression levels. In conclusion, ADI1 expression promoted MTA cycle to increase SAMe levels, which altered genome-wide promoter methylation profiles, resulting in altered gene expression and HCC growth suppression.
机译:参与5'-甲基硫代腺苷(MTA)循环的人类降压酮双加氧酶1(ADI1)被认为是前列腺癌的肿瘤抑制因子,但在肝细胞癌(HCC)中其作用尚不清楚。在这里,我们证明了HCC组织中ADI1的蛋白或mRNA水平显着降低。另外,较高的ADI1水平与HCC患者术后无复发生存期有利。通过改变HCC细胞中的ADI1表达,观察到ADI1与细胞增殖之间呈负相关。通过使用过度表达ADI1突变体的细胞进行基于细胞和异种移植的实验,这些突变体在金属结合位点(分别为E94A和H133A)携带突变,这些突变体选择性地破坏了不同的催化步骤,从而导致停留或离开MTA循环。结果表明,通过抑制MTA循环来介导生长抑制作用。 cDNA微阵列分析和随后的验证实验确定,在ADI1过表达后,caveolin-1(CAV1)是HCC中的一种促进生长的蛋白,其表达明显降低。 CAV1表达的抑制是由S-腺苷甲硫氨酸(SAMe)水平的增加介导的。 ADI1过表达后,CAV1启动子的甲基化状态显着改变。最后,全基因组甲基化分析显示,ADI1的过表达改变了一组癌症相关基因(包括CAV1和编码反义非编码RNA,长非编码RNA和microRNA的基因)中的启动子甲基化谱,从而导致了显着变化。他们的表达水平。总之,ADI1的表达促进了MTA循环,从而提高了SAMe的水平,从而改变了全基因组启动子的甲基化谱,导致基因表达的改变和HCC生长的抑制。

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