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首页> 外文期刊>Oncogene >HAND1 gene expression is negatively regulated by the High Mobility Group A1 proteins and is drastically reduced in human thyroid carcinomas
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HAND1 gene expression is negatively regulated by the High Mobility Group A1 proteins and is drastically reduced in human thyroid carcinomas

机译:在人类甲状腺癌中,HAND1基因的表达受到高迁移率族A1蛋白的负调控,并显着降低

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摘要

HMGA1 proteins exert their major physiological function during embryonic development and play a critical role in neoplastic transformation. Here, we show that Hand1 gene, which codes for a transcription factor crucial for differentiation of trophoblast giant cells and heart development, is upregulated in hmga1 minus embryonic stem cells. We demonstrate that HMGA1 proteins bind directly to Hand1 promoter both in vitro and in vivo and inhibit Hand1 promoter activity. We have also investigated HAND1 expression in human thyroid carcinoma cell lines and tissues, in which HMGA proteins are overexpressed, with respect to normal thyroid; an inverse correlation between HMGA1 and HAND1 expression was found in all thyroid tumor histotypes. A correlation between HAND1 gene repression and promoter hypermethylation was found in anaplastic carcinomas but not in other thyroid tumor histotypes. Therefore, we can hypothesize that HMGA1 overexpression plays a key role on HAND1 silencing in differentiated thyroid carcinomas and that promoter hypermethylation occurs in later stages of thyroid tumor progression. Finally, the restoration of the HAND1 gene expression reduces the clonogenic ability of two human thyroid carcinoma-derived cell lines, suggesting that HAND1 downregulation may have a role in the process of thyroid carcinogenesis.
机译:HMGA1蛋白在胚胎发育过程中发挥主要生理功能,并在肿瘤转化中发挥关键作用。在这里,我们显示了在hmga1减去胚胎干细胞中上调了Hand1基因,该基因编码对于滋养层巨细胞的分化和心脏发育至关重要的转录因子。我们证明,HMGA1蛋白直接结合Hand1启动子在体外和体内,并抑制Hand1启动子的活性。我们还研究了在正常甲状腺中HMGA蛋白过表达的人甲状腺癌细胞系和组织中HAND1的表达。在所有甲状腺肿瘤组织学类型中均发现HMGA1和HAND1表达呈负相关。在间变性癌中发现HAND1基因阻遏与启动子高甲基化之间存在相关性,而在其他甲状腺肿瘤组织学类型中则没有。因此,我们可以假设HMGA1过表达在分化型甲状腺癌的HAND1沉默中起关键作用,而启动子高甲基化发生在甲状腺肿瘤进展的后期。最后,HAND1基因表达的恢复降低了两个人类甲状腺癌衍生细胞系的克隆能力,这表明HAND1下调可能在甲状腺癌变过程中起作用。

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