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Nothing in excess - lessons learned from the expression of high-mobility group proteins type A in non-cancer and cancer cells

机译:一点都不多余-从非癌细胞和癌细胞中A型高迁移率基团蛋白的表达中吸取的教训

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摘要

High-mobility group A (HMGA) proteins are major transcription regulators which are abundantly and ubiquitously expressed in undifferentiated cells but present at a low level in somatic cells of adult organisms. Up-regulation of HMGA expression is a frequent finding in cancer, either via direct stimulation of expression by constitutively expressed proto-oncogenic factors such as MYC and JUN or by rearrangements rendering the expression of the HMGA proteins not suppressible by inhibitory factors such as miRNAs. Rearrangements of the HMGA genomic loci resulting in disabling of the control mechanisms of their expression are often seen in tumours of various origin. A direct relationship between the level of expression of HMGA in mitochondria and the level of accumulation of oxidative damage in cancer cells has been recently noted. On the other hand, mammalian cells deficient in HMGA1 expression are also deficient in utilization of glucose and show the impairment in expression of the insulin receptor and the high levels of oxidative damage of DNA characteristic of diabetes type 2 and the related condition metabolic syndrome. Insulin resistance and metabolic syndrome could be viewed as a premalignant state in which DNA damage is slowly accumulating until the repair machinery of the cell cannot withstand the constant oxidative barrage and surrenders to neoplastic transformation.
机译:高迁移率的A组(HMGA)蛋白是主要的转录调节因子,在未分化细胞中大量表达,在成年生物的体细胞中含量低。 HMGA表达的上调是在癌症中的常见发现,这可能是通过组成性表达的原癌性因子(例如MYC和JUN)直接刺激表达或通过重排使HMGA蛋白的表达无法被抑制性因子(例如miRNA)抑制。 HMGA基因组基因座的重排导致其表达控制机制失效,通常在各种来源的肿瘤中可见。最近已经注意到线粒体中HMGA的表达水平与癌细胞中氧化损伤的积累水平之间存在直接关系。另一方面,缺乏HMGA1表达的哺乳动物细胞也缺乏葡萄糖的利用,并表现出胰岛素受体表达的损害和2型糖尿病特征DNA和相关病症代谢综合征的高水平的氧化损伤。胰岛素抵抗和代谢综合症可被视为癌前状态,其中DNA损伤缓慢累积,直到细胞的修复机制无法承受恒定的氧化弹并向肿瘤转化投降。

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