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Z-DNA-forming silencer in the first exon regulates human ADAM-12 gene expression

机译:第一个外显子中形成Z-DNA的沉默子调节人ADAM-12基因表达

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Upregulation of ADAM-12, a novel member of the multifunctional ADAM family of proteins is linked to cancer, arthritis and cardiac hypertrophy. Basal expression of ADAM-12 is very low in adult tissues but rises markedly in response to certain physiological cues, such as during pregnancy in the placenta, during development in neonatal skeletal muscle and bone and in regenerating muscle. Studies on ADAM-12 regulation have identified a highly conserved negative regulatory element (NRE) at the 5'-UTR of human ADAM-12 gene, which acts as a transcriptional repressor. The NRE contains a stretch of dinucleotide-repeat sequence that is able to adopt a Z-DNA conformation both in vitro and in vivo and interacts with hZα_(ADAR1), a bona fide Z-DNA-binding protein. Substitution of the dinucleotide-repeat-element with a non-Z-DNA-forming sequence inhibited NRE function. We have detected a NRE DNA-binding protein activity in several tissues where ADAM-12 expression is low while no such activity was seen in the placenta where ADAM-12 expression is high. These observations suggest that interaction of these proteins with ADAM-12 NRE is critical for transcriptional repression of ADAM-12. We also show that the Z-DNA forming transcriptional repressor element, by interacting with these putative Z-DNA-binding proteins, is involved in the maintenance of constitutive low-level expression of human ADAM-12. Together these results provide a foundation for therapeutic down-regulation of ADAM-12 in cancer, arthritis and cardiac hypertrophy.
机译:ADAM-12是多功能ADAM蛋白质家族的新成员,其上调与癌症,关节炎和心脏肥大有关。在成人组织中,ADAM-12的基础表达非常低,但会响应某些生理线索而显着升高,例如在胎盘怀孕期间,新生儿骨骼肌和骨骼发育期间以及在再生肌肉中。关于ADAM-12调控的研究已经确定了在人类ADAM-12基因5'-UTR处高度保守的负调控元件(NRE),该元件可作为转录阻遏物。 NRE包含一段二核苷酸重复序列,该序列能够在体内和体外采用Z-DNA构象,并与真正的Z-DNA结合蛋白hZα_(ADAR1)相互作用。用非Z-DNA形成序列取代二核苷酸重复元素抑制NRE功能。我们已经在ADAM-12表达低的几个组织中检测到NRE DNA结合蛋白活性,而在ADAM-12表达高的胎盘中没有发现这种活性。这些观察结果表明这些蛋白质与ADAM-12 NRE的相互作用对于ADAM-12的转录抑制至关重要。我们还显示,通过与这些假定的Z-DNA结合蛋白相互作用,形成Z-DNA的转录阻遏元件,参与了人类ADAM-12组成型低水平表达的维持。这些结果共同为癌症,关节炎和心脏肥大中ADAM-12的治疗性下调奠定了基础。

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