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首页> 外文期刊>Journal of molecular cell biology >Noncoding RNAs: 'our turn' to join the p53 network.
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Noncoding RNAs: 'our turn' to join the p53 network.

机译:非编码RNA:“轮到我们”加入p53网络。

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摘要

p53 is a transcription factor that governs numerous stress response pathways within the cell. Maintaining the right levels of p53 is crucial for cell survival and proper cellular homeostasis. The tight regulation of p53 involves many cellular components, most notably its major negative regulators Mdm2 and Mdm4, which maintain p53 protein amount and activity in tight check. microRNAs (miRNAs) are small non-coding RNAs that target specific mRNAs to translational arrest and degradation. miRNAs are also key components of the normal p53 pathway, joining forces with Mdm2 and Mdm4 to maintain proper p53 activity. Here we review the current knowledge of miRNAs targeting Mdm2 and Mdm4, and their importance in different tissues and in pathological states such as cancer. In addition, we address the role of Alu sequences-highly abundant retroelements spread throughout the human genome, and their impact on gene regulation via the miRNA machinery. Alus occupy a significant portion of genes' 3'UTR, and as such they have the potential to impact mRNA regulation. Since Alus are primate-specific, they introduce a new regulatory layer into primate genomes. Alus can influence and alter gene regulation, creating primate-specific cancer-preventive regulatory mechanisms to sustain the transition to longer life span in primates. We review the possible influence of Alu sequences on miRNA functionality in general and specifically within the p53 network.
机译:p53是控制细胞内众多应激反应途径的转录因子。维持正确的p53水平对于细胞存活和适当的细胞稳态至关重要。对p53的严格调节涉及许多细胞成分,最主要的是其主要的负调节因子Mdm2和Mdm4,它们可以严格检查p53蛋白的含量和活性。 microRNA(miRNA)是小的非编码RNA,其将特定的mRNA靶向翻译抑制和降解。 miRNA也是正常p53途径的关键组成部分,与Mdm2和Mdm4共同作用以维持适当的p53活性。在这里,我们回顾了针对Mdm2和Mdm4的miRNA的当前知识,以及它们在不同组织和病理状态(例如癌症)中的重要性。此外,我们研究了Alu序列的作用-高度丰富的逆转录元素分布在整个人类基因组中,以及它们通过miRNA机制对基因调控的影响。 Alus占据了基因3'UTR的很大一部分,因此它们具有影响mRNA调控的潜力。由于Alus是灵长类动物特有的,因此它们在灵长类动物基因组中引入了新的调控层。 Alus可以影响和改变基因调控,从而创建灵长类特异性的癌症预防调控机制,以维持向灵长类动物更长寿命的过渡。我们回顾了Alu序列可能对miRNA功能的总体影响,特别是在p53网络中。

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