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Residues in the Alternative Reading Frame Tumor Suppressor that Influence its Stability and p53-Independent Activities

机译:影响其稳定性和p53独立活性的替代阅读框肿瘤抑制因子中的残基

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摘要

The Alternative Reading Frame (ARF) protein suppresses tumorigenesis through p53-dependent and p53-independent pathways. Most of ARF’s anti-proliferative activity is conferred by sequences in its first exon. Previous work showed specific amino acid changes occurred in that region during primate evolution, so we programmed those changes into human p14ARF to assay their functional impact. Two human p14ARF residues (Ala14 and Thr31) were found to destabilize the protein while two others (Val24 and Ala41) promoted more efficient p53 stabilization and activation. Despite those effects, all modified p14ARF forms displayed robust p53-dependent anti-proliferative activity demonstrating there are no significant biological differences in p53-mediated growth suppression associated with simian versus human p14ARF residues. In contrast, p53-independent p14ARF function was considerably altered by several residue changes. Val24 was required for p53-independent growth suppression whereas multiple residues (Val24, Thr31, Ala41 and His60) enabled p14ARF to block or reverse the inherent chromosomal instability of p53-null MEFs. Together, these data pinpoint specific residues outside of established p14ARF functional domains that influence its expression and signaling activities. Most intriguingly, this work reveals a novel and direct role for p14ARF in the p53-independent maintenance of genomic stability.
机译:替代阅读框(ARF)蛋白通过p53依赖性和p53依赖性途径抑制肿瘤发生。 ARF的大部分抗增殖活性是由其第一个外显子中的序列赋予的。先前的研究表明在灵长类动物进化过程中该区域发生了特定的氨基酸变化,因此我们将这些变化编入了人类p14ARF中,以测定其功能影响。发现两个人类p14ARF残基(Ala 14 和Thr 31 )使蛋白质不稳定,而其他两个残基(Val 24 和Ala 41 )促进了p53的更有效稳定和激活。尽管有这些影响,所有修饰的p14ARF形式仍显示出强大的p53依赖性抗增殖活性,这表明与猿猴和人p14ARF残基相关的p53介导的生长抑制没有明显的生物学差异。相反,不依赖于p53的p14ARF功能则通过几个残基的变化而大大改变。 p53依赖性生长抑制需要Val 24 ,而多个残基(Val 24 ,Thr 31 ,Ala 41 and His 60 )使p14ARF阻断或逆转p53-null MEF固有的染色体不稳定性。这些数据共同指出了已建立的p14ARF功能域以外影响其表达和信号传导活性的特定残基。最有趣的是,这项工作揭示了p14ARF在不依赖p53的基因组稳定性维持中的新颖而直接的作用。

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