Department of Biochemistry, University of Colorado, Boulder, Colorado, United States of America.
Department of Molecular, Cellular, and Developmental Biology, University of Colorado, Boulder, Colorado, United States of America.
PLoS Biol. 2021 Aug 5;19(8):e3001364. doi: 10.1371/journal.pbio.3001364. eCollection 2021 Aug.
The naturally occurring Δ40p53 isoform heterotetramerizes with wild-type p53 (WTp53) to regulate development, aging, and stress responses. How Δ40p53 alters WTp53 function remains enigmatic because their co-expression causes tetramer heterogeneity. We circumvented this issue with a well-tested strategy that expressed Δ40p53:WTp53 as a single transcript, ensuring a 2:2 tetramer stoichiometry. Human MCF10A cell lines expressing Δ40p53:WTp53, WTp53, or WTp53:WTp53 (as controls) from the native TP53 locus were examined with transcriptomics (precision nuclear run-on sequencing [PRO-seq] and RNA sequencing [RNA-seq]), metabolomics, and other methods. Δ40p53:WTp53 was transcriptionally active, and, although phenotypically similar to WTp53 under normal conditions, it failed to induce growth arrest upon Nutlin-induced p53 activation. This occurred via Δ40p53:WTp53-dependent inhibition of enhancer RNA (eRNA) transcription and subsequent failure to induce mRNA biogenesis, despite similar genomic occupancy to WTp53. A different stimulus (5-fluorouracil [5FU]) also showed Δ40p53:WTp53-specific changes in mRNA induction; however, other transcription factors (TFs; e.g., E2F2) could then drive the response, yielding similar outcomes vs. WTp53. Our results establish that Δ40p53 tempers WTp53 function to enable compensatory responses by other stimulus-specific TFs. Such modulation of WTp53 activity may be an essential physiological function for Δ40p53. Moreover, Δ40p53:WTp53 functional distinctions uncovered herein suggest an eRNA requirement for mRNA biogenesis and that human p53 evolved as a tetramer to support eRNA transcription.
天然存在的 Δ40p53 同种型异四聚体与野生型 p53(WTp53)结合,调节发育、衰老和应激反应。Δ40p53 如何改变 WTp53 的功能仍然是个谜,因为它们的共表达导致四聚体异质性。我们通过一种经过充分测试的策略来解决这个问题,该策略将 Δ40p53:WTp53 表达为单个转录本,确保 2:2 四聚体化学计量。从天然 TP53 基因座表达 Δ40p53:WTp53、WTp53 或 WTp53:WTp53(作为对照)的人 MCF10A 细胞系通过转录组学(精确核运行序列 [PRO-seq] 和 RNA 测序 [RNA-seq])、代谢组学和其他方法进行了检查。Δ40p53:WTp53 具有转录活性,尽管在正常条件下表型与 WTp53 相似,但在 Nutlin 诱导 p53 激活时未能诱导生长停滞。这是通过 Δ40p53:WTp53 依赖性抑制增强子 RNA(eRNA)转录以及随后未能诱导 mRNA 生物发生而发生的,尽管与 WTp53 具有相似的基因组占有率。不同的刺激物(5-氟尿嘧啶 [5FU])也显示出 Δ40p53:WTp53 特异性的 mRNA 诱导变化;然而,其他转录因子(TFs;例如,E2F2)随后可以驱动反应,产生与 WTp53 相似的结果。我们的结果表明,Δ40p53 调节 WTp53 功能,以使其他刺激特异性 TFs 能够产生代偿反应。这种对 WTp53 活性的调节可能是 Δ40p53 的一种重要生理功能。此外,本文揭示的 Δ40p53:WTp53 功能差异表明,mRNA 生物发生需要 eRNA,并且人类 p53 作为四聚体进化以支持 eRNA 转录。