4.8 Article

p53 Regulates the Expression of LRP1 and Apoptosis through a Stress Intensity-Dependent MicroRNA Feedback Loop

Journal

CELL REPORTS
Volume 24, Issue 6, Pages 1484-1495

Publisher

CELL PRESS
DOI: 10.1016/j.celrep.2018.07.010

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Funding

  1. National Cancer Institute [CA127770, CA100302, CA167637, CA155235]
  2. University of North Carolina Genetics and Molecular Biology Training [5T32 GM007092]
  3. NSFC [81672618]
  4. Jiangsu Center for the Collaboration and Innovation of Cancer Biotherapy

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Understanding how p53 activates certain gene programs and not others is critical. Here, we identify low-density lipoprotein receptor-related protein 1 (LRP1), a transmembrane endocytic receptor, as a p53 target gene. We show that, although LRP1 transcript expression is upregulated in response to both sub-lethal and lethal doses of p53-activating stress, LRP1 protein is only upregulated in response to sub-lethal stress. Interestingly, lethal doses of p53-activating stress inhibit LRP1 de novo translation through an miRNA-based translational repression mechanism. We show that the p53-regulated miRNAs miR-103 and miR-107 are significantly upregulated by lethal doses of stress, resulting in suppression of LRP1 translation and cell death. Our results define a negative feedback loop involving the p53-regulated coding gene LRP1 and p53-regulated miRNA genes. These findings provide mechanistic insight into the selective expression of p53 target genes in response to different stress intensities to elicit either cell survival or cell death.

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