4.8 Article

PHLDA1 expression is controlled by an estrogen receptor-NFκB-miR-181 regulatory loop and is essential for formation of ER plus mammospheres

Journal

ONCOGENE
Volume 34, Issue 18, Pages 2309-2316

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/onc.2014.180

Keywords

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Funding

  1. National Institute of Health [R01 CA130932-05]
  2. University of Illinois at Chicago through the Chancellor's Discovery Fund
  3. Susan G Komen for the Cure [PDF12229484]

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Crosstalk between estrogen receptor (ER) and the inflammatory nuclear factor kappa B (NF kappa B) pathway in ER+ breast cancers may contribute to a more aggressive phenotype. Pleckstrin Homology-Like Domain, Family A, member 1 (PHLDA1), a target gene of ER-NF kappa B crosstalk, has been implicated in cell survival and stem cell properties. 17 beta-estradiol (E2), acting through ER alpha, and pro-inflammatory cytokines, acting through NF kappa B, increase the nascent transcript and PHLDA1 messenger RNA stability, indicating both transcriptional and post-transcriptional control of PHLDA1 expression. We show that PHLDA1 is a direct target of miR-181 and that mature miR-181a and b, as well as their host gene, are synergistically downregulated by E2 and tumor necrosis factor a, also in an ER-and NF kappa B-dependent manner. Thus, ER and NF kappa B work together to upregulate PHLDA1 directly through enhanced transcription and indirectly through repression of miR-181a and b. Previous studies have suggested that PHLDA1 may be a stem cell marker in the human intestine that contributes to tumorigenesis. Our findings that PHLDA1 is upregulated in mammospheres (MS) of ER+ breast cancer cells and that PHLDA1 knockdown impairs both MS formation and the expansion of aldehyde dehydrogenase (ALDH)-positive population, suggest that PHLDA1 may play a similar role in breast cancer cells. Upregulation of PHLDA1 in MS is largely dependent on the NF kappa B pathway, with downregulated miR-181 expression a contributing factor. Over-expression of miR-181 phenocopied PHLDA1 knockdown and significantly impaired MS formation, which was reversed, in part, by protection of the PHLDA1 3' untranslated region (UTR) or overexpression of PHLDA1 lacking the 3' UTR. Furthermore, we find that elevated PHLDA1 expression is associated with a higher risk of distant metastasis in ER+ breast cancer patients. Altogether, these data suggest that high PHLDA1 expression is controlled through an ER-NF kappa B-miR-181 regulatory axis and may contribute to a poor clinical outcome in patients with ER+ breast tumors by enhancing stem-like properties in these tumors.

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