4.7 Article

A microRNA-mediated decrease in eukaryotic initiation factor 2α promotes cell survival during PS-341 treatment

Journal

SCIENTIFIC REPORTS
Volume 6, Issue -, Pages -

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/srep21565

Keywords

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Funding

  1. NSFC [81101680, 81272451/H1609]
  2. Natural Science Funds for Distinguished Young Scholar of Guangdong Province, China [2015A030306033]
  3. Natural Science Foundation of Guangdong Province, China [2015A030313468]
  4. Science and Technology Planning Project of Guangdong Province, China [2013B021800096]
  5. Guangzhou scholars research projects of Guangzhou municipal colleges and universities [12A009D]
  6. Pearl River projects (Young Talents of Science and Technology) in Guangzhou [2013J2200028]
  7. National Science and Technique Major Project [201305017]
  8. US NIH [HL072166, HL085629]

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MicroRNAs (miRs) play pivotal roles in carcinogenesis and endoplasmic reticulum (ER) that performs the folding, modification and trafficking of proteins targeted to the secretory pathway. Cancer cells often endure ER stress during tumor progression but use the adaptive ER stress response to gain survival advantage. Here we report: (i) A group of miRs, including miR-30b-5p and miR-30c-5p, are upregulated by proteasome inhibitor PS-341 treatment, in HepG2 and MDA-MB-453 cells. (ii) Two representative PS-341-induced miRs: miR-30b-5p and miR-30c-5p are found to promote cell proliferation and antiapoptosis in both tumor cells. (iii) eIF2 alpha is confirmed as the congenerous target of miR-30b-5p and miR-30c-5p, essential to the anti-apoptotic function of these miRs. (iv) Upregulation of miR-30b-5p or miR-30c-5p, which occurs latter than the increase of phosphorylated eIF2 alpha (p-eIF2 alpha) in the cell under ER stress, suppresses the p-eIF2 alpha/ATF4/CHOP pro-apoptotic pathway. (v) Inhibition of the miR-30b-5p or miR-30c-5p sensitizes the cancer cells to the cytotoxicity of proteasome inhibition. In conclusion, we unravels a new miRs-based mechanism that helps maintain intracellular proteostasis and promote cell survival during ER stress through upregulation of miR-30b-5p and miR-30c-5p which target eIF2 alpha and thereby inhibit the p-eIF2 alpha/ATF4/CHOP pro-apoptotic pathway, identifying miR-30b-5p and miR-30c-5p as potentially new targets for anti-cancer therapies.

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