MDA-7/IL-24 regulates the miRNA processing enzyme DICER through downregulation of MITF

Author:

Pradhan Anjan K.,Bhoopathi Praveen,Talukdar Sarmistha,Scheunemann Danielle,Sarkar Devanand,Cavenee Webster K.ORCID,Das Swadesh K.,Emdad Luni,Fisher Paul B.

Abstract

Melanoma differentiation-associated gene-7/interleukin-24 (mda-7/IL-24) is a multifunctional cytokine displaying broad-spectrum anticancer activity in vitro or in vivo in preclinical animal cancer models and in a phase 1/2 clinical trial in patients with advanced cancers.mda-7/IL-24targets specific miRNAs, including miR-221 and miR-320, for down-regulation in a cancer-selective manner. We demonstrate thatmda-7/IL-24, administered through a replication incompetent type 5 adenovirus (Ad.mda-7) or with His-MDA-7/IL-24 protein, down-regulates DICER, a critical regulator in miRNA processing. This effect is specific for mature miR-221, as it does not affect Pri-miR-221 expression, and the DICER protein, as no changes occur in other miRNA processing cofactors, including DROSHA, PASHA, or Argonaute. DICER is unchanged by Ad.mda-7/IL-24in normal immortal prostate cells, whereas Ad.mda-7down-regulates DICER in multiple cancer cells including glioblastoma multiforme and prostate, breast, lung, and liver carcinoma cells. MDA-7/IL-24 protein down-regulates DICER expression through canonical IL-20/IL-22 receptors. Gain- and loss-of-function studies confirm that overexpression of DICER rescues deregulation of miRNAs bymda-7/IL-24, partially rescuing cancer cells frommda-7/IL-24-mediated cell death. Stable overexpression of DICER in cancer cells impedes Ad.mda-7or His-MDA-7/IL-24 inhibition of cell growth, colony formation, PARP cleavage, and apoptosis. In addition, stable overexpression of DICER renders cancer cells more resistant to Ad.mda-7inhibition of primary and secondary tumor growth. MDA-7/IL-24-mediated regulation of DICER is reactive oxygen species-dependent and mediated by melanogenesis-associated transcription factor. Our research uncovers a distinct role ofmda-7/IL-24in the regulation of miRNA biogenesis through alteration of the MITF-DICER pathway.

Funder

HHS | NIH | National Cancer Institute

National Foundation for Cancer Research

VCU Institute of Molecular Medicine

Genetics Enhancement Fund

Sponsored Research Agreement from InterLeukin Combinatorial Therapies, Inc.

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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