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PMID: 28167531 Published · ppublish English Comparative Study Journal Article

Adenosine Deaminase That Acts on RNA 3 (ADAR3) Binding to Glutamate Receptor Subunit B Pre-mRNA Inhibits RNA Editing in Glioblastoma.

The Journal of biological chemistry ·Vol. 292 ·No. 10 ·2017-00-10 ·Pages 4326-4335

Oakes E, Anderson A, Cohen-Gadol A, Hundley HA

Abstract

RNA editing is a cellular process that precisely alters nucleotide sequences, thus regulating gene expression and generating protein diversity. Over 60% of human transcripts undergo adenosine to inosine RNA editing, and editing is required for normal development and proper neuronal function of animals. Editing of one adenosine in the transcript encoding the glutamate receptor subunit B, glutamate receptor ionotropic AMPA 2 (GRIA2), modifies a codon, replacing the genomically encoded glutamine (Q) with arginine (R); thus this editing site is referred to as the Q/R site. Editing at the Q/R site of GRIA2 is essential, and reduced editing of GRIA2 transcripts has been observed in patients suffering from glioblastoma. In glioblastoma, incorporation of unedited GRIA2 subunits leads to a calcium-permeable glutamate receptor, which can promote cell migration and tumor invasion. In this study, we identify adenosine deaminase that acts on RNA 3 (ADAR3) as an important regulator of Q/R site editing, investigate its mode of action, and detect elevated ADAR3 expression in glioblastoma tumors compared with adjacent brain tissue. Overexpression of ADAR3 in astrocyte and astrocytoma cell lines inhibits RNA editing at the Q/R site of GRIA2 Furthermore, the double-stranded RNA binding domains of ADAR3 are required for repression of RNA editing. As the Q/R site of GRIA2 is specifically edited by ADAR2, we suggest that ADAR3 directly competes with ADAR2 for binding to GRIA2 transcript, inhibiting RNA editing, as evidenced by the direct binding of ADAR3 to the GRIA2 pre-mRNA. Finally, we provide evidence that both ADAR2 and ADAR3 expression contributes to the relative level of GRIA2 editing in tumors from patients suffering from glioblastoma.

Keywords
ADAR ADAR3 GRIA2 RNA editing adenosine deaminase cancer double-stranded RNA (dsRNA) glioblastoma glutamate receptor inosine
MeSH Terms
Adenosine Deaminase/genetics,metabolism Adult Aged Astrocytes/cytology,metabolism Brain/cytology,metabolism Case-Control Studies Cells, Cultured Female Glioblastoma/genetics,metabolism,pathology Glutamic Acid/metabolism Humans Male Middle Aged Neoplasm Grading RNA Editing/genetics RNA Precursors/genetics RNA, Messenger/genetics RNA-Binding Proteins/genetics,metabolism Receptors, AMPA/genetics,metabolism
Chemicals
RNA Precursors RNA, Messenger RNA-Binding Proteins Receptors, AMPA Glutamic Acid ADA protein, human ADARB1 protein, human Adenosine Deaminase glutamate receptor ionotropic, AMPA 2
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Oakes Eimile
From the Department of Biology and.
Anderson Ashley
Medical Sciences Program, Indiana University, Bloomington, Indiana 47405 and.
Cohen-Gadol Aaron
Department of Neurological Surgery, Goodman Campbell Brain and Spine, Indianapolis, Indiana 46202.
Hundley Heather A
Medical Sciences Program, Indiana University, Bloomington, Indiana 47405 and [email protected].
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Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
1083-351X
Published
2017-00-10
Epub
2017-00-06
Pages
4326-4335
Language
English
Region
United States
NLM ID
2985121R
PMCID
PMC5354488
Subset
IM
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