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Attenuated adenosine-to-inosine editing of microRNA-376a* promotes invasiveness of glioblastoma cells
Yukti Choudhury, … , Beng-Ti Ang, Shu Wang
Yukti Choudhury, … , Beng-Ti Ang, Shu Wang
Published October 24, 2012
Citation Information: J Clin Invest. 2012;122(11):4059-4076. https://doi.org/10.1172/JCI62925.
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Research Article

Attenuated adenosine-to-inosine editing of microRNA-376a* promotes invasiveness of glioblastoma cells

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Abstract

In the human brain, microRNAs (miRNAs) from the microRNA-376 (miR-376) cluster undergo programmed “seed” sequence modifications by adenosine-to-inosine (A-to-I) editing. Emerging evidence suggests a link between impaired A-to-I editing and cancer, particularly in high-grade gliomas. We hypothesized that disruption of A-to-I editing alters expression of genes regulating glioma tumor phenotypes. By sequencing the miR-376 cluster, we show that the overall miRNA editing frequencies were reduced in human gliomas. Specifically in high-grade gliomas, miR-376a* accumulated entirely in an unedited form. Clinically, a significant correlation was found between accumulation of unedited miR-376a* and the extent of invasive tumor spread as measured by magnetic resonance imaging of patient brains. Using both in vitro and orthotopic xenograft mouse models, we demonstrated that the unedited miR-376a* promoted glioma cell migration and invasion, while the edited miR-376a* suppressed these features. The effects of the unedited miR-376a* were mediated by its sequence-dependent ability to target RAP2A and concomitant inability to target AMFR. Thus, the tumor-dependent introduction of a single base difference in the miR-376a* sequence dramatically alters the selection of its target genes and redirects its function from inhibiting to promoting glioma cell invasion. These findings uncover a new mechanism of miRNA deregulation and identify unedited miR-376a* as a potential therapeutic target in glioblastoma cells.

Authors

Yukti Choudhury, Felix Chang Tay, Dang Hoang Lam, Edwin Sandanaraj, Carol Tang, Beng-Ti Ang, Shu Wang

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Figure 2

Frequency of miR-376a* editing and expression of its unedited form correlate with invasive glioma spread.

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Frequency of miR-376a* editing and expression of its unedited form corre...
(A) Distribution of tumor volume/spread of gliomas grouped by high (>12%, n = 8) and low percent editing (n = 7) of miR-376a* at site +9 of pri-miR-376a1. Individual data points indicate tumor volumes (mm3) assessed by T2-weighted MRI imaging. Horizontal lines indicate mean tumor volumes. Student’s t test P value is indicated. (B) Representative MRI scans of patients with gliomas with low or high editing frequency of miR-376a*. White X indicates the main tumor mass, and white arrow indicates region of invasive tumor spread. (C) Correlation of expression of unedited miR-376a* with tumor volume indicating invasive tumor spread. Each data point represents an individual sample, and correlation coefficient determined by Pearson’s correlation is indicated. Expression levels of unedited miR-376a* were estimated by the frequency of editing of site +9 of pri-miR-376a1 and relative expression level of total miR-376a*.

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ISSN: 0021-9738 (print), 1558-8238 (online)

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