[PDF][PDF] MiR-215 is induced post-transcriptionally via HIF-Drosha complex and mediates glioma-initiating cell adaptation to hypoxia by targeting KDM1B

J Hu, T Sun, H Wang, Z Chen, S Wang, L Yuan, T Liu… - Cancer cell, 2016 - cell.com
J Hu, T Sun, H Wang, Z Chen, S Wang, L Yuan, T Liu, HR Li, P Wang, Y Feng, Q Wang
Cancer cell, 2016cell.com
The hypoxic tumor microenvironment serves as a niche for maintaining the glioma-initiating
cells (GICs) that are critical for glioblastoma (GBM) occurrence and recurrence. Here, we
report that hypoxia-induced miR-215 is vital for reprograming GICs to fit the hypoxic
microenvironment via suppressing the expression of an epigenetic regulator KDM1B and
modulating activities of multiple pathways. Interestingly, biogenesis of miR-215 and several
miRNAs is accelerated post-transcriptionally by hypoxia-inducible factors (HIFs) through HIF …
Summary
The hypoxic tumor microenvironment serves as a niche for maintaining the glioma-initiating cells (GICs) that are critical for glioblastoma (GBM) occurrence and recurrence. Here, we report that hypoxia-induced miR-215 is vital for reprograming GICs to fit the hypoxic microenvironment via suppressing the expression of an epigenetic regulator KDM1B and modulating activities of multiple pathways. Interestingly, biogenesis of miR-215 and several miRNAs is accelerated post-transcriptionally by hypoxia-inducible factors (HIFs) through HIF-Drosha interaction. Moreover, miR-215 expression correlates inversely with KDM1B while correlating positively with HIF1α and GBM progression in patients. These findings reveal a direct role of HIF in regulating miRNA biogenesis and consequently activating the miR-215-KDM1B-mediated signaling required for GIC adaptation to hypoxia.
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