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December 12, 2021Cancer Science52 citationsOpen Access

Hypoxia‐inducible lncRNA MIR210HG interacting with OCT1 is involved in glioblastoma multiforme malignancy

KHKuo‐Hao HoTaipei Medical UniversityCSChwen‐Ming ShihTaipei Medical UniversityALAnn-Jeng LiuTaipei City Hospital

Key Result

Higher hypoxic activity and upregulated MIR210HG expression predicted a worse prognosis in glioblastoma multiforme patients (HR 3.015) and promoted tumor malignancy by interacting with OCT1.

Structured PICO

Does MIR210HG depletion reduce hypoxia-induced glioblastoma multiforme malignancy?

P
Population
925 glioblastoma multiforme patients from TCGA, CGGA, and GSE7696 databases analyzed retrospectively alongside in vitro and in vivo models.
E
Exposure
Hypoxia exposure, MIR210HG overexpression, or MIR210HG depletion (using ASOs or shRNA)
C
Comparator
Normoxia, empty vector, or control ASO/shRNA
O
Outcome
GBM malignancy characteristics including invasion, stemness, temozolomide (TMZ) resistance, and tumor growthsurrogate

The hypoxia-inducible lncRNA MIR210HG interacts with OCT1 to promote glioblastoma multiforme malignancy and temozolomide resistance, suggesting a potential therapeutic target.

Main Result

Hazard Ratio: 3.015

p-value: p=0.016

Limitations

  • A comprehensive ChIP-Seq analysis with an antibody against OCT1 upon hypoxia is needed to further understand its roles in hypoxia-mediated glioma progression

Abstract

An insufficient oxygen supply within the intratumoral environment, also known as hypoxia, induces glioblastoma multiforme (GBM) invasion, stemness, and temozolomide (TMZ) drug resistance. Long noncoding (lnc)RNAs have been reported to be involved in hypoxia and GBM progression. However, their roles in hypoxic GBM malignancy are still unclear. We investigated the mechanisms of hypoxia-mediated lncRNAs in regulating GBM processes. Using The Cancer Genome Atlas (TCGA) and data mining, hypoxia-correlated lncRNAs were identified. A hypoxia-upregulated lncRNA, MIR210HG, locating in nuclear regions, predicted poor prognoses of patients and modulated hypoxia-promoted glioma stemness, TMZ resistance, and invasion. Depletion of hypoxic MIR210HG suppressed GBM and patient-derived cell growth and increased TMZ sensitivity in vitro and vivo. Using RNA sequencing and gene set enrichment analysis (GSEA), MIR210HG-upregulated genes significantly belonged to the targets of octamer transcription factor 1 (OCT1) transcription factor. The direct interaction between OCT1 and MIR210HG was also validated. Two well-established worse prognostic factors of GBM, insulin-like growth factor-binding protein 2 (IGFBP2) and fibroblast growth factor receptor 1 (FGFR1), were identified as downstream targets of OCT1 through MIR210HG mediation in hypoxia. Consequently, the lncRNA MIR210HG is upregulated by hypoxia and interacts with OCT1 for modulating hypoxic GBM, leading to poor prognoses. These findings might provide a better understanding in functions of hypoxia/MIR210HG signaling for regulating GBM malignancy.

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Cite This Study

Ho et al. (2021) studied Glioblastoma multiforme (n=925). High hypoxia activity and MIR210HG expression vs. Low hypoxia activity and MIR210HG expression was evaluated on Overall survival (HR 3.015, p=0.016). Higher hypoxic activity and upregulated MIR210HG expression predicted a worse prognosis in glioblastoma multiforme patients (HR 3.015) and promoted tumor malignancy by interacting with OCT1.

synapsesocial.com/papers/6a97937d6ccf0d1eee31c6bfhttps://doi.org/10.1111/cas.15240
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