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July 15, 2005Cancer Research2,561 citations

MicroRNA-21 Is an Antiapoptotic Factor in Human Glioblastoma Cells

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JCJennifer A. ChanAKAnna M. KrichevskyKKKenneth S. Kosik

Key Points

  • This research aims to investigate the role of miR-21 in glioblastoma cells and its impact on apoptosis.
  • Analyzed miR-21 levels in glioblastoma tumor tissues and cultures versus nonneoplastic brain tissues.
  • Conducted knockdown experiments to assess the effects on caspase activation and apoptotic cell death.
  • Utilized established glioblastoma cell lines including A172, U87, and others for testing.
  • Markedly elevated miR-21 levels found in glioblastoma tissues compared to nonneoplastic brain tissues.
  • Knockdown of miR-21 induced activation of caspases, leading to increased cell death in glioblastoma cells.
  • Findings suggest miR-21's role in promoting the malignant phenotype by inhibiting apoptosis-related genes.

Abstract

MicroRNAs (miRNAs) are small noncoding RNA molecules that regulate protein expression by targeting the mRNA of protein-coding genes for either cleavage or repression of translation. The roles of miRNAs in lineage determination and proliferation as well as the location of several miRNA genes at sites of translocation breakpoints or deletions has led to the speculation that miRNAs could be important factors in the development or maintenance of the neoplastic state. Here we show that the highly malignant human brain tumor, glioblastoma, strongly over-expresses a specific miRNA, miR-21. Our studies show markedly elevated miR-21 levels in human glioblastoma tumor tissues, early-passage glioblastoma cultures, and in six established glioblastoma cell lines (A172, U87, U373, LN229, LN428, and LN308) compared with nonneoplastic fetal and adult brain tissues and compared with cultured nonneoplastic glial cells. Knockdown of miR-21 in cultured glioblastoma cells triggers activation of caspases and leads to increased apoptotic cell death. Our data suggest that aberrantly expressed miR-21 may contribute to the malignant phenotype by blocking expression of critical apoptosis-related genes.

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Cite This Study

Chan et al. (2005) studied this question.

synapsesocial.com/papers/6a0cd541c6fb28010734cc72https://doi.org/10.1158/0008-5472.can-05-0137
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