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ONCOGENIC ROLE OF NFIA-NF kappa B IN GLIOMA [Meeting Abstract]

Song, Hae-Ri; Hoxha, Edlira; Cho, Hannah
ISI:000415152500132
ISSN: 1523-5866
CID: 2802492

NOVEL ONCOGENIC ROLE FOR NFIA IN GLIOMA [Meeting Abstract]

Hoxha, Edlira; Andreas, Kloetgen; Song, Hae-Ri
ISI:000402766800016
ISSN: 1523-5866
CID: 2591422

A novel NFIA-NFkappaB feed-forward loop contributes to glioblastoma cell survival

Lee, JunSung; Hoxha, Edlira; Song, Hae-Ri
Background.: The nuclear factor I-A (NFIA) transcription factor promotes glioma growth and inhibits apoptosis in glioblastoma (GBM) cells. Here we report that the NFIA pro-survival effect in GBM is mediated in part via a novel NFIA-nuclear factor-kappaB (NFkappaB) p65 feed-forward loop. Methods.: We examined effects of gain- and loss-of-function manipulations of NFIA and NFkappaB p65 on each other's transcription, cell growth, apoptosis and sensitivity to chemotherapy in patient-derived GBM cells and established GBM cell lines. Results.: NFIA enhanced apoptosis evasion by activating NFkappaB p65 and its downstream anti-apoptotic factors tumor necrosis factor receptor-associated factor 1 (TRAF1) and cellular inhibitor of apoptosis proteins (cIAPs). Induction of NFkappaB by NFIA was required to protect cells from apoptosis, and inhibition of NFkappaB effectively reversed the NFIA anti-apoptotic effect. Conversely, NFIA knockdown decreased expression of NFkappaB and anti-apoptotic genes TRAF1 and cIAPs, and increased baseline apoptosis. NFIA positively regulated NFkappaB transcription and NFkappaB protein level. Interestingly, NFkappaB also activated the NFIA promoter and increased NFIA level, and knockdown of NFIA was sufficient to attenuate the NFkappaB pro-survival effect, suggesting a reciprocal regulation between NFIA and NFkappaB in governing GBM cell survival. Supporting this, NFIA and NFkappaB expression levels were highly correlated in human GBM and patient-derived GBM cells. Conclusions.: These data define a previously unknown NFIA-NFkappaB feed-forward regulation that may contribute to GBM cell survival.
PMCID:5473440
PMID: 27994064
ISSN: 1523-5866
CID: 2543392

A NOVEL ANTI-APOPTOTIC ROLE OF PON2 IN GLIOMA [Meeting Abstract]

Hoxha, Edlira; Song, Hae-Ri
ISI:000398604101097
ISSN: 1523-5866
CID: 2545062

A novel tumor-promoting role for nuclear factor IA in glioblastomas is mediated through negative regulation of p53, p21, and PAI1

Lee, Jun Sung; Xiao, Jiping; Patel, Parita; Schade, Jake; Wang, Jinhua; Deneen, Benjamin; Erdreich-Epstein, Anat; Song, Hae-Ri
Background Nuclear factor IA (NFIA), a transcription factor and essential regulator in embryonic glial development, is highly expressed in human glioblastoma (GBM) compared with normal brain, but its contribution to GBM and cancer pathogenesis is unknown. Here we demonstrate a novel role for NFIA in promoting growth and migration of GBM and establish the molecular mechanisms mediating these functions. Methods To determine the role of NFIA in glioma, we examined the effects of NFIA in growth, proliferation, apoptosis, and migration. We used gain-of-function (overexpression) and loss-of-function (shRNA knockdown) of NFIA in primary patient-derived GBM cells and established glioma cell lines in culture and in intracranial xenografts in mouse brains. Results Knockdown of native NFIA blocked tumor growth and induced cell death and apoptosis. Complementing this, NFIA overexpression accelerated growth, proliferation, and migration of GBM in cell culture and in mouse brains. These NFIA tumor-promoting effects were mediated via transcriptional repression of p53, p21, and plasminogen activator inhibitor 1 (PAI1) through specific NFIA-recognition sequences in their promoters. Importantly, the effects of NFIA on proliferation and apoptosis were independent of TP53 mutation status, a finding especially relevant for GBM, in which TP53 is frequently mutated. Conclusion NFIA is a modulator of GBM growth and migration, and functions by distinct regulation of critical oncogenic pathways that govern the malignant behavior of GBM.
PMCID:3895381
PMID: 24305710
ISSN: 1522-8517
CID: 759682

Selective Lentiviral Gene Delivery to CD133-Expressing Human Glioblastoma Stem Cells

Bayin, N Sumru; Modrek, Aram S; Dietrich, August; Lebowitz, Jonathan; Abel, Tobias; Song, Hae-Ri; Schober, Markus; Zagzag, David; Buchholz, Christian J; Chao, Moses V; Placantonakis, Dimitris G
Glioblastoma multiforme (GBM) is a deadly primary brain malignancy. Glioblastoma stem cells (GSC), which have the ability to self-renew and differentiate into tumor lineages, are believed to cause tumor recurrence due to their resistance to current therapies. A subset of GSCs is marked by cell surface expression of CD133, a glycosylated pentaspan transmembrane protein. The study of CD133-expressing GSCs has been limited by the relative paucity of genetic tools that specifically target them. Here, we present CD133-LV, a lentiviral vector presenting a single chain antibody against CD133 on its envelope, as a vehicle for the selective transduction of CD133-expressing GSCs. We show that CD133-LV selectively transduces CD133+ human GSCs in dose-dependent manner and that transduced cells maintain their stem-like properties. The transduction efficiency of CD133-LV is reduced by an antibody that recognizes the same epitope on CD133 as the viral envelope and by shRNA-mediated knockdown of CD133. Conversely, the rate of transduction by CD133-LV is augmented by overexpression of CD133 in primary human GBM cultures. CD133-LV selectively transduces CD133-expressing cells in intracranial human GBM xenografts in NOD.SCID mice, but spares normal mouse brain tissue, neurons derived from human embryonic stem cells and primary human astrocytes. Our findings indicate that CD133-LV represents a novel tool for the selective genetic manipulation of CD133-expressing GSCs, and can be used to answer important questions about how these cells contribute to tumor biology and therapy resistance.
PMCID:4277468
PMID: 25541984
ISSN: 1932-6203
CID: 1419672

NON-UNIFORM NOTCH SIGNALING UNDERLIES HETEROGENEITY WITHIN THE GLIOBLASTOMA STEM CELL POPULATION [Meeting Abstract]

Bayin, NSumru; Si, Sheng; Modrek, Aram; Song, Hae-Ri; Zagzag, David; Dung Minh Hoang; Wadghiri, Youssef Z; Dolgalev, Igor; Baysan, Mehmet; Heguy, Adriana; Barcellos-Hoff, Mary Helen; Placantonakis, Dimitris
ISI:000350452200804
ISSN: 1523-5866
CID: 2340682

NUCLEAR FACTOR I A (NFIA) NEGATIVELY REGULATES p53, p21, AND PAI1 TOPROMOTE THE MALIGNANT BEHAVIOR OF GLIOBLASTOMAS [Meeting Abstract]

Lee, Jun Sung; Xiao, Jiping; Patel, Parita; Schade, Jake; Wang, Jinhua; Deneen, Benjamin; Erdreich-Epstein, Anat; Song, Hae-Ri
ISI:000327456200084
ISSN: 1522-8517
CID: 781422

A NOVEL ROLE FOR NFIA AS A CRITICAL REGULATOR OF NFKB IN GLIOMA GROWTH [Meeting Abstract]

Lee, Jun Sung; Erdreich-Epstein, Anat; Song, Hae-Ri
ISI:000310971300071
ISSN: 1522-8517
CID: 204922

A NOVEL GENE THERAPY APPROACH IN GLIOBLASTOMA THAT TARGETS TUMOR STEM CELLS [Meeting Abstract]

Bayin, Nermin S.; Dietrich, August; Abel, Tobias; Chao, Moses V.; Song, Hae-Ri; Buchholz, Christian J.; Placantonakis, Dimitris
ISI:000310971300587
ISSN: 1522-8517
CID: 205002