PLoS ONE · 2013 · 36 citations · 38 references
PathologyNormoxic Ml-1 CellsCancer BiologyTumor BiologyIntratumoral HypoxiaTranscriptional RegulationSignaling PathwayCell RegulationCancer Cell BiologyHypoxia-induced Factor-1αRadiation OncologyCell SignalingCancer ResearchMolecular SignalingCell BiologyThyroid Cancer CellsEndocrine-related CancerThyroid DiseaseTumor SuppressorThyroid HormoneMedicine
Sphingosine-1-phosphate (S1P) is a bioactive lipid, which regulates several cancer-related processes including migration and angiogenesis. We have previously shown S1P to induce migration of follicular ML-1 thyroid cancer cells. Hypoxia-induced factor-1 (HIF-1) is an oxygen-sensitive transcription factor, which adapts cells to hypoxic conditions through increased survival, motility and angiogenesis. Due to these properties and its increased expression in response to intratumoral hypoxia, HIF-1 is considered a significant regulator of tumor biology. We found S1P to increase expression of the regulatory HIF-1α subunit in normoxic ML-1 cells. S1P also increased HIF-1 activity and expression of HIF-1 target genes. Importantly, inhibition or knockdown of HIF-1α attenuated the S1P-induced migration of ML-1 cells. S1P-induced HIF-1α expression was mediated by S1P receptor 3 (S1P3), Gi proteins and their downstream effectors MEK, PI3K, mTOR and PKCβI. Half-life measurements with cycloheximide indicated that S1P treatment stabilized the HIF-1α protein. On the other hand, S1P activated translational regulators eIF-4E and p70S6K, which are known to control HIF-1α synthesis. In conclusion, we have identified S1P as a non-hypoxic regulator of HIF-1 activity in thyroid cancer cells, studied the signaling involved in S1P-induced HIF-1α expression and shown S1P-induced migration to be mediated by HIF-1.
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Mircea Ivan, Keiichi Kondo, Haifeng Yang et al. · Science · 2001 · 4.7K citations · Full text
Regulation of 4E-BP1 phosphorylation: a novel two-step mechanism
Anne‐Claude Gingras, Steven P. Gygi, Brian Raught et al. · Genes & Development · 1999 · 1.3K citations · Full text
Protein Function, Signal Transduction, Signaling Pathway +15