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STAT proteins: From normal control of cellular events to tumorigenesis

Journal of Cellular Physiology · 2003 · Vol. 197(2) · pp. 157–168
Valentina CalòManuela MigliavaccaViviana BazanMarcella MacalusoM BuscemiNicola GebbiaAntonio Russo

Abstract

Signal transducers and activators of transcription (STAT) proteins comprise a family of transcription factors latent in the cytoplasm that participate in normal cellular events, such as differentiation, proliferation, cell survival, apoptosis, and angiogenesis following cytokine, growth factor, and hormone signaling. STATs are activated by tyrosine phosphorylation, which is normally a transient and tightly regulates process. Nevertheless, several constitutively activated STATs have been observed in a wide number of human cancer cell lines and primary tumors, including blood malignancies and solid neoplasias. STATs can be divided into two groups according to their specific functions. One is made up of STAT2, STAT4, and STAT6, which are activated by a small number of cytokines and play a distinct role in the development of T-cells and in IFNgamma signaling. The other group includes STAT1, STAT3, and STAT5, activated in different tissues by means of a series of ligands and involved in IFN signaling, development of the mammary gland, response to GH, and embriogenesis. This latter group of STATS plays an important role in controlling cell-cycle progression and apoptosis and thus contributes to oncogenesis. Although an increased expression of STAT1 has been observed in many human neoplasias, this molecule can be considered a potential tumor suppressor, since it plays an important role in growth arrest and in promoting apoptosis. On the other hand, STAT3 and 5 are considered as oncogenes, since they bring about the activation of cyclin D1, c-Myc, and bcl-xl expression, and are involved in promoting cell-cycle progression, cellular transformation, and in preventing apoptosis.

Cytokine Signaling Pathways and InteractionsCancer Mechanisms and TherapyProtein Tyrosine PhosphatasesSTAT2STAT5BiologySTAT1STAT4STAT3STAT proteinCell biologyTranscription factorCarcinogenesis

MeSH terms

AnimalsCell Transformation, NeoplasticDNA-Binding ProteinsEukaryotic CellsHumansNeoplasmsTranscription FactorsSignal TransductionTrans-ActivatorsSTAT1 Transcription Factor
Citations
604
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19.42
field-weighted impact
References
120
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100%
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References
STATs: transcriptional control and biological impact
Nature Reviews Molecular Cell Biology · 2002 · 3,165 citations
The Stat family in cytokine signaling
Current Opinion in Cell Biology · 2001 · 720 citations
Serine phosphorylation of STATs
Oncogene · 2000 · 887 citations
STATs in oncogenesis
Oncogene · 2000 · 1,728 citations
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