Stat3 Activation by Src Induces Specific Gene Regulation and Is Required for Cell Transformation
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Publication date
1998-01-30
Authors
Turkson, James
Bowman, Tammy
Gracia, Roy
Caldenhoven, Eric
Groot, R.P. de
Jove, Richard
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Abstract
While signal transducers and activators of transcription (STATs) were originally discovered as intracellular
effectors of normal signaling by cytokines, increasing evidence also points to a role for STAT transcription
factors in oncogenesis. Previous studies have demonstrated that one STAT family member, Stat3, possesses
constitutively elevated tyrosine phosphorylation and DNA-binding activity in fibroblasts stably transformed by
the Src oncoprotein. To determine if this Stat3 activation by Src could induce Stat3-mediated gene expression,
luciferase reporter constructs based on synthetic and authentic promoters were transfected into NIH 3T3 cells.
Activation of endogenous cellular Stat3 by the Src oncoprotein induced gene expression through a Stat3-
specific binding element (TTCCCGAA) of the C-reactive protein gene promoter. A naturally occurring splice
variant of human Stat3 protein, Stat3b, with a deletion in the C-terminal transactivation domain abolished
this gene induction in a dominant negative manner. Expression of Stat3b did not have any effect on a reporter
construct based on the c-fos serum response element, which is not dependent on Stat3 signaling, indicating that
Stat3b does not nonspecifically inhibit other signaling pathways or Src function. Transfection of vectors
expressing Stat3b together with Src blocked cell transformation by Src as measured in a quantitative focus
formation assay using NIH 3T3 cells. By contrast, Stat3b had a much less pronounced effect on focus formation
induced by the Ras oncoprotein, which does not activate Stat3 signaling. In addition, three independent clones
of NIH 3T3 cells stably overexpressing Stat3b were generated and characterized, demonstrating that Stat3b
overexpression does not have a toxic effect on cell viability. These Stat3b-overexpressing clones were shown to
be deficient in Stat3-mediated signaling and refractory to Src-induced cell transformation. We conclude that
Stat3 activation by the Src oncoprotein leads to specific gene regulation and that Stat3 is one of the critical
signaling pathways involved in Src oncogenesis. Our findings provide evidence that oncogenesis-associated
activation of Stat3 signaling is part of the process of malignant transformation.