The anti-parallel dimer binding interface in STAT3 transcription factor is required for the inactivation of cytokine-mediated signal transduction

Author(s):  
Priyanka Rajeev Menon ◽  
Asmma Doudin ◽  
Anke Gregus ◽  
Oliver Wirths ◽  
Julia Staab ◽  
...  
Cytokine ◽  
2009 ◽  
Vol 48 (1-2) ◽  
pp. 127
Author(s):  
Velasco Cimica ◽  
Janaki Iyer ◽  
Nancy C. Reich

Science ◽  
1995 ◽  
Vol 267 (5196) ◽  
pp. 389-393 ◽  
Author(s):  
S. Gupta ◽  
D. Campbell ◽  
B. Derijard ◽  
R. Davis

2004 ◽  
Vol 3 (6) ◽  
pp. 1544-1556 ◽  
Author(s):  
Jade Mei-Yeh Lu ◽  
Robert J. Deschenes ◽  
Jan S. Fassler

ABSTRACT Yeast Sln1p is an osmotic stress sensor with histidine kinase activity. Modulation of Sln1 kinase activity in response to changes in the osmotic environment regulates the activity of the osmotic response mitogen-activated protein kinase pathway and the activity of the Skn7p transcription factor, both important for adaptation to changing osmotic stress conditions. Many aspects of Sln1 function, such as how kinase activity is regulated to allow a rapid response to the continually changing osmotic environment, are not understood. To gain insight into Sln1p function, we conducted a two-hybrid screen to identify interactors. Mog1p, a protein that interacts with the yeast Ran1 homolog, Gsp1p, was identified in this screen. The interaction with Mog1p was characterized in vitro, and its importance was assessed in vivo. mog1 mutants exhibit defects in SLN1-SKN7 signal transduction and mislocalization of the Skn7p transcription factor. The requirement for Mog1p in normal localization of Skn7p to the nucleus does not fully account for the mog1-related defects in SLN1-SKN7 signal transduction, raising the possibility that Mog1p may play a role in Skn7 binding and activation of osmotic response genes.


2018 ◽  
Vol 19 (6) ◽  
pp. 1608 ◽  
Author(s):  
David Lee ◽  
Rachel O’Keefe ◽  
Patrick Ha ◽  
Jennifer Grandis ◽  
Daniel Johnson

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