Stepler sandbox STAT3: Difference between revisions
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== Structure == | == Structure == | ||
The STAT3 protein is composed of several | The STAT3 protein is composed of several <scene name='71/714950/Stat3_helix_turn_helix/1'>Helix Turn Helix</scene> structures and its quaternary structure consists of two STAT3 proteins <scene name='71/714950/Stat3_dimer/1'>dimerized</scene> with themselves. <ref>PMID:9671298</ref> There is a <scene name='71/714950/Important_c-terminal_y_residue/1'>Y residue</scene> at the C-terminal that plays a large role in transcriptional activation during regulatory events. | ||
== Regulation == | == Regulation == | ||
STAT3 plays a large role in differential gene regulation. One way that STAT3 can regulate gene expression is through protein-protein interactions with other transcription factors. One major protein-protein interaction for STAT3 is the interaction with nF-κB p65. <ref>PMID:14978160</ref> <scene name='71/714950/Nf-kb_binding_domain/1'>The nF-κB p65 binding domain</scene> is characterized by the β-pleated sheet structures. Other protein transcription factors have been shown to interact with STAT3 in similar ways at different locations. STAT3 can also be regulated by phosphorylation. Phosphorylation of the transcription activating domain's Y residue can be used as a regulatory process. Alternatively, other sites can also be phosphorylated causing other regulatory pathways to occur, such as serine phosphorylation and oncogene activity from STAT3. <ref>PMID:22418867</ref> | STAT3 plays a large role in differential gene regulation. One way that STAT3 can regulate gene expression is through protein-protein interactions with other transcription factors. One major protein-protein interaction for STAT3 is the interaction with nF-κB p65. <ref>PMID:14978160</ref> <scene name='71/714950/Nf-kb_binding_domain/1'>The nF-κB p65 binding domain (yellow)</scene> is characterized by the β-pleated sheet structures. Other protein transcription factors have been shown to interact with STAT3 in similar ways at different locations. STAT3 can also be regulated by phosphorylation. There is a <scene name='71/714950/Important_c-terminal_y_residue/1'>Y residue</scene> at the C-terminal that plays a large role in transcriptional activation during regulatory events. Phosphorylation of the transcription activating domain's Y residue can be used as a regulatory process. Alternatively, other sites can also be phosphorylated causing other regulatory pathways to occur, such as serine phosphorylation and oncogene activity from STAT3. <ref>PMID:22418867</ref> | ||
== DNA-Protein Interactions == | == DNA-Protein Interactions == | ||
Revision as of 12:18, 18 December 2015
STAT3
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