Stepler sandbox STAT3: Difference between revisions
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== DNA-Protein Interactions == | == DNA-Protein Interactions == | ||
The <scene name='71/714950/Stat3_dimer_and_dna/1'>STAT3 protein dimer interacts with DNA</scene> by "clamping" around it. <scene name='71/714950/Dna-binding_domain/4'>STAT3 residues bind to DNA</scene> by interacting with the major groove of it. STAT3 (along with other STAT family members) bind to specific DNA sequences. <ref>PMID:11050435</ref> STAT3 has a binding domain with sequences like <scene name='71/714950/Dna-binding_domain_dna_portion/1'>TTN(5-6)AA</scene>. <scene name='71/714950/Dna-binding_domain/3'>This stretch</scene> is then what interacts with the STAT3 protein. As shown in the scene, the DNA is bound by the protein in its major groove. This | The <scene name='71/714950/Stat3_dimer_and_dna/1'>STAT3 protein dimer interacts with DNA</scene> by "clamping" around it. <scene name='71/714950/Dna-binding_domain/4'>STAT3 residues bind to DNA</scene> by interacting with the major groove of it. STAT3 (along with other STAT family members) bind to specific DNA sequences. <ref>PMID:11050435</ref> STAT3 has a binding domain with sequences like <scene name='71/714950/Dna-binding_domain_dna_portion/1'>TTN(5-6)AA</scene>. <scene name='71/714950/Dna-binding_domain/3'>This stretch</scene> is then what interacts with the STAT3 protein. As shown in the scene, the DNA is bound by the protein in its major groove. Positively charged glutamines and lysines interact with the negatively charged phosphates of the DNA. This is what allows to the protein to bind in the major groove. | ||
</StructureSection> | </StructureSection> | ||
== References == | == References == | ||
<references/> | <references/> | ||
Latest revision as of 12:52, 18 December 2015
STAT3
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