User:Wayne Decatur/Gal 4: Difference between revisions

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Gal4p is a transcriptional activator in ''Saccharomyces cerevisiae'' that regulates the expression of genes to coordinate the response to the carbon source galactose.  
Gal4p is a transcriptional activator in ''Saccharomyces cerevisiae'' that regulates the expression of genes to coordinate the response to the carbon source galactose.  
<StructureSection load='1d66' size='500' frame='true' side='right' caption='The N-terminal amino acids of Gal4p bound to DNA ([[1d66]])' scene='70/701975/1d66_firstglance/2' >
<StructureSection load='1d66' size='500' frame='true' side='right' caption='The N-terminal amino acids of Gal4p bound to DNA ([[1d66]])' scene='70/701975/1d66_firstglance/2' >
<!-- important to note you need to use 'side' in a StructureSEction instead of 'align'. If you leave 'align' it doesn't work.-->
<!-- important to note you need to use 'side' in a StructureSEction instead of 'align'. If you leave 'align' it doesn't work.-->
==Background==
==Background==
Gal4p is a transcriptional activator in ''Saccharomyces cerevisiae'' that regulates the expression of genes to coordinate the response to the carbon source galactose.
Gal4p is a transcriptional activator in ''Saccharomyces cerevisiae'' that regulates the expression of genes to coordinate the response to the carbon source galactose.
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The DNA binding domain <scene name='70/701975/1d66_firstglance_zn_binding/2'>uses six Cys residues to coordinate the binding of two ions of zinc (Zn(II))</scene>. (In the crystal structure [[1d66]], the zinc ions are actually represented by other members of the same group on the periodic table, the heavier cadmium ions.) The Zn-binding motif lets the structure accomplish more with fewer amino acids, the metals lending an "economy of structure", arranging two small helices to recognize a specific DNA site. <scene name='70/701975/1d66_base_conctacts/2'>Two lysines (17 and 18) make direct base contacts in the DNA major groove with the specified CGG triplets</scene>.<br>
The DNA binding domain <scene name='70/701975/1d66_firstglance_zn_binding/2'>uses six Cys residues to coordinate the binding of two ions of zinc (Zn(II))</scene>. (In the crystal structure [[1d66]], the zinc ions are actually represented by other members of the same group on the periodic table, the heavier cadmium ions.) The Zn-binding motif lets the structure accomplish more with fewer amino acids, the metals lending an "economy of structure", arranging two small helices to recognize a specific DNA site. <scene name='70/701975/1d66_base_conctacts/2'>Two lysines (17 and 18) make direct base contacts in the DNA major groove with the specified CGG triplets</scene>.<br>
{{Button Toggle NucleicDrumsColorSchemeWcartoon}} {{ColorKey Bases DNA}}
<jmol>
<jmolButton>
<script>select A,ADE,DA; color [x5050FF]; color cartoon [x5050FF]; select C, CYT,DC; color [xE00000]; color cartoon [xE00000]; select G,GUA,DG; color [x00C000]; color cartoon [x00C000]; select T,THY,DT; color [xE6E600]; color cartoon [xE6E600]; select U,URA; color [xCC9900]; color cartoon [xCC9900];</script>
<text>Color Structure by Nucleotide</text>
</jmolButton>
</jmol>
{{ColorKey Bases DNA}}


Despite only making base-specific contacts at the ends, <scene name='70/701975/Spacefill/1'>Ga14p is mostly in contact with the DNA for its entire span of the binding site.</scene>
Despite only making base-specific contacts at the ends, <scene name='70/701975/Spacefill/1'>Ga14p is mostly in contact with the DNA for its entire span of the binding site.</scene>

Latest revision as of 01:47, 17 May 2015

Gal4p is a transcriptional activator in Saccharomyces cerevisiae that regulates the expression of genes to coordinate the response to the carbon source galactose.

The N-terminal amino acids of Gal4p bound to DNA (1d66)

Drag the structure with the mouse to rotate

Reference

  1. Marmorstein R, Carey M, Ptashne M, Harrison SC. DNA recognition by GAL4: structure of a protein-DNA complex. Nature. 1992 Apr 2;356(6368):408-14. PMID:1557122 doi:https://dx.doi.org/10.1038/356408a0

Impetus

This page accompanies a hands-on workshop for ChIP-Seq being given by Wayne Decatur May 14th, 2015.

See Also

Proteopedia Page Contributors and Editors (what is this?)

Wayne Decatur