Tom Sandbox: Difference between revisions

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===Binding with DNA===
===Binding with DNA===


The basic region binding domain of GCN4 inserts itself into the <scene name='Tom_Sandbox/Major_groove/1'>Major Groove</scene> of the DNA. This causes a shift in bothe the AP-1 and ATF/CREB binding sites of DNA<ref name="bind">PMID:15459288</ref>. This was determined by adding fluorophores to the end of U shaped DNA segments with the specific binding sites in the centers. The shift in their positioning showed the effect of bending on the DNA. In total, in the complex with GCN4-bZIP, the ATF/CREB site is bent by (25 ± 2)° and the AP-1 site by (20 ± 2)° toward the minor groove.<ref name="bind"/> AP-1 refers to a group of activator proteins that bind to the same 9 base pair semi-palindromic region for transcription activation. ATF/CREB refers to a fully palendromic region. The AP-1 site sequence is 5′-ATGACTCAT-3′, and the ATF/CREB site is 5′-ATGACGTCAT-3′<ref> Hockings, S. C.; Kahn, J. D.; Crothers, D. M. PNAS February 17, 1998 vol. 95 no. 4 1410-1415 </ref>.  
The basic region binding domain of GCN4 inserts itself into the <scene name='Tom_Sandbox/Major_groove/1'>Major Groove</scene> of the DNA. This causes a bend in both the AP-1 and ATF/CREB binding sites of DNA<ref name="bind">PMID:15459288</ref>. AP-1 refers to a group of activator proteins that bind to the same 9 base pair semi-palindromic region for transcription activation. ATF/CREB refers to a fully palendromic region. The AP-1 site sequence is 5′-ATGACTCAT-3′, and the ATF/CREB site is 5′-ATGACGTCAT-3′<ref> Hockings, S. C.; Kahn, J. D.; Crothers, D. M. PNAS February 17, 1998 vol. 95 no. 4 1410-1415 </ref>. The bending mechanism was determined by adding fluorophores to the ends of U shaped manufactured DNA segments with the specific binding sites AP-1 or ATF/CREB inserted into the center. The shift in the fluorophore positioning showed the effect of bending on the DNA due to GCN4 binding. In total, in the complex with GCN4-bZIP, the ATF/CREB site is bent by (25 ± 2)° and the AP-1 site by (20 ± 2)° toward the minor groove.<ref name="bind"/> This is thought to be the mechanism for inducing transcription.  


====Heptad Repeat====
====Heptad Repeat====
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'''Image 3: A schematic representation of the Leucine Zipper acting as nano-tweezers under different pH conditions<ref name="ph"/>.
'''Image 3: A schematic representation of the Leucine Zipper acting as nano-tweezers under different pH conditions<ref name="ph"/>.


==See Also==
==See Also==