Ku protein
From Proteopedia
(Difference between revisions)
(→'''Structure of the Ku heterodimer bound to DNA''') |
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<scene name='56/567269/Ku70_subunit/3'>Ku70</scene> | <scene name='56/567269/Ku70_subunit/3'>Ku70</scene> | ||
| - | Consisting of three domains (<scene name='56/567269/Ku70_dimer/2'>α/β-Domain</scene>, <scene name='56/567269/Ku70_dimer/4'>β-barrel</scene>, <scene name='56/567269/Ku70_dimer/7'>C-terminal arm</scene>), the <scene name='56/567269/Ku70_subunit/3'>Ku70</scene> | + | Consisting of three domains (<scene name='56/567269/Ku70_dimer/2'>α/β-Domain</scene>, <scene name='56/567269/Ku70_dimer/4'>β-barrel</scene>, <scene name='56/567269/Ku70_dimer/7'>C-terminal arm</scene>), the <scene name='56/567269/Ku70_subunit/3'>Ku70</scene> dimerizes with the <scene name='56/567269/Ku80_subunit/3'>Ku80</scene> to form the protein. Unlike other DNA binding proteins, the Ku protein is asymmetrical from the differences between the Ku70 and Ku80 subunits. This asymmetry leads to different favorable locations for DNA based on major and minor grooves. The <scene name='56/567269/Ku70_subunit/3'>Ku70</scene> is angled closer to <scene name='56/567269/Bound_dna/3'>DNA</scene> at the double strand break, providing protectiion and interaction with its domains. In contrast, the <scene name='56/567269/Ku80_subunit/3'>Ku80</scene> associates with <scene name='56/567269/Bound_dna/3'>DNA</scene> away from the free end. Once a homodimer, the domain has diverged into two domains that are 15% similar in residues. |
<scene name='56/567269/Ku70_dimer/2'>α/β-Domain</scene> | <scene name='56/567269/Ku70_dimer/2'>α/β-Domain</scene> | ||
Revision as of 19:59, 3 November 2013
Structure of the Ku heterodimer bound to DNA
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References
- ↑ Walker JR, Corpina RA, Goldberg J. Structure of the Ku heterodimer bound to DNA and its implications for double-strand break repair. Nature. 2001 Aug 9;412(6847):607-14. PMID:11493912 doi:10.1038/35088000
- ↑ Walker JR, Corpina RA, Goldberg J. Structure of the Ku heterodimer bound to DNA and its implications for double-strand break repair. Nature. 2001 Aug 9;412(6847):607-14. PMID:11493912 doi:10.1038/35088000
