P53: Difference between revisions

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[[Image:P53_surface_charge.png | left | 250 px | thumb]]The figure at the left shows the surface charge of the p53 DNA-binding domain )Charged: red - negative; blue - positive). It is rich in arginine amino acids that interact with DNA, and this causes its surface to be positively charged. This domain recognizes specific regulatory sites on the DNA. The flexible structure of p53 allows it to bind to many different variants of binding sites, allowing it to regulate transcription at many places in the genome.
[[Image:P53_surface_charge.png | left | 250 px | thumb]]The figure at the left shows the surface charge of the p53 DNA-binding domain )Charged: red - negative; blue - positive). It is rich in arginine amino acids that interact with DNA, and this causes its surface to be positively charged. This domain recognizes specific regulatory sites on the DNA. The flexible structure of p53 allows it to bind to many different variants of binding sites, allowing it to regulate transcription at many places in the genome.


<scene name='Sandbox/P53_dna_binding_domain/1'>Click Here to view a Three-dimensional Representation of the DNA-binding Domain Bound to DNA</scene>


There is a Zn-binding motif on p53. The p53 Zn atom is coordinated by residues
There is a Zn-binding motif on p53. The p53 Zn atom is coordinated by residues

Revision as of 15:57, 14 January 2017

Human p53 DNA-binding domain complex with DNA and Zn+2 ions (grey) (PDB Code 1tup)

Drag the structure with the mouse to rotate

3D structures of p53 (Updated on 14-January-2017)

Additional Resources


References