Park C, Campbell J L, Goddard W A
Materials and Molecular Simulation Center, Beckman Institute, Pasadena, CA.
Proc Natl Acad Sci U S A. 1993 Jun 1;90(11):4892-6. doi: 10.1073/pnas.90.11.4892.
Using protein stitchery with appropriate attachment of cysteines linking to either C or N termini of the basic region of the v-Jun leucine zipper gene-regulatory protein, we constructed three dimers--pCC, pCN, and pNN. All three bind specifically to the appropriately rearranged DNA recognition sites for v-Jun: ATGAcgTCAT, ATGAcgATGA, and TCATcgTCAT, respectively (Kd, approximately 4 nM at 4 degrees C). Results of DNase I footprinting provide strong support for bent recognition helices in leucine zipper protein-DNA complexes. Comparison of the results for pCC and pNN with those for pCN shows the design superiority of palindromic sequences for protein recognition.