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      Computational redesign of protein-protein interaction specificity.

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          Abstract

          We developed a 'computational second-site suppressor' strategy to redesign specificity at a protein-protein interface and applied it to create new specifically interacting DNase-inhibitor protein pairs. We demonstrate that the designed switch in specificity holds in in vitro binding and functional assays. We also show that the designed interfaces are specific in the natural functional context in living cells, and present the first high-resolution X-ray crystallographic analysis of a computer-redesigned functional protein-protein interface with altered specificity. The approach should be applicable to the design of interacting protein pairs with novel specificities for delineating and re-engineering protein interaction networks in living cells.

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          Author and article information

          Journal
          Nat Struct Mol Biol
          Nature structural & molecular biology
          Springer Science and Business Media LLC
          1545-9993
          1545-9985
          Apr 2004
          : 11
          : 4
          Affiliations
          [1 ] Howard Hughes Medical Institute & Department of Biochemistry, Box 357350, University of Washington, Seattle, Washington 98195-7350, USA.
          Article
          nsmb749
          10.1038/nsmb749
          15034550
          4dc761e0-df2e-4e62-9a40-6488738fc41b
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