4.8 Article

De novo computational design of retro-aldol enzymes

Journal

SCIENCE
Volume 319, Issue 5868, Pages 1387-1391

Publisher

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/science.1152692

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Funding

  1. Howard Hughes Medical Institute Funding Source: Medline
  2. NCI NIH HHS [R01 CA097328] Funding Source: Medline
  3. NIGMS NIH HHS [R01 GM049857] Funding Source: Medline

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The creation of enzymes capable of catalyzing any desired chemical reaction is a grand challenge for computational protein design. Using new algorithms that rely on hashing techniques to construct active sites for multistep reactions, we designed retro- aldolases that use four different catalytic motifs to catalyze the breaking of a carbon- carbon bond in a nonnatural substrate. Of the 72 designs that were experimentally characterized, 32, spanning a range of protein folds, had detectable retro-aldolase activity. Designs that used an explicit water molecule to mediate proton shuffling were significantly more successful, with rate accelerations of up to four orders of magnitude and multiple turnovers, than those involving charged side- chain networks. The atomic accuracy of the design process was confirmed by the x- ray crystal structure of active designs embedded in two protein scaffolds, both of which were nearly superimposable on the design model.

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