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December 19, 2014Science273 citations

A designed supramolecular protein assembly with in vivo enzymatic activity

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WSWoon Ju SongFTF. Akif Tezcan

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Abstract

The generation of new enzymatic activities has mainly relied on repurposing the interiors of preexisting protein folds because of the challenge in designing functional, three-dimensional protein structures from first principles. Here we report an artificial metallo-β-lactamase, constructed via the self-assembly of a structurally and functionally unrelated, monomeric redox protein into a tetrameric assembly that possesses catalytic zinc sites in its interfaces. The designed metallo-β-lactamase is functional in the Escherichia coli periplasm and enables the bacteria to survive treatment with ampicillin. In vivo screening of libraries has yielded a variant that displays a catalytic proficiency (k(cat)/K(m))/k(uncat) for ampicillin hydrolysis of 2.3 × 10(6) and features the emergence of a highly mobile loop near the active site, a key component of natural β-lactamases to enable substrate interactions.

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Song et al. (2014) studied this question.

synapsesocial.com/papers/6a1c45de412da96b219cee8bhttps://doi.org/10.1126/science.1259680
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