Payne James T, Poor Catherine B, Lewis Jared C
Department of Chemistry, University of Chicago, 5735 S. Ellis Ave., Chicago, IL 60637 (USA).
Angew Chem Int Ed Engl. 2015 Mar 27;54(14):4226-30. doi: 10.1002/anie.201411901. Epub 2015 Feb 9.
We recently characterized the substrate scope of wild-type RebH and proceeded to evolve variants of this enzyme with improved stability for biocatalysis. The substrate scopes of both RebH and the stabilized variants, however, are limited primarily to compounds similar in size to tryptophan. A substrate walking approach was used to further evolve RebH variants with expanded substrate scope. Two particularly notable variants were identified: 3-SS, which provides high conversion of tricyclic tryptoline derivatives; and 4-V, which accepts a broad range of large indoles and carbazoles. This constitutes the first reported use of directed evolution to enable the functionalization of substrates not accepted by wild-type RebH and demonstrates the utility of RebH variants for the site-selective halogenation of biologically active compounds.
我们最近对野生型RebH的底物范围进行了表征,并着手进化该酶的变体,以提高其用于生物催化的稳定性。然而,RebH和稳定变体的底物范围主要限于与色氨酸大小相似的化合物。采用底物步移法进一步进化具有扩大底物范围的RebH变体。鉴定出两个特别值得注意的变体:3-SS,它能高效转化三环色醇衍生物;以及4-V,它能接受多种大的吲哚和咔唑。这是首次报道使用定向进化使野生型RebH不接受的底物实现功能化,并证明了RebH变体在生物活性化合物的位点选择性卤化中的实用性。