Andorfer Mary C, Park Hyun June, Vergara-Coll Jaylie, Lewis Jared C
Department of Chemistry, University of Chicago, Chicago, IL 60637.
Chem Sci. 2016 Jun 1;7(6):3720-3729. doi: 10.1039/C5SC04680G. Epub 2016 Feb 19.
RebH variants capable of chlorinating substituted indoles ortho-, meta-, and para- to the indole nitrogen were evolved by directly screening for altered selectivity on deuterium-substituted probe substrates using mass spectrometry. This systematic approach allowed for rapid accumulation of beneficial mutations using simple adaptive walks and should prove generally useful for altering and optimizing the selectivity of C-H functionalization catalysts. Analysis of the beneficial mutations showed that structure-guided selection of active site residues for targeted mutagenesis can be complicated either by activity/selectivity tradeoffs that reduce the possibility of detecting such mutations or by epistatic effects that actually eliminate the benefits of a mutation in certain contexts. As a corollary to this finding, the precise manner in which the beneficial mutations identified led to the observed changes in RebH selectivity is not clear. Docking simulations suggest that tryptamine binds to these variants as tryptophan does to native halogenases, but structural studies will be required to confirm these models and shed light on how particular mutations impact tryptamine binding. Similar directed evolution efforts on other enzymes or artificial metalloenzymes could enable a wide range of C-H functionalization reactions.
通过使用质谱直接筛选氘代探针底物上改变的选择性,进化出了能够对吲哚氮的邻位、间位和对位取代吲哚进行氯化的RebH变体。这种系统方法允许使用简单的适应性随机游走快速积累有益突变,并且应该证明对于改变和优化C-H官能化催化剂的选择性普遍有用。对有益突变的分析表明,通过降低检测此类突变可能性的活性/选择性权衡或通过在某些情况下实际消除突变益处的上位效应,针对诱变的活性位点残基的结构导向选择可能会变得复杂。作为这一发现的必然结果,所鉴定的有益突变导致RebH选择性观察到变化的确切方式尚不清楚。对接模拟表明,色胺与这些变体的结合方式与色氨酸与天然卤化酶的结合方式相同,但需要进行结构研究来证实这些模型,并阐明特定突变如何影响色胺结合。对其他酶或人工金属酶进行类似的定向进化努力可以实现广泛的C-H官能化反应。