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细胞色素 P450 酶包含 Ir(Me)-PIX 辅因子,实现了 C-H 键化学选择性胺化反应的催化作用。

Chemoselective, Enzymatic C-H Bond Amination Catalyzed by a Cytochrome P450 Containing an Ir(Me)-PIX Cofactor.

机构信息

Department of Chemistry, University of California , Berkeley, California 94720, United States.

Chemical Sciences Division, Lawrence Berkeley National Laboratory , 1 Cyclotron Road, Berkeley, California 94720, United States.

出版信息

J Am Chem Soc. 2017 Feb 8;139(5):1750-1753. doi: 10.1021/jacs.6b11410. Epub 2017 Jan 26.

DOI:10.1021/jacs.6b11410
PMID:28080030
Abstract

Cytochrome P450 enzymes have been engineered to catalyze abiological C-H bond amination reactions, but the yields of these reactions have been limited by low chemoselectivity for the amination of C-H bonds over competing reduction of the azide substrate to a sulfonamide. Here we report that P450s derived from a thermophilic organism and containing an iridium porphyrin cofactor (Ir(Me)-PIX) in place of the heme catalyze enantioselective intramolecular C-H bond amination reactions of sulfonyl azides. These reactions occur with chemoselectivity for insertion of the nitrene units into C-H bonds over reduction of the azides to the sulfonamides that is higher and with substrate scope that is broader than those of enzymes containing iron porphyrins. The products from C-H amination are formed in up to 98% yield and ∼300 TON. In one case, the enantiomeric excess reaches 95:5 er, and the reactions can occur with divergent site selectivity. The chemoselectivity for C-H bond amination is greater than 20:1 in all cases. Variants of the Ir(Me)-PIX CYP119 displaying these properties were identified rapidly by evaluating CYP119 mutants containing Ir(Me)-PIX in cell lysates, rather than as purified enzymes. This study sets the stage to discover suitable enzymes to catalyze challenging C-H amination reactions.

摘要

细胞色素 P450 酶已被设计用于催化非生物 C-H 键胺化反应,但这些反应的产率受到 C-H 键胺化的化学选择性低的限制,因为竞争还原叠氮底物为磺酰胺。在这里,我们报告说,源自嗜热生物体的 P450 并含有取代血红素的铱卟啉辅因子(Ir(Me)-PIX),可催化磺酰叠氮化物的 C-H 键内分子选择性胺化反应。这些反应的化学选择性高于将叠氮化物还原为磺酰胺,从而将氮烯单元插入 C-H 键中,而且底物范围比含有铁卟啉的酶更广泛。C-H 胺化的产物以高达 98%的产率和∼300 TON 形成。在一种情况下,对映体过量达到 95:5 er,并且可以发生不同位点的选择性反应。在所有情况下,C-H 键胺化的化学选择性均大于 20:1。通过评估细胞裂解物中含有 Ir(Me)-PIX 的 CYP119 突变体,而不是纯化酶,快速鉴定出具有这些特性的 Ir(Me)-PIX CYP119 变体。这项研究为发现合适的酶以催化具有挑战性的 C-H 胺化反应奠定了基础。

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