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Enzymatic Nitrogen Insertion into Unactivated C-H Bonds.

Publication ,  Journal Article
Athavale, SV; Gao, S; Das, A; Mallojjala, SC; Alfonzo, E; Long, Y; Hirschi, JS; Arnold, FH
Published in: Journal of the American Chemical Society
October 2022

Selective functionalization of aliphatic C-H bonds, ubiquitous in molecular structures, could allow ready access to diverse chemical products. While enzymatic oxygenation of C-H bonds is well established, the analogous enzymatic nitrogen functionalization is still unknown; nature is reliant on preoxidized compounds for nitrogen incorporation. Likewise, synthetic methods for selective nitrogen derivatization of unbiased C-H bonds remain elusive. In this work, new-to-nature heme-containing nitrene transferases were used as starting points for the directed evolution of enzymes to selectively aminate and amidate unactivated C(sp3)-H sites. The desymmetrization of methyl- and ethylcyclohexane with divergent site selectivity is offered as demonstration. The evolved enzymes in these lineages are highly promiscuous and show activity toward a wide array of substrates, providing a foundation for further evolution of nitrene transferase function. Computational studies and kinetic isotope effects (KIEs) are consistent with a stepwise radical pathway involving an irreversible, enantiodetermining hydrogen atom transfer (HAT), followed by a lower-barrier diastereoselectivity-determining radical rebound step. In-enzyme molecular dynamics (MD) simulations reveal a predominantly hydrophobic pocket with favorable dispersion interactions with the substrate. By offering a direct path from saturated precursors, these enzymes present a new biochemical logic for accessing nitrogen-containing compounds.

Duke Scholars

Published In

Journal of the American Chemical Society

DOI

EISSN

1520-5126

ISSN

0002-7863

Publication Date

October 2022

Volume

144

Issue

41

Start / End Page

19097 / 19105

Related Subject Headings

  • Transferases
  • Nitrogen
  • Hydrogen
  • Heme
  • General Chemistry
  • Catalysis
  • 40 Engineering
  • 34 Chemical sciences
  • 03 Chemical Sciences
 

Citation

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Athavale, S. V., Gao, S., Das, A., Mallojjala, S. C., Alfonzo, E., Long, Y., … Arnold, F. H. (2022). Enzymatic Nitrogen Insertion into Unactivated C-H Bonds. Journal of the American Chemical Society, 144(41), 19097–19105. https://doi.org/10.1021/jacs.2c08285
Athavale, Soumitra V., Shilong Gao, Anuvab Das, Sharath Chandra Mallojjala, Edwin Alfonzo, Yueming Long, Jennifer S. Hirschi, and Frances H. Arnold. “Enzymatic Nitrogen Insertion into Unactivated C-H Bonds.Journal of the American Chemical Society 144, no. 41 (October 2022): 19097–105. https://doi.org/10.1021/jacs.2c08285.
Athavale SV, Gao S, Das A, Mallojjala SC, Alfonzo E, Long Y, et al. Enzymatic Nitrogen Insertion into Unactivated C-H Bonds. Journal of the American Chemical Society. 2022 Oct;144(41):19097–105.
Athavale, Soumitra V., et al. “Enzymatic Nitrogen Insertion into Unactivated C-H Bonds.Journal of the American Chemical Society, vol. 144, no. 41, Oct. 2022, pp. 19097–105. Epmc, doi:10.1021/jacs.2c08285.
Athavale SV, Gao S, Das A, Mallojjala SC, Alfonzo E, Long Y, Hirschi JS, Arnold FH. Enzymatic Nitrogen Insertion into Unactivated C-H Bonds. Journal of the American Chemical Society. 2022 Oct;144(41):19097–19105.
Journal cover image

Published In

Journal of the American Chemical Society

DOI

EISSN

1520-5126

ISSN

0002-7863

Publication Date

October 2022

Volume

144

Issue

41

Start / End Page

19097 / 19105

Related Subject Headings

  • Transferases
  • Nitrogen
  • Hydrogen
  • Heme
  • General Chemistry
  • Catalysis
  • 40 Engineering
  • 34 Chemical sciences
  • 03 Chemical Sciences