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  2. Histidine-Specific Peptide Modification via Visible-Light-Promoted C-H Alkylation

Histidine-Specific Peptide Modification via Visible-Light-Promoted C-H Alkylation

  • J Am Chem Soc. 2019 Nov 13;141(45):18230-18237. doi: 10.1021/jacs.9b09127.
Xiaoping Chen 1 Farong Ye 1 Xiaosheng Luo 1 Xueyi Liu 1 Jie Zhao 1 Siyao Wang 1 Qingqing Zhou 1 Gong Chen 2 Ping Wang 1
Affiliations

Affiliations

  • 1 Shanghai Key Laboratory for Molecular Engineering of Chiral Drugs, School of Chemistry and Chemical Engineering , Shanghai Jiao Tong University , 800 Dongchuan Road , Shanghai 200240 , China.
  • 2 State Key Laboratory and Institute of Elemento-Organic Chemistry, College of Chemistry , Nankai University , Tianjin 300071 , China.
Abstract

Histidine (His) carries a unique heteroaromatic imidazole side chain and plays irreplaceable functional roles in Peptides and proteins. Existing strategies for site-selective histidine modification predominantly rely on the N-substitution reactions of the moderately nucleophilic imidazole group, which inherently suffers from the interferences from lysine and cysteine residues. Chemoselective modification of histidine remains one of the most difficult challenges in peptide chemistry. Herein, we report peptide modification via radical-mediated chemoselective C-H alkylation of histidine using C4-alkyl-1,4-dihydropyridine (DHP) reagents under visible-light-promoted conditions. The method exploits the electrophilic reactivity of the imidazole ring via a Minisci-type reaction pathway. This method exhibits an exceptionally broad scope for both Peptides and DHP alkylation reagents. Its utility has been demonstrated in a series of important peptide drugs, complex Natural Products, and a small protein. Distinct from N-substitution reactions, the unsubstituted nitrogen groups of the modified imidazole ring are conserved in the C-H alkylated products.

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