Biosynthesis of 4-Acyl-5-aminoimidazole Alkaloids Featuring a New Friedel–Crafts Acyltransferase

Journal of the American Chemical Society
2023.0

Abstract

Friedel-Crafts acylation (FCA) is a highly beneficial approach in organic chemistry for creating the important C-C bonds that are necessary for building intricate frameworks between aromatic substrates and an acyl group. However, there are few reports about enzyme catalyzed FCA reactions. In this study, 4-acyl-5-aminoimidazole alkaloids (AAIAs), streptimidazoles A-C (1-3), and the enantiopure (+)-nocarimidazole C (4) as well as their ribosides, streptimidazolesides A-D (5-8), were identified from the fermentation broth of Streptomyces sp. OUCMDZ-944 or heterologous S. coelicolor M1154 mutant. The biosynthetic gene cluster (smz) was identified, and the biosynthetic pathway of AAIAs was elucidated for the first time. In vivo and in vitro studies proved the catalytic activity of the four essential genes smzB, -C, -E, and -F for AAIAs biosynthesis and clarified the biosynthetic process of the alkaloids. The ligase SmzE activates fatty acyl groups and connects them to the acyl carrier protein (ACP) holo-SmzF. Then, the acyl group is transferred onto the key residue Cys49 of SmzB, a new Friedel-Crafts acyltransferase (FCase). Subsequently, the FCA reaction between the acyl groups and 5-aminoimidazole ribonucleotide (AIR) occurs to generate the key intermediate AAIA-nucleotides catalyzed by SmzB. Finally, the hydrolase SmzC catalyzes the N-glycosidic bond cleavage of the intermediates to form AAIAs. Structural simulation, molecular modeling, and mutational analysis of SmzB showed that Tyr26, Cys49, and Tyr93 are the key catalytic residues in the C-C bond formation of the acyl chain of AAIAs, providing mechanistic insights into the enzymatic FCA reaction. © 2023 American Chemical Society.

Knowledge Graph

Similar Paper

Biosynthesis of 4-Acyl-5-aminoimidazole Alkaloids Featuring a New Friedel–Crafts Acyltransferase
Journal of the American Chemical Society 2023.0
Fungal P450 Deconstructs the 2,5-Diazabicyclo[2.2.2]octane Ring En Route to the Complete Biosynthesis of 21R-Citrinadin A
Journal of the American Chemical Society 2023.0
An Enzyme-Mediated Aza-Michael Addition Is Involved in the Biosynthesis of an Imidazoyl Hybrid Product of Conidiogenone B
Organic Letters 2021.0
Biosynthesis of Strained Amino Acids by a PLP‐Dependent Enzyme through Cryptic Halogenation
Angewandte Chemie International Edition 2024.0
Deciphering and reprogramming the cyclization regioselectivity in bifurcation of indole alkaloid biosynthesis
Chemical Science 2022.0
Biosynthesis of the Immunosuppressant (−)-FR901483
Journal of the American Chemical Society 2021.0
Application of a Newly Identified and Characterized 18- <i>O</i> -Acyltransferase in Chemoenzymatic Synthesis of Selected Natural and Nonnatural Bioactive Derivatives of Phoslactomycins
Applied and Environmental Microbiology 2009.0
An Unprecedented Cyclization Mechanism in the Biosynthesis of Carbazole Alkaloids in <i>Streptomyces</i>
Angewandte Chemie International Edition 2019.0
An Unprecedented Cyclization Mechanism in the Biosynthesis of Carbazole Alkaloids in <i>Streptomyces</i>
Angewandte Chemie International Edition 2019.0
Biosynthesis of 3-methoxy-5-methyl naphthoic acid and its incorporation into the antitumor antibiotic azinomycin B
Molecular BioSystems 2010.0