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Bioinspired Brønsted Acid-Promoted Regioselective Tryptophan Isoprenylations

[Image: see text] Tryptophan-containing isoprenoid indole alkaloid natural products are well known for their intricate structural architectures and significant biological activities. Nature employs dimethylallyl tryptophan synthases (DMATSs) or aromatic indole prenyltransferases (iPTs) to catalyze r...

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Autores principales: Khopade, Tushar M., Ajayan, Kalyani, Joshi, Swapnil S., Lane, Amy L., Viswanathan, Rajesh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8153798/
https://www.ncbi.nlm.nih.gov/pubmed/34056238
http://dx.doi.org/10.1021/acsomega.1c00515
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author Khopade, Tushar M.
Ajayan, Kalyani
Joshi, Swapnil S.
Lane, Amy L.
Viswanathan, Rajesh
author_facet Khopade, Tushar M.
Ajayan, Kalyani
Joshi, Swapnil S.
Lane, Amy L.
Viswanathan, Rajesh
author_sort Khopade, Tushar M.
collection PubMed
description [Image: see text] Tryptophan-containing isoprenoid indole alkaloid natural products are well known for their intricate structural architectures and significant biological activities. Nature employs dimethylallyl tryptophan synthases (DMATSs) or aromatic indole prenyltransferases (iPTs) to catalyze regio- and stereoselective prenylation of l-Trp. Regioselective synthetic routes that isoprenylate cyclo-Trp-Trp in a 2,5-diketopiperazine (DKP) core, in a desymmetrizing manner, are nonexistent and are highly desirable. Herein, we present an elaborate report on Brønsted acid-promoted regioselective tryptophan isoprenylation strategy, applicable to both the monomeric amino acid and its dimeric l-Trp DKP. This report outlines a method that regio- and stereoselectively increases sp(3) centers of a privileged bioactive core. We report on conditions involving screening of Brønsted acids, their conjugate base as salt, solvent, temperature, and various substrates with diverse side chains. Furthermore, we extensively delineate effects on regio- and stereoselection of isoprenylation and their stereochemical confirmation via NMR experiments. Regioselectively, the C3-position undergoes normal-isoprenylation or benzylation and forms exo-ring-fused pyrroloindolines selectively. Through appropriate prenyl group migrations, we report access to the bioactive tryprostatin alkaloids, and by C3-normal-farnesylation, we access anticancer drimentines as direct targets of this method. The optimized strategy affords iso-tryprostatin B-type products and predrimentine C with 58 and 55% yields, respectively. The current work has several similarities to biosynthesis, such as—reactions can be performed on unprotected substrates, conditions that enable Brønsted acid promotion, and they are easy to perform under ambient conditions, without the need for stoichiometric levels of any transition metal or expensive ligands.
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spelling pubmed-81537982021-05-27 Bioinspired Brønsted Acid-Promoted Regioselective Tryptophan Isoprenylations Khopade, Tushar M. Ajayan, Kalyani Joshi, Swapnil S. Lane, Amy L. Viswanathan, Rajesh ACS Omega [Image: see text] Tryptophan-containing isoprenoid indole alkaloid natural products are well known for their intricate structural architectures and significant biological activities. Nature employs dimethylallyl tryptophan synthases (DMATSs) or aromatic indole prenyltransferases (iPTs) to catalyze regio- and stereoselective prenylation of l-Trp. Regioselective synthetic routes that isoprenylate cyclo-Trp-Trp in a 2,5-diketopiperazine (DKP) core, in a desymmetrizing manner, are nonexistent and are highly desirable. Herein, we present an elaborate report on Brønsted acid-promoted regioselective tryptophan isoprenylation strategy, applicable to both the monomeric amino acid and its dimeric l-Trp DKP. This report outlines a method that regio- and stereoselectively increases sp(3) centers of a privileged bioactive core. We report on conditions involving screening of Brønsted acids, their conjugate base as salt, solvent, temperature, and various substrates with diverse side chains. Furthermore, we extensively delineate effects on regio- and stereoselection of isoprenylation and their stereochemical confirmation via NMR experiments. Regioselectively, the C3-position undergoes normal-isoprenylation or benzylation and forms exo-ring-fused pyrroloindolines selectively. Through appropriate prenyl group migrations, we report access to the bioactive tryprostatin alkaloids, and by C3-normal-farnesylation, we access anticancer drimentines as direct targets of this method. The optimized strategy affords iso-tryprostatin B-type products and predrimentine C with 58 and 55% yields, respectively. The current work has several similarities to biosynthesis, such as—reactions can be performed on unprotected substrates, conditions that enable Brønsted acid promotion, and they are easy to perform under ambient conditions, without the need for stoichiometric levels of any transition metal or expensive ligands. American Chemical Society 2021-04-12 /pmc/articles/PMC8153798/ /pubmed/34056238 http://dx.doi.org/10.1021/acsomega.1c00515 Text en © 2021 The Authors. Published byAmerican Chemical Society Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Khopade, Tushar M.
Ajayan, Kalyani
Joshi, Swapnil S.
Lane, Amy L.
Viswanathan, Rajesh
Bioinspired Brønsted Acid-Promoted Regioselective Tryptophan Isoprenylations
title Bioinspired Brønsted Acid-Promoted Regioselective Tryptophan Isoprenylations
title_full Bioinspired Brønsted Acid-Promoted Regioselective Tryptophan Isoprenylations
title_fullStr Bioinspired Brønsted Acid-Promoted Regioselective Tryptophan Isoprenylations
title_full_unstemmed Bioinspired Brønsted Acid-Promoted Regioselective Tryptophan Isoprenylations
title_short Bioinspired Brønsted Acid-Promoted Regioselective Tryptophan Isoprenylations
title_sort bioinspired brønsted acid-promoted regioselective tryptophan isoprenylations
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8153798/
https://www.ncbi.nlm.nih.gov/pubmed/34056238
http://dx.doi.org/10.1021/acsomega.1c00515
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