Intramolecular Lithiation‐Borylation for the Stereoselective Synthesis of Cyclopentyl and Cyclobutyl Bis‐Boronic Esters

C Christopher J. Cope (School of Chemistry University of Bristol, Cantock's Close BS8 1TS Bristol UK) M Margherita Zanini (School of Chemistry University of Bristol, Cantock's Close BS8 1TS Bristol UK) M Malcolm R. P. George (School of Chemistry University of Bristol Cantock's Close Bristol BS8 1TS UK) D Daniel Otero (School of Chemistry University of Bristol, Cantock's Close BS8 1TS Bristol UK) J Jana Sendra (School of Chemistry University of Bristol, Cantock's Close BS8 1TS Bristol UK) A Adam Noble J Julien Lefranc (Biopharma | Global Research & Development Merck KGaA Frankfurter Str. 250 64293 Darmstadt Germany) R Raphaël Robiette (Institute of Condensed Matter and Nanosciences UCLouvain Louvain‐La‐Neuve Belgium) V Varinder K. Aggarwal

Abstract

Abstract Saturated carbocycles are common motifs in natural products and pharmaceuticals, and so methods for their construction, particularly with high diastereo‐ and enantiocontrol, are of high importance. Lithiation‐borylation has emerged as powerful methodology for the stereocontrolled construction of acyclic carbon chains but has not previously been used for the stereocontrolled synthesis of carbocycles. Herein, we report that benzylic diethylcarbamates with a tethered vicinal bis‐boronic ester moiety can be deprotonated with lithium amide bases, resulting in cyclization and 1,2‐metallate rearrangement to give carbocycles. This intramolecular lithiation‐borylation reaction is completely regioselective and, rather than being stereospecific like the acyclic variants, it is diastereoconvergent. Stereochemistry of the boronic ester is retained but the benzylic stereocenter undergoes epimerization, furnishing carbocycles with high diastereo‐ and enantiocontrol from easily accessible precursors. Site‐selective transformations of the bis‐boronic ester products are also demonstrated.

Article Details

Volume / Issue Vol. 64, Issue 38
Published September 15, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (9)

C

Christopher J. Cope

School of Chemistry University of Bristol, Cantock's Close BS8 1TS Bristol UK

M

Margherita Zanini

School of Chemistry University of Bristol, Cantock's Close BS8 1TS Bristol UK

M

Malcolm R. P. George

School of Chemistry University of Bristol Cantock's Close Bristol BS8 1TS UK

D

Daniel Otero

School of Chemistry University of Bristol, Cantock's Close BS8 1TS Bristol UK

J

Jana Sendra

School of Chemistry University of Bristol, Cantock's Close BS8 1TS Bristol UK

A

Adam Noble

J

Julien Lefranc

Biopharma | Global Research & Development Merck KGaA Frankfurter Str. 250 64293 Darmstadt Germany

R

Raphaël Robiette

Institute of Condensed Matter and Nanosciences UCLouvain Louvain‐La‐Neuve Belgium

V

Varinder K. Aggarwal