| Literature DB >> 31921767 |
Amandine L Flourat1,2, Aurélien A M Peru1, Arnaud Haudrechy2, Jean-Hugues Renault2, Florent Allais1.
Abstract
To investigate lignin degradation, scientists commonly use model compounds. Unfortunately, these models are most of the time simple β-O-4 dimers and do not sufficiently mimic the wide complexity of lignin structure (i.e., aliphatic side chains and robust C-C bonds). Herein, we present a methodology to access advanced lignin models through the first synthesis of two trimers of monolignol G-possessing side-chains and both robust β-5 bond and labile β-O-4 bond-via a chemo-enzymatic pathway. Key steps were (1) the C-C coupling via laccase-mediated oxidation, (2) the C-O coupling via a simple SN2 between a phenolate and a bromoketoester, and (3) a modified Upjohn dihydroxylation or a palladium-catalyzed hydrogenation. (β-5)-(β-O-4) dihydroxytrimer and dihydrotrimer of coniferyl alcohol (G) were obtained in good global yield, 9 and 20%, respectively, over nine steps starting from ferulic acid.Entities:
Keywords: C-C coupling; biocatalysis; coniferyl alcohol; laccase; lignin models; monolignol; total synthesis; trimers
Year: 2019 PMID: 31921767 PMCID: PMC6913187 DOI: 10.3389/fchem.2019.00842
Source DB: PubMed Journal: Front Chem ISSN: 2296-2646 Impact factor: 5.221
Scheme 1Retrosynthetic routes towards dihydroxy-(β-5)-(β-O-4) trimer and naturally occurring dihydro-(β-5)-(β-O-4) trimer of coniferyl alcohol G.
Scheme 2Synthesis of 1 from ferulic acid (2).
Scheme 3Synthesis of naturally occurring dihydrotrimer (β-5)-(β-O-4) (11).
Scheme 4Unsuccessful alternative pathway to 10.
Scheme 5Synthesis of naturally occurring (β-5)-(β-O-4) dihydroxytrimer (14).