| Literature DB >> 29619169 |
R A Aycock1, D B Vogt1, N T Jui1.
Abstract
A robust system for the preparation of β-heteroaryl α-amino acid derivatives has been developed using photoredox catalysis. This system operates via regiospecific activation of halogenated pyridines (or other heterocycles) and conjugate addition to dehydroalanine derivatives to deliver a wide range of unnatural amino acids. This process was conducted with good efficiency on large scale, the application of these conditions to amino ketone synthesis is shown, and a simple protocol is given for the preparation of enantioenriched amino acid synthesis, from a number of radical precursors.Entities:
Year: 2017 PMID: 29619169 PMCID: PMC5863445 DOI: 10.1039/c7sc03612d
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Fig. 1Impact of pyridine incorporation into amino acids and peptide drugs.
Fig. 2A proposed mechanism of heteroaryl radical conjugate addition to dehydroalanine.
Optimal conditions for pyridyl radical addition to a dehydroalanine substrate
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| Entry | Deviation from optimal conditions | Yield of 1 |
| 1 | None | 98% |
| 2 | Without Hantzsch ester | 0% |
| 3 | Without light | 0% |
| 4 | Without catalyst | 0% |
| 5 | Ru(bpy)3Cl2 as catalyst | 58% |
| 6 | Without H2O | 14% |
| 7 | DMF : H2O (5 : 1) as solvent | 35% |
| 8 | EtOH : H2O (5 : 1) as solvent | 71% |
| 9 | Bourbon as solvent (open to air) | 93% |
Conditions: 2-bromo-5-hydroxypyridine (0.2 mmol), dehydroalanine (0.4 mmol), Ir(ppy)2dtbbpy·PF6 (1 mol%), Hantzsch ester (0.3 mmol), H2O (0.33 mL), DMSO (1.66 mL), blue LED, 23 °C, 16 h.
Yield determined by NMR.
Catalytic amino acid synthesis: scope of the halogenated heteroarene
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Conditions: halogenated heteroarene (1.0 mmol), dehydroalanine (2.0 mmol), Ir(ppy)2dtbbpy·PF6 (1.0 mol%), Hantzsch ester (HEH, 1.3–1.5 mmol), H2O (1.7 mL), DMSO (8.3 mL), blue LED, 23 °C, 16 h, isolated yields shown.
Radical conjugate addition: scope of the amino-substituted alkene coupling partner
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Conditions as in Table 2, diastereomeric ratio (dr) determined by 1H NMR.
Diastereoselective RCA to Karady–Beckwith Alkene
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Conditions: halogenated heteroarene (1.0 equiv.), dehydroalanine (2.0 equiv.), Ir(ppy)2dtbbpy·PF6 (1.0 mol%), Hantzsch ester (HEH, 1.3 equiv.), DMSO/H2O (5 : 1, 0.1 M), blue LED, 23 °C, 16 h, isolated yields shown.
The syn isomer was observed with >20 : 1 selectivity in all cases.
Enantiomeric excess (% ee) determined by chiral HPLC.
Alkene 32 used as limiting reagent.