| Literature DB >> 26225900 |
Daniel T Cohen1, Chi Zhang1, Bradley L Pentelute1, Stephen L Buchwald1.
Abstract
Herein we report an umpolung strategy for the bioconjugation of selenocysteine in unprotected peptides. This mild and operationally simple approach takes advantage of the electrophilic character of an oxidized selenocysteine (Se-S bond) to react with a nucleophilic arylboronic acid to provide the arylated selenocysteine within hours. This reaction is amenable to a wide range of boronic acids with different biorelevant functional groups and is unique to selenocysteine. Experimental evidence indicates that under oxidative conditions the arylated derivatives are more stable than the corresponding alkylated selenocysteine.Entities:
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Year: 2015 PMID: 26225900 PMCID: PMC4613869 DOI: 10.1021/jacs.5b05447
Source DB: PubMed Journal: J Am Chem Soc ISSN: 0002-7863 Impact factor: 15.419
Figure 1Bioconjugation of cysteine and selenocysteine.
Optimization of the Reaction Parametersa
| entry | Cu | ligand | % yield (% conversion) |
|---|---|---|---|
| 1 | CuSO4 | 79 (99) | |
| 2 | CuSO4 | 81 (99) | |
| 3 | CuSO4 | 66 (99) | |
| 4 | CuSO4 | 17 (91) | |
| 5 | CuSO4 | – | 5 (30) |
| 6 | CuCl2·2H2O | 78 (99) | |
| 7 | CuBr2 | 79 (99) | |
| 8 | Cu(OAc)2 | 78 (99) | |
| 9 | – | 0 (22) | |
| 10 | CuSO4 | 44 (72) | |
| 11 | CuSO4 | 7 (30) | |
| 12 | CuSO4 | NR | |
| 13 | CuSO4 | 5 (99) | |
| 14 | CuSO4 | 4 (99) | |
| 15 | CuSO4 | NR |
See the Supporting Information for details. Amino acids are shown in a one-letter code. NR = no reaction.
Yields were determined by integration of the total ion currents (TICs) from LC–MS analyses of the unpurified reaction mixtures.
Elimination and diselenide were the only observable products.
0.5 mM CuSO4, 0.5 mM L2, and 0.5 mM boronic acid were used.
0.25 mM CuSO4, 0.25 mM L2, and 0.25 mM boronic acid were used.
The Sec-TNP residue replaced with Ser.
The Sec-TNP residue was replaced with Cys.
The Sec-TNP residue was replaced with Cys-TNP.
The Sec-TNP residue was replaced with Met.
Substrate Scope of Arylated Selenocysteinea
See the Supporting Information for details. Amino acids are shown in a one-letter code. Yields were determined by integration of TICs from LC–MS analyses of the unpurified reaction mixtures (averages of two runs).
The reaction time was 2 h.
The reaction time was 1.5 h.
2 mM CuSO4, 2 mM L2, and 2 mM boronic acid were used.
2 mM CuSO4, 2 mM L2, 2 mM boronic acid, and 90:10 H2O/DMF for 3 h.
Figure 2Stability study of functionalized selenocysteine in peptides. Yields were determined by integration of total ion currents from LC–MS analyses of the unpurified reaction mixtures.