In this report, the streptavidin-biotin technology was applied to enable organocatalytic aldol addition. By attaching pyrrolidine to the valeric motif of biotin and introducing it to streptavidin (Sav), a protein-based organocatalytic system was created, and the aldol addition of acetone with p-nitrobenzaldehyde was tested. The conversion of substrate to product can be as high as 93%. Although the observed enantioselectivity was only moderate (33:67 er), further protein engineering efforts can be included to improve the selectivity. These results have proven the concept that Sav can be used to host stereoselective aldol addition.

Streptavidin-hosted organocatalytic aldol addition / Santi, N.; Morrill, L. C.; Luk, L. Y. P.. - In: MOLECULES. - ISSN 1420-3049. - 25:10(2020), pp. 1-11. [10.3390/MOLECULES25102457]

Streptavidin-hosted organocatalytic aldol addition

Santi N.;
2020

Abstract

In this report, the streptavidin-biotin technology was applied to enable organocatalytic aldol addition. By attaching pyrrolidine to the valeric motif of biotin and introducing it to streptavidin (Sav), a protein-based organocatalytic system was created, and the aldol addition of acetone with p-nitrobenzaldehyde was tested. The conversion of substrate to product can be as high as 93%. Although the observed enantioselectivity was only moderate (33:67 er), further protein engineering efforts can be included to improve the selectivity. These results have proven the concept that Sav can be used to host stereoselective aldol addition.
2020
25
10
1
11
Streptavidin-hosted organocatalytic aldol addition / Santi, N.; Morrill, L. C.; Luk, L. Y. P.. - In: MOLECULES. - ISSN 1420-3049. - 25:10(2020), pp. 1-11. [10.3390/MOLECULES25102457]
Santi, N.; Morrill, L. C.; Luk, L. Y. P.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/1380752
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