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The Chelate Effect Rationalizes Observed Rate Acceleration and Enantioselectivity in BINOL-Catalyzed Petasis Reactions.
Haeffner, Fredrik; Pickel, Thomas C; Hou, April; Walker, Donald G; Kiesman, William F; Shi, Xianglin.
Affiliation
  • Haeffner F; 1910 Genetics, 70 Fargo Street, Boston, Massachusetts, 02210, USA.
  • Pickel TC; Biogen, ASO Development, 900 Davis Drive, Morrisville, North Carolina, 27526, USA.
  • Hou A; Baystate Medical Center, Department of General Surgery, 759 Chestnut St, Springfield, Massachusetts, 01199, USA.
  • Walker DG; Biogen, 115 Broadway, Cambridge, Massachusetts, 02142, USA.
  • Kiesman WF; Alltrna, 325 Vassar Street, Cambridge, Massachusetts, 02139, USA.
  • Shi X; Leal Therapeutics, 17 Briden St., Worcester, Massachusetts, 01605, USA.
Chemistry ; 29(13): e202203331, 2023 Mar 01.
Article in En | MEDLINE | ID: mdl-36495400
ABSTRACT
Density functional theory (DFT) calculations afforded insight into the origin of the experimentally observed reaction rate acceleration (≥500 fold) and enantioselectivity (≥99 % ee) of 1,1'-bi-2-naphthol- (BINOL-) catalyzed three-component Petasis reactions . BINOL accelerates the rate determining step by forming a BIV chelate, which involves the loss of water from the hemiaminal moiety to generate an iminium intermediate. Subsequent vinyl group transfer from BIV to the iminium carbon affords the enantiomerically enriched product and a cyclic trigonal B(III)BINOL complex, which rapidly releases the BINOL allowing it to re-enter the catalytic cycle. In the transition state of the vinyl transfer step, C-H-O hydrogen bonding between the iminium C-H and O of (R)-BINOL directs the vinyl group addition to the Re-face of the iminium carbon. This mechanism explains both the rate acceleration and high enantioselectivity of the stereo determining step.
Key words

Full text: 1 Database: MEDLINE Language: En Year: 2023 Type: Article

Full text: 1 Database: MEDLINE Language: En Year: 2023 Type: Article