Synthetic studies on the marine natural product halichondrins
Синтетические исследования морских природных продуктов — галихондринов
2003-01-01
SCID: 54.1/fgjc4ca7
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Asymmetric Ni/Cr-mediated reactionsCr-mediated coupling reactionsE7389Halichondrin BRegiospecific stereoselective SN2' process
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Abstract (AI)
Abstract In connection with the de elopment of a practical synthesis of the right half, and its analog E7389, of halichondrin B, an efficient and scalable synthesis of the two major building blocks is reported. In addition, a new synthesis of the C20–C26 segment via a regiospecific and stereoselecti e SN2' process is presented. A sulfonamide class of ligands is shown to be effective for asymmetric Ni/Cr-mediated reactions under both stoichiometric and catalytic conditions, and the X-ray structure reveals this class of ligands to be tridentate. On the basis of three X-ray structures, a possible mechanism is suggested for this process. Stable and crystalline Cr(III)/sulfonamide complexes are shown to be effective for catalytic Cr-mediated coupling reactions of allyl, alkenyl, and alkyl halides with aldehydes, and some examples for application of the stoichiometric and catalytic asymmetric processes are presented.
Key Findings
1
A new route to the C20–C26 segment uses a regiospecific and stereoselective SN2′ process.
2
An efficient, scalable synthesis was developed for two major building blocks of halichondrin B’s right half and its analog E7389.
3
Stable crystalline Cr(III)/sulfonamide complexes catalyze coupling reactions of allyl, alkenyl, and alkyl halides with aldehydes.
4
Sulfonamide ligands enable asymmetric Ni/Cr-mediated reactions under both stoichiometric and catalytic conditions.
5
X-ray analysis shows that the sulfonamide ligands are tridentate, supporting a proposed mechanism based on three crystallographic structures.
Research Object
Synthetic routes and Ni/Cr-mediated coupling systems for the halichondrin B right-half and its E7389 analog, including their C20–C26 segment and key building blocks
Research Subject
Scalable synthesis efficiency, stereoselective SN2′ construction, ligand coordination, proposed reaction mechanism, and asymmetric catalytic coupling performance
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2003-01-01
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