Synthetic studies on the marine natural product halichondrins

Синтетические исследования морских природных продуктов — галихондринов
Hyeong-Wook Choi, Damtew Demeke, Fu‐An Kang, Yasuhiro Kishi, Katsumasa Nakajima, Paweł Nowak, Z. Wan, Chengyan Xie
2003-01-01

Asymmetric Ni/Cr-mediated reactionsCr-mediated coupling reactionsE7389Halichondrin BRegiospecific stereoselective SN2' process
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.
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.

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

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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Hyeong-Wook Choi
Damtew Demeke
Fu‐An Kang
Yasuhiro Kishi
Katsumasa Nakajima
Paweł Nowak
Z. Wan
Chengyan Xie
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