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1.
Chemistry ; 29(13): e202203732, 2023 Mar 01.
Article in English | MEDLINE | ID: mdl-36478469

ABSTRACT

The use of benzylic and allylic alcohols in HFIP solvent together with Ti(Oi Pr)4 has been shown to trigger a highly stereoselective polyene cyclisation cascade. Three new carbon-carbon bonds are made during the process and complete stereocontrol of up to five new stereogenic centers is observed. The reaction is efficient, has high functional group tolerance and is atom-economic generating water as a stoichiometric by-product. A new polyene substrate-class is employed, and subsequent mechanistic studies indicate a stereoconvergent mechanism. The products of this reaction can be used to synthesize steroid-analogues in a single step.

2.
Chemistry ; 28(63): e202202464, 2022 Nov 11.
Article in English | MEDLINE | ID: mdl-35946550

ABSTRACT

In this work an approach for the synthesis of furanocembranoid natural products containing the C-7,8-diol moiety is disclosed. This culminated in the first total synthesis of the natural product molestin E, together with ent-sinulacembranolide A and ent-sinumaximol A as well as a thorough exploration of their chemistry. Late-stage ring-closure of the C-7,8-diols to the corresponding epoxides was also demonstrated. Key features of this synthetic strategy include a stereoselective Baylis-Hillman reaction, ring-closing metathesis and Shiina macrolactonisation. Chiral-pool materials were deployed to ensure the desired absolute stereochemistry which was confirmed by late-stage single crystal X-ray diffraction.


Subject(s)
Biological Products , Epoxy Compounds , Stereoisomerism , Crystallography, X-Ray , Biological Products/chemistry
3.
Chem Soc Rev ; 50(9): 5517-5563, 2021 May 07.
Article in English | MEDLINE | ID: mdl-33690769

ABSTRACT

The selective and efficient C-H methylation of sp2 and sp3 carbon centres has become a powerful transformation in the synthetic toolbox. Due to the potential for profound changes to physicochemical properties attributed to the installation of a "Magic Methyl" group at a strategic site in a lead compound, such techniques have become highly desirable in modern drug discovery and synthesis programmes. This review will cover the diverse techniques that have been employed to enable the selective installation of the C-Me bond in a wide range of chemical structures, from simple building blocks to complex drug-like architectures.


Subject(s)
Chemistry Techniques, Synthetic , Organic Chemicals/chemical synthesis , Methylation , Molecular Structure , Organic Chemicals/chemistry
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