The remote-oxyfunctionalization of unactivated carbons in (5β)-3-oxobile acids by 2,6-dichloropyridine N-oxide catalyzed by ruthenium–porphyrin and HBr: a direct lactonization at C-20

Remote-oxyfunctionalization induced by 2,6-dichloropyridine N-oxide (DCP N-oxide) as an oxygen donor and a (5,10,15,20-tetramesitylporphyrinate) ruthenium(II) carbonyl complex (Ru-porphyrin) and HBr as catalysts was examined for a series of methyl ester-peracetylated derivatives of (5beta)-3-oxobile...

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Published inOrganic & biomolecular chemistry Vol. 2; no. 7; pp. 1013 - 1018
Main Authors Ogawa, Shoujiro, Iida, Takashi, Goto, Takaaki, Mano, Nariyasu, Goto, Junichi, Nambara, Toshio
Format Journal Article
LanguageEnglish
Published CAMBRIDGE Royal Soc Chemistry 07.04.2004
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Abstract Remote-oxyfunctionalization induced by 2,6-dichloropyridine N-oxide (DCP N-oxide) as an oxygen donor and a (5,10,15,20-tetramesitylporphyrinate) ruthenium(II) carbonyl complex (Ru-porphyrin) and HBr as catalysts was examined for a series of methyl ester-peracetylated derivatives of (5beta)-3-oxobile acids. Using the DCP-N-oxide/Ru-porphyrin/HBr system, 5beta-hydroxylation predominated for the substrates having a 12-acetoxyl substituent due to steric hindrance, but the presence of a 7-acetoxyl substituent decreased the reactivity of the 5beta-position allowing for the competitive (20S)-20-oxyfunctionalization, subject to electronic constraints. A variety of novel 5beta-hydroxylation and (20S)-24,20-gamma-lactonization products, as well as their double-oxyfunctionalization and dehydration products, were obtained in one-step. The alkaline hydrolysis of the gamma-lactones gave the corresponding stereoselective (20S)-20-hydroxy- carboxylic acids.
AbstractList Remote-oxyfunctionalization induced by 2,6-dichloropyridine N-oxide (DCP N-oxide) as an oxygen donor and a (5,10,15,20-tetramesitylporphyrinate) ruthenium(II) carbonyl complex (Ru-porphyrin) and HBr as catalysts was examined for a series of methyl ester-peracetylated derivatives of (5 beta)-3-oxobile acids. Using the DCP-N-oxide/Ru-porphyrin/HBr system, 5 beta-hydroxylation predominated for the substrates having a 12-acetoxyl substituent due to steric hindrance, but the presence of a 7-acetoxyl substituent decreased the reactivity of the 5 beta-position allowing for the competitive (20S)-20-oxyfunctionalization, subject to electronic constraints. A variety of novel 5 beta-hydroxylation and (20S)-24,20-gamma-lactonization products, as well as their double-oxyfunctionalization and dehydration products, were obtained in one-step. The alkaline hydrolysis of the gamma-lactones gave the corresponding stereoselective (20S)-20-hydroxy-carboxylic acids.
Remote-oxyfunctionalization induced by 2,6-dichloropyridine N-oxide (DCP N-oxide) as an oxygen donor and a (5,10,15,20-tetramesitylporphyrinate) ruthenium(II) carbonyl complex (Ru-porphyrin) and HBr as catalysts was examined for a series of methyl ester-peracetylated derivatives of (5beta)-3-oxobile acids. Using the DCP-N-oxide/Ru-porphyrin/HBr system, 5beta-hydroxylation predominated for the substrates having a 12-acetoxyl substituent due to steric hindrance, but the presence of a 7-acetoxyl substituent decreased the reactivity of the 5beta-position allowing for the competitive (20S)-20-oxyfunctionalization, subject to electronic constraints. A variety of novel 5beta-hydroxylation and (20S)-24,20-gamma-lactonization products, as well as their double-oxyfunctionalization and dehydration products, were obtained in one-step. The alkaline hydrolysis of the gamma-lactones gave the corresponding stereoselective (20S)-20-hydroxy- carboxylic acids.
Remote-oxyfunctionalization induced by 2,6-dichloropyridine N-oxide (DCP N-oxide) as an oxygen donor and a (5,10,15,20-tetramesitylporphyrinate) ruthenium(II) carbonyl complex (Ru-porphyrin) and HBr as catalysts was examined for a series of methyl ester-peracetylated derivatives of (5 beta)-3-oxobile acids. Using the DCP-N-oxide/Ru-porphyrin/HBr system, 5 beta-hydroxylation predominated for the substrates having a 12-acetoxyl substituent due to steric hindrance, but the presence of a 7-acetoxyl substituent decreased the reactivity of the 5 beta-position allowing for the competitive (20S)-20-oxyfunctionalization, subject to electronic constraints. A variety of novel 5 beta-hydroxylation and (20S)-24,20-gamma-lactonization products, as well as their double-oxyfunctionalization and dehydration products, were obtained in one-step. The alkaline hydrolysis of the gamma-lactones gave the corresponding stereoselective (20S)-20-hydroxy-carboxylic acids.Remote-oxyfunctionalization induced by 2,6-dichloropyridine N-oxide (DCP N-oxide) as an oxygen donor and a (5,10,15,20-tetramesitylporphyrinate) ruthenium(II) carbonyl complex (Ru-porphyrin) and HBr as catalysts was examined for a series of methyl ester-peracetylated derivatives of (5 beta)-3-oxobile acids. Using the DCP-N-oxide/Ru-porphyrin/HBr system, 5 beta-hydroxylation predominated for the substrates having a 12-acetoxyl substituent due to steric hindrance, but the presence of a 7-acetoxyl substituent decreased the reactivity of the 5 beta-position allowing for the competitive (20S)-20-oxyfunctionalization, subject to electronic constraints. A variety of novel 5 beta-hydroxylation and (20S)-24,20-gamma-lactonization products, as well as their double-oxyfunctionalization and dehydration products, were obtained in one-step. The alkaline hydrolysis of the gamma-lactones gave the corresponding stereoselective (20S)-20-hydroxy-carboxylic acids.
Author Ogawa, Shoujiro
Mano, Nariyasu
Goto, Junichi
Goto, Takaaki
Iida, Takashi
Nambara, Toshio
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  doi: 10.3998/ark.5550190.0004.817
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Snippet Remote-oxyfunctionalization induced by 2,6-dichloropyridine N-oxide (DCP N-oxide) as an oxygen donor and a (5,10,15,20-tetramesitylporphyrinate) ruthenium(II)...
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SubjectTerms Chemistry
Chemistry, Organic
Physical Sciences
Science & Technology
Title The remote-oxyfunctionalization of unactivated carbons in (5β)-3-oxobile acids by 2,6-dichloropyridine N-oxide catalyzed by ruthenium–porphyrin and HBr: a direct lactonization at C-20
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https://www.ncbi.nlm.nih.gov/pubmed/15034624
https://www.proquest.com/docview/71764002
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