Enantiospecific Formation of Trans 1,3-Disubstituted Tetrahydro-β-carbolines by the Pictet−Spengler Reaction and Conversion of Cis Diastereomers into Their Trans Counterparts by Scission of the C-1/N-2 Bond
- 1 January 1997
- journal article
- research article
- Published by American Chemical Society (ACS) in The Journal of Organic Chemistry
- Vol. 62 (1) , 44-61
- https://doi.org/10.1021/jo951170a
Abstract
The factors which effect the stereoselective formation of trans-1-alkyl-2-benzyl-3-(alkoxycarbonyl)-1,2,3,4-tetrahydro-β-carbolines and trans-3-(alkoxycarbonyl)-1-alkyl-2-(diphenylmethyl)-1,2,3,4-tetrahydro-β-carbolines by the Pictet−Spengler cyclization were examined by heating tryptophan derivatives with aldehydes of varied steric bulk under aprotic and acidic conditions, followed by determination of the ratio of cis to trans diastereomers so formed. The presence of a benzyl group at the Nb-nitrogen atom alters the diastereochemical outcome of this condensation to provide 100% trans stereoselectivity when the cyclization is carried out with cyclohexanecarboxaldehyde. Furthermore, when Nb-(diphenylmethyl)tryptophan isopropyl ester was condensed with aldehydes of any size, trans diastereomers are formed with 100% stereoselectively. The trans Nb-substituted diastereomers are thermodynamically more stable than their cis congeners as shown by equilibration experiments in TFA. Conversion of the cis diastereomers into the more stable trans diastereomers is believed to occur under acidic conditions by cleavage of the carbon (C-1)−nitrogen (N-2) bond with complete retention of configuration at the C-3 stereocenter. Evidence from deuterium exchange experiments as well as optical rotations support this model for epimerization. In addition, when cis diastereomer 66a was allowed to stir in CF3COOD, the trans isomer 66b was isolated in 90% yield, while treatment of cis 66a with CF3COOH/NaBH4 provided a mixture of the ring cleaved [scission across C(1)−N(2) bond] product 67 and the trans isomer 66b. Treatment of 66b (control experiment) with NaBH4/CF3COOH under the same conditions returned only starting trans 66b in excellent yield. The Pictet−Spengler reaction of substrates with sufficiently large substituents, followed by treatment with acid, permits the 100% enantiospecific formation of trans-1,3-disubstituted-1,2,3,4-tetrahydro-β-carbolines for alkaloid total synthesis.Keywords
This publication has 34 references indexed in Scilit:
- General approach for the synthesis of macroline/sarpagine alkaloids. The total synthesis of (+)-macrolineTetrahedron Letters, 1993
- General approach for the synthesis of ajmaline-related alkaloids. Enantiospecific total synthesis of (-)-suaveoline, (-)-raumacline, and (-)-Nb-methylraumaclineThe Journal of Organic Chemistry, 1993
- Enantiospecific total synthesis of the ajmaline related alkaloids (-)-suaveoline, (-)-raumacline, and (-)-Nb-methylraumaclineJournal of the American Chemical Society, 1992
- Stereospecificity in the Pictet-Spengler Reaction. Enantiospecific Synthesis of (6S,10S)-(-)-5-Methyl-9-oxo-12-benzyl-6,7,8,9,10,11-hexahydro-6,10-imino-5H-cyclooct[b]indole, a Template for Preparation of Macroline/Sarpagine AlkaloidsHETEROCYCLES, 1992
- General approach to the synthesis of macroline-related alkaloids. Stereospecific total synthesis of (-)-alstonerineJournal of the American Chemical Society, 1990
- Pictet-Spengler Reactions in Aprotic Media. Nb-Benzyl Promoted Retention of Optical Activity in the Synthesis of an Indole Substituted Azabicyclo[3.3.1]nonane, a Key Template for the Synthesis of Macroline AlkaloidsHETEROCYCLES, 1988
- Stereospecific synthesis of trans-1,3-disubstituted-1,2,3,4-tetrahydro-.beta.-carbolinesThe Journal of Organic Chemistry, 1981
- General method for the assignment of stereochemistry of 1,3-disubstituted 1,2,3,4-tetrahydro-.beta.-carbolines by carbon-13 spectroscopyJournal of the American Chemical Society, 1980
- Über die Synthese von CarbolinderivatenYAKUGAKU ZASSHI, 1928
- Über die Bildung von Isochinolin‐derivaten durch Einwirkung von Methylal auf Phenyl‐äthylamin, Phenyl‐alanin und TyrosinEuropean Journal of Inorganic Chemistry, 1911