palau-amine and octane

palau-amine has been researched along with octane* in 2 studies

Other Studies

2 other study(ies) available for palau-amine and octane

ArticleYear
Total synthesis of palau'amine.
    Nature communications, 2015, Nov-04, Volume: 6

    Palau'amine has received a great deal of attention in the past two decades as an attractive synthetic target by virtue of its intriguing molecular architecture and significant immunosuppressive activity. Here we report the total synthesis of palau'amine characterized by the construction of an ABDE tetracyclic ring core including a trans-bicylo[3.3.0]octane skeleton at a middle stage of total synthesis. The ABDE tetracyclic ring core is constructed by a cascade reaction of a cleavage of the N-N bond, including simultaneous formation of imine, the addition of amide anion to the resulting imine (D-ring formation) and the condensation of pyrrole with methyl ester (B-ring formation) in a single step. The synthetic palau'amine is confirmed to exhibit excellent immunosuppressive activity. The present synthetic route has the potential to help elucidate a pharmacophore as well as the mechanistic details of immunosuppressive activity.

    Topics: Bridged Bicyclo Compounds; Guanidines; Imines; Magnetic Resonance Spectroscopy; Octanes; Pyrroles; Spiro Compounds

2015
On the structure of palau'amine: evidence for the revised relative configuration from chemical synthesis.
    Journal of the American Chemical Society, 2007, Oct-24, Volume: 129, Issue:42

    Hexacyclic congeners 3 and 4 of palau'amine, which incorporate both guanidine functional groups and have the cis configuration of the azabicyclo[3.3.0]octane core, are prepared in 14 steps from cycloadduct 6. Synthetic access to these analogues allows the first direct comparison of NMR data for hexacyclic diguanidine structures having the originally proposed cis-azabicyclo[3.3.0]octane fragment with data for natural alkaloids of the palau'amine family. This comparison provides convincing evidence in favor of the recently proposed structural revision of these marine alkaloids, fully supporting the trans configuration of the central azabicyclo[3.3.0]octane ring system of palau'amine and congeners.

    Topics: Carbon; Chemistry, Organic; Dimerization; Guanidine; Guanidines; Magnetic Resonance Spectroscopy; Models, Chemical; Molecular Conformation; Molecular Structure; Octanes; Pyrroles; Spiro Compounds; Stereoisomerism; Temperature

2007