Literature DB >> 16441059

Isolation and structural modification of 7-deoxynarciclasine and 7-deoxy-trans-dihydronarciclasine.

George R Pettit1, Stephen A Eastham, Noeleen Melody, Brian Orr, Delbert L Herald, Jane McGregor, John C Knight, Dennis L Doubek, George R Pettit1, Lynnette C Garner, Joy A Bell.   

Abstract

As an extension of structure-activity relationship studies of pancratistatin (1), various techniques were first evaluated for separating the mixtures of 7-deoxynarciclasine (2b) and 7-deoxy-trans-dihydronarciclasine (3a) isolated from Hymenocallis littoralis. An efficient solution for that otherwise difficult separation then allowed the lactam carbonyl group of protected (4c and 5c) alcohols 2b and 3a to be reduced employing lithium aluminum hydride. Cleavage (TBAF followed by H2SO4) of the silyl ester/acetonide protected 6a gave amine 8. X-ray crystal structure determinations were employed to confirm the structures of 3,4-acetonide-5-aza-6-deoxynarciclasine (6b), 5-aza-6-deoxynarciclasine (8a), and 5-aza-6-deoxy-trans-dihydronarciclasine (9a, 9b). Against the murine P388 lymphocytic leukemia and a panel of human cancer cell lines, the parent natural products, 7-deoxynarciclasine (2b) and 7-deoxy-trans-dihydronarciclasine (3a), were found to generally be more cancer cell growth inhibitory (GI50 0.1 to <0.01 microg/mL) than the compounds with structural modifications such as amine 8 by a factor of 10 or more. The trans ring juncture of isocarbostyril 3a proved to be an important modification of narciclasine (2a) for improving cancer cell growth inhibition in this series.

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Year:  2006        PMID: 16441059     DOI: 10.1021/np058068l

Source DB:  PubMed          Journal:  J Nat Prod        ISSN: 0163-3864            Impact factor:   4.050


  9 in total

Review 1.  Chemistry, biology, and medicinal potential of narciclasine and its congeners.

Authors:  Alexander Kornienko; Antonio Evidente
Journal:  Chem Rev       Date:  2008-05-20       Impact factor: 60.622

2.  A boron-based synthesis of the natural product (+)-trans-dihydrolycoricidine.

Authors:  Sarah L Poe; James P Morken
Journal:  Angew Chem Int Ed Engl       Date:  2011-03-31       Impact factor: 15.336

3.  Synthesis and biological evaluation of unnatural derivatives of narciclasine: 7-aza-nornarciclasine and its N-oxide.

Authors:  Sergey Vshyvenko; Mary Rose Reisenauer; Snezna Rogelj; Tomas Hudlicky
Journal:  Bioorg Med Chem Lett       Date:  2014-07-19       Impact factor: 2.823

4.  Amaryllidaceae isocarbostyril alkaloids and their derivatives as promising antitumor agents.

Authors:  Laurent Ingrassia; Florence Lefranc; Véronique Mathieu; Francis Darro; Robert Kiss
Journal:  Transl Oncol       Date:  2008-03       Impact factor: 4.243

5.  Synthesis of structurally simplified analogues of pancratistatin: truncation of the cyclitol ring.

Authors:  Madhuri Manpadi; Artem S Kireev; Igor V Magedov; Jeff Altig; Paul Tongwa; Mikhail Yu Antipin; Antonio Evidente; Willem A L van Otterlo; Alexander Kornienko
Journal:  J Org Chem       Date:  2009-09-18       Impact factor: 4.354

6.  Antineoplastic agents. 454. Synthesis of the strong cancer cell growth inhibitors trans-dihydronarciclasine and 7-deoxy-trans-dihydronarciclasine (1a).

Authors:  George R Pettit; Sylvie Ducki; Stephen A Eastham; Noeleen Melody
Journal:  J Nat Prod       Date:  2009-07       Impact factor: 4.050

7.  Potential anti-proliferative effects of chemical constituents and hemisynthetic derivatives from Scadoxus pseudocaulus (Amarillydaceae).

Authors:  Annie Laure Ngankeu Pagning; Jean-de-Dieu Tamokou; Bushra Taj Muhammad; David Ngnokam; Leon AzefackTapondjou; Mohammad Shaiq Ali; Muhammad Waqar Hameed
Journal:  Afr Health Sci       Date:  2020-03       Impact factor: 0.927

8.  Selective cytotoxicity of pancratistatin-related natural Amaryllidaceae alkaloids: evaluation of the activity of two new compounds.

Authors:  Carly Griffin; Jerald Nair; James McNulty; Siyaram Pandey; Natasha Sharda; Divya Sood
Journal:  Cancer Cell Int       Date:  2007-06-05       Impact factor: 5.722

9.  Isoquinolone-4-Carboxylic Acids by Ammonia-Ugi-4CR and Copper-Catalyzed Domino Reaction.

Authors:  Qian Wang; Kumchok C Mgimpatsang; Xin Li; Alexander Dömling
Journal:  J Org Chem       Date:  2021-06-29       Impact factor: 4.354

  9 in total

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