Journal of Medicinal Chemistry 2006-02-23

Total synthesis and biological evaluation of 22-hydroxyacuminatine.

Xiangshu Xiao, Smitha Antony, Yves Pommier, Mark Cushman

Index: J. Med. Chem. 49(4) , 1408-12, (2006)

Full Text: HTML

Abstract

A total synthesis of 22-hydroxyacuminatine, a cytotoxic alkaloid isolated from Camptotheca acuminata, is reported. The key step in the synthesis involves the reaction of 2,3-dihydro-1H-pyrrolo[3,4-b]quinoline with a brominated phthalide to generate a substituted pentacyclic 12H-5,11a-diazadibenzo[b,h]fluoren-11-one intermediate. Despite its structural resemblance to camptothecin and luotonin A, a biological evaluation of 22-hydroxyacuminatine in a topoisomerase I-deficient cell line P388/CPT45 has confirmed that the observed cytotoxicity is not due to topoisomerase I inhibition, even though 22-hydroxyacuminatine has a hydroxyl group that can theoretically hydrogen bond to Asp533. This result is consistent with the hypothesis that pi-pi stacking is more important than hydrogen-bonding interactions in determining topoisomerase I inhibitor binding in the ternary cleavage complex.


Related Compounds

Related Articles:

Walphos versus Biferrocene-Based Walphos Analogues in the Asymmetric Hydrogenation of Alkenes and Ketones.

2014-05-01

[Organometallics 33(8) , 1945-1952, (2014)]

Bis-(2,5-diphenylphospholanes) with sp2 carbon linkers: synthesis and application in asymmetric hydrogenation.

2008-02-01

[J. Org. Chem. 73(3) , 775-84, (2008)]

Antifungal activity of cinnamaldehyde and eugenol congeners against wood-rot fungi.

2008-07-01

[Bioresour. Technol. 99(11) , 5145-9, (2008)]

More Articles...