| Literature DB >> 25705550 |
Thao Nguyen1, Dwayaja Nadkarni1, Shilpa Dutta2, Su Xu1, Sanghun Kim1, Srinivasan Murugesan1, Sadanandan Velu3.
Abstract
Pyrroloquinone ring systems are important structural units present in many biologically active molecules including a number of marine alkaloids. For example, they are found in a series of marine metabolites, such as tsitsikammamines, zyzzyanones, wakayin, and terreusinone. Several of these alkaloids have exhibited antimicrobial, antimalarial, antifungal, antitumor, and photoprotecting activities. Synthesis of pyrroloquinone unit is the key step in the synthesis of many of these important organic molecules. Here, we present a ceric (IV) ammonium nitrate (CAN) mediated oxidative free radical cyclization reaction of 1,3-dicarbonyl compounds with aminoquinones as a facile methodology for making various substituted pyrroloquinones. 1,3-dicarbonyl compounds used in this study are ethyl acetoacetate, acetylacetone, benzoyl acetone, and N,N-dimethyl acetoacetamide. The aminoquinones used in this study are 2-(benzylamino)naphthalene-1,4-dione and 6-(benzylamino)-1-tosyl-1H-indole-4,7-dione. The yields of the synthesized pyrroloquinones ranged from 23-91%.Entities:
Year: 2013 PMID: 25705550 PMCID: PMC4332705 DOI: 10.1155/2013/262580
Source DB: PubMed Journal: J Chem ISSN: 2090-9071
Figure 1Selected natural products containing pyrroloquinone units.
General scheme for the oxidative free radical cyclization.
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|---|---|---|---|---|
| Compd no. | R | X | Y | Z |
| Benzyl | CH3 | OCH2CH3 | ||
| 4-Nitrobenzyl | CH3 | OCH2CH3 | ||
| 4-Methoxybenzyl | CH3 | OCH2CH3 | ||
| Benzyl | CH3 | CH3 | ||
| 4-Nitrobenzyl | CH3 | CH3 | ||
| 4-Methoxybenzyl | CH3 | CH3 | ||
| Benzyl | CH3 | C6H5 | ||
| 4-Nitrobenzyl | CH3 | C6H5 | ||
| 4-Methoxybenzyl | CH3 | C6H5 | ||
| Benzyl | CH3 | N(CH3)2 | ||
| 4-Nitrobenzyl | CH3 | N(CH3)2 | ||
| 4-Methoxybenzyl | CH3 | N(CH3)2 | ||
| Benzyl | CH3 | OCH2CH3 | ||
| 4-Nitrobenzyl | CH3 | OCH2CH3 | ||
| 4-Methoxybenzyl | CH3 | OCH2CH3 | ||
| Benzyl | CH3 | CH3 | ||
| 4-Nitrobenzyl | CH3 | CH3 | ||
| 4-Methoxybenzyl | CH3 | CH3 | ||
| Benzyl | CH3 | C6H5 | ||
| 4-Nitrobenzyl | CH3 | C6H5 | ||
| 4-Methoxybenzyl | CH3 | C6H5 | ||
| Benzyl | CH3 | N(CH3)2 | ||
| 4-Nitrobenzyl | CH3 | N(CH3)2 | ||
| 4-Methoxybenzyl | CH3 | N(CH3)2 | ||
Scheme 1Synthesis of 2-benzylaminonaphthalene-1,4-diones.
Scheme 2Synthesis of 6-(benzylamino)-1-tosyl-1H-indole-4,7-quinones.
Figure 4CAN-mediated oxidative free radical cyclization reaction of benzylamino quinones yielding substituted N-benzyl pyrroloquinones. aisolated yields; *EtOH/CH2Cl2 mixture was used instead of MeOH/CH2Cl2 to avoid transesterification; †triple volume of solvents and heating was used to dissolve starting materials.
Figure 2Two possible regioisomers of compound 4g.
Figure 3NOESY spectrum of compound 4g.