Chemical investigation of three Antarctic marine sponges [microform]
- Bib ID:
- 3417010
- Format:
- Book and Microform
- Author:
- Park, Young Chul
- Description:
- 217 p.
- Summary:
-
This thesis describes the chemical investigation of three marine sponges from Antarctica and the total syntheses of natural products erebusinone ( 12) and its derivative, erebusinonamine (52). Investigation of the yellow Antarctic marine sponge Isodictya setifera resulted in the isolation of two secondary metabolites, purine analog ( 32) and 3-hydroxykynurenine (24). Chemical investigation of Isodictya setifera led to the isolation of six secondary metabolites which included 5-methyl-2-deoxycytidine (25), uridine (28), 2-deoxycytidine (31), homarine (37), hydroxyquinoline (33), 3-hydroxykynurenine (24). The latter two compounds were found to be intermediates of tryptophan catabolism in crustaceans. From the Antarctic marine sponge Isodictya antarctica ceramide analog (39) was isolated and its chemical structure was assigned by a combination of spectroscopic and chemical analyses. Stereochemistry was determined by modified Mosher's method.
Erebusinone ( 12), a yellow pigment isolated from the Antarctic marine sponge Isodictya erinacea has been implicated in molt inhibition and mortality against the Antarctic crustacean amphipod, Orchomene plebs, possibly serving as a precursor of a xanthurenic acid analog.*Thought to act as a 3-hydroxykynurenine 24 mimic, erebusinone ( 12) may be involved in chemical defense. This appears to be the first example in the marine realm of an organism utilizing tryptophan catabolism to modulate molting as a defensive mechanism. To further investigate the bioactivity and ecological role of erebusinone (12), the synthesis of this pigment was carried out in an overall yield of 44% involving seven steps which were economical and convenient. Erebusinonamine (52) was also similarly synthesized in eight steps with an overall yield of 45%. *Please refer to dissertation for diagrams.
- Notes:
-
- (UnM)AAI3132449
- Major Professor: Bill J. Baker.
- Source: Dissertation Abstracts International, Volume: 65-05, Section: B, page: 2423.
- Thesis (Ph.D.)--University of South Florida, 2004.
- Reproduction:
- Microfiche. Ann Arbor, Mich.: University Microfilms International.
- Subject:
- Chemistry, Organic
- Other authors/contributors:
- University of South Florida
- Copyright:
-
In Copyright
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Copyright status was determined using the following information:
- Material type:
- Literary Dramatic Musical
- Published status:
- Unpublished
- Creation date:
- 2004
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