| Record Information |
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| Version | 2.0 |
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| Created at | 2022-09-05 06:22:03 UTC |
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| Updated at | 2022-09-05 06:22:03 UTC |
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| NP-MRD ID | NP0209097 |
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| Secondary Accession Numbers | None |
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| Natural Product Identification |
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| Common Name | 2-methoxy-3,5-dimethyl-6-[(1r,6s)-1,3,5-trimethyl-6-[(2e)-pent-2-en-2-yl]cyclohexa-2,4-dien-1-yl]pyran-4-one |
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| Description | 9,10-Deoxytridachione, also known as photodeoxytridachione, belongs to the class of organic compounds known as aromatic monoterpenoids. These are monoterpenoids containing at least one aromatic ring. 2-methoxy-3,5-dimethyl-6-[(1r,6s)-1,3,5-trimethyl-6-[(2e)-pent-2-en-2-yl]cyclohexa-2,4-dien-1-yl]pyran-4-one is found in Plakobranchus ocellatus. 2-methoxy-3,5-dimethyl-6-[(1r,6s)-1,3,5-trimethyl-6-[(2e)-pent-2-en-2-yl]cyclohexa-2,4-dien-1-yl]pyran-4-one was first documented in 2005 (PMID: 16235932). Based on a literature review a small amount of articles have been published on 9,10-Deoxytridachione (PMID: 16481191) (PMID: 18517253) (PMID: 15791299) (PMID: 15673253). |
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| Structure | CC\C=C(/C)[C@H]1C(C)=CC(C)=C[C@@]1(C)C1=C(C)C(=O)C(C)=C(OC)O1 InChI=1S/C22H30O3/c1-9-10-14(3)18-15(4)11-13(2)12-22(18,7)20-16(5)19(23)17(6)21(24-8)25-20/h10-12,18H,9H2,1-8H3/b14-10+/t18-,22+/m0/s1 |
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| Synonyms | | Value | Source |
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| Photodeoxytridachione | MeSH |
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| Chemical Formula | C22H30O3 |
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| Average Mass | 342.4790 Da |
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| Monoisotopic Mass | 342.21949 Da |
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| IUPAC Name | Not Available |
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| Traditional Name | Not Available |
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| CAS Registry Number | Not Available |
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| SMILES | CC\C=C(/C)[C@H]1C(C)=CC(C)=C[C@@]1(C)C1=C(C)C(=O)C(C)=C(OC)O1 |
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| InChI Identifier | InChI=1S/C22H30O3/c1-9-10-14(3)18-15(4)11-13(2)12-22(18,7)20-16(5)19(23)17(6)21(24-8)25-20/h10-12,18H,9H2,1-8H3/b14-10+/t18-,22+/m0/s1 |
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| InChI Key | COQVDOXGJFWFLT-MMTSNFQXSA-N |
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| Experimental Spectra |
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| Not Available | | Predicted Spectra |
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| | Spectrum Type | Description | Depositor ID | Depositor Organization | Depositor | Deposition Date | View |
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| 1D NMR | 13C NMR Spectrum (1D, 25 MHz, H2O, predicted) | Wishart Lab | Wishart Lab | David Wishart | 2021-06-20 | View Spectrum | | 1D NMR | 1H NMR Spectrum (1D, 100 MHz, H2O, predicted) | Wishart Lab | Wishart Lab | David Wishart | 2021-06-20 | View Spectrum | | 1D NMR | 13C NMR Spectrum (1D, 252 MHz, H2O, predicted) | Wishart Lab | Wishart Lab | David Wishart | 2021-06-20 | View Spectrum | | 1D NMR | 1H NMR Spectrum (1D, 1000 MHz, H2O, predicted) | Wishart Lab | Wishart Lab | David Wishart | 2021-06-20 | View Spectrum | | 1D NMR | 13C NMR Spectrum (1D, 50 MHz, H2O, predicted) | Wishart Lab | Wishart Lab | David Wishart | 2021-06-20 | View Spectrum | | 1D NMR | 1H NMR Spectrum (1D, 200 MHz, H2O, predicted) | Wishart Lab | Wishart Lab | David Wishart | 2021-06-20 | View Spectrum | | 1D NMR | 13C NMR Spectrum (1D, 75 MHz, H2O, predicted) | Wishart Lab | Wishart Lab | David Wishart | 2021-06-20 | View Spectrum | | 1D NMR | 1H NMR Spectrum (1D, 300 MHz, H2O, predicted) | Wishart Lab | Wishart Lab | David Wishart | 2021-06-20 | View Spectrum | | 1D NMR | 13C NMR Spectrum (1D, 101 MHz, H2O, predicted) | Wishart Lab | Wishart Lab | David Wishart | 2021-06-20 | View Spectrum | | 1D NMR | 1H NMR Spectrum (1D, 400 MHz, H2O, predicted) | Wishart Lab | Wishart Lab | David Wishart | 2021-06-20 | View Spectrum | | 1D NMR | 13C NMR Spectrum (1D, 126 MHz, H2O, predicted) | Wishart Lab | Wishart Lab | David Wishart | 2021-06-20 | View Spectrum | | 1D NMR | 1H NMR Spectrum (1D, 500 MHz, H2O, predicted) | Wishart Lab | Wishart Lab | David Wishart | 2021-06-20 | View Spectrum | | 1D NMR | 13C NMR Spectrum (1D, 151 MHz, H2O, predicted) | Wishart Lab | Wishart Lab | David Wishart | 2021-06-20 | View Spectrum | | 1D NMR | 1H NMR Spectrum (1D, 600 MHz, H2O, predicted) | Wishart Lab | Wishart Lab | David Wishart | 2021-06-20 | View Spectrum | | 1D NMR | 13C NMR Spectrum (1D, 176 MHz, H2O, predicted) | Wishart Lab | Wishart Lab | David Wishart | 2021-06-20 | View Spectrum | | 1D NMR | 1H NMR Spectrum (1D, 700 MHz, H2O, predicted) | Wishart Lab | Wishart Lab | David Wishart | 2021-06-20 | View Spectrum | | 1D NMR | 13C NMR Spectrum (1D, 201 MHz, H2O, predicted) | Wishart Lab | Wishart Lab | David Wishart | 2021-06-20 | View Spectrum | | 1D NMR | 1H NMR Spectrum (1D, 800 MHz, H2O, predicted) | Wishart Lab | Wishart Lab | David Wishart | 2021-06-20 | View Spectrum | | 1D NMR | 13C NMR Spectrum (1D, 226 MHz, H2O, predicted) | Wishart Lab | Wishart Lab | David Wishart | 2021-06-20 | View Spectrum | | 1D NMR | 1H NMR Spectrum (1D, 900 MHz, H2O, predicted) | Wishart Lab | Wishart Lab | David Wishart | 2021-06-20 | View Spectrum |
| | Chemical Shift Submissions |
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| Not Available | | Species |
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| Species of Origin | |
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| Chemical Taxonomy |
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| Description | Belongs to the class of organic compounds known as aromatic monoterpenoids. These are monoterpenoids containing at least one aromatic ring. |
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| Kingdom | Organic compounds |
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| Super Class | Lipids and lipid-like molecules |
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| Class | Prenol lipids |
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| Sub Class | Monoterpenoids |
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| Direct Parent | Aromatic monoterpenoids |
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| Alternative Parents | |
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| Substituents | - Aromatic monoterpenoid
- Monocyclic monoterpenoid
- P-menthane monoterpenoid
- Alkyl aryl ether
- Pyranone
- Pyran
- Heteroaromatic compound
- Vinylogous ester
- Cyclic ketone
- Organoheterocyclic compound
- Oxacycle
- Ether
- Organooxygen compound
- Hydrocarbon derivative
- Organic oxide
- Organic oxygen compound
- Aromatic heteromonocyclic compound
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| Molecular Framework | Aromatic heteromonocyclic compounds |
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| External Descriptors | Not Available |
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| Physical Properties |
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| State | Not Available |
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| Experimental Properties | | Property | Value | Reference |
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| Melting Point | Not Available | Not Available | | Boiling Point | Not Available | Not Available | | Water Solubility | Not Available | Not Available | | LogP | Not Available | Not Available |
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| Predicted Properties | |
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| General References | - Zuidema DR, Jones PB: Triplet photosensitization in cyercene A and related pyrones. J Photochem Photobiol B. 2006 May 1;83(2):137-45. doi: 10.1016/j.jphotobiol.2005.12.016. Epub 2006 Feb 14. [PubMed:16481191 ]
- Eade SJ, Walter MW, Byrne C, Odell B, Rodriguez R, Baldwin JE, Adlington RM, Moses JE: Biomimetic synthesis of pyrone-derived natural products: exploring chemical pathways from a unique polyketide precursor. J Org Chem. 2008 Jul 4;73(13):4830-9. doi: 10.1021/jo800220w. Epub 2008 Jun 3. [PubMed:18517253 ]
- Zuidema DR, Miller AK, Trauner D, Jones PB: Photosensitized conversion of 9,10-deoxytridachione to photodeoxytridachione. Org Lett. 2005 Oct 27;7(22):4959-62. doi: 10.1021/ol051887c. [PubMed:16235932 ]
- Moses JE, Adlington RM, Rodriguez R, Eade SJ, Baldwin JE: Biomimetic synthesis of (+/-)-9,10-deoxytridachione. Chem Commun (Camb). 2005 Apr 7;(13):1687-9. doi: 10.1039/b418988d. Epub 2005 Feb 7. [PubMed:15791299 ]
- Cueto M, D'Croz L, Mate JL, San-Martin A, Darias J: Elysiapyrones from Elysia diomedea. Do such metabolites evidence an enzymatically assisted electrocyclization cascade for the biosynthesis of their bicyclo[4.2.0]octane core? Org Lett. 2005 Feb 3;7(3):415-8. doi: 10.1021/ol0477428. [PubMed:15673253 ]
- LOTUS database [Link]
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