| Record Information |
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| Version | 2.0 |
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| Created at | 2022-09-10 15:55:57 UTC |
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| Updated at | 2022-09-10 15:55:57 UTC |
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| NP-MRD ID | NP0302408 |
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| Secondary Accession Numbers | None |
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| Natural Product Identification |
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| Common Name | (1s,3r,8r,11r,12s,15r,16r)-7,7,12,16-tetramethyl-15-[(2r)-6-methylhept-5-en-2-yl]pentacyclo[9.7.0.0¹,³.0³,⁸.0¹²,¹⁶]octadecan-6-one |
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| Description | CYCLOARTENONE belongs to the class of organic compounds known as cycloartanols and derivatives. These are steroids containing a cycloartanol moiety. (1s,3r,8r,11r,12s,15r,16r)-7,7,12,16-tetramethyl-15-[(2r)-6-methylhept-5-en-2-yl]pentacyclo[9.7.0.0¹,³.0³,⁸.0¹²,¹⁶]octadecan-6-one is found in Artemisia diffusa, Artocarpus integer, Erigeron philadelphicus, Euphorbia peplus, Gardenia grievei, Heliotropium ellipticum, Heliotropium marifolium, Mangifera indica, Toxicodendron sylvestre, Tillandsia recurvata, Tillandsia usneoides and Wrightia tinctoria. (1s,3r,8r,11r,12s,15r,16r)-7,7,12,16-tetramethyl-15-[(2r)-6-methylhept-5-en-2-yl]pentacyclo[9.7.0.0¹,³.0³,⁸.0¹²,¹⁶]octadecan-6-one was first documented in 2006 (PMID: 16643035). Based on a literature review a significant number of articles have been published on CYCLOARTENONE (PMID: 21562684) (PMID: 22256756) (PMID: 24078595) (PMID: 16557460) (PMID: 34817041) (PMID: 28587079). |
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| Structure | C[C@H](CCC=C(C)C)[C@H]1CC[C@@]2(C)[C@H]3CC[C@@H]4[C@]5(C[C@@]35CC[C@]12C)CCC(=O)C4(C)C InChI=1S/C30H48O/c1-20(2)9-8-10-21(3)22-13-15-28(7)24-12-11-23-26(4,5)25(31)14-16-29(23)19-30(24,29)18-17-27(22,28)6/h9,21-24H,8,10-19H2,1-7H3/t21-,22-,23+,24-,27-,28+,29-,30+/m1/s1 |
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| Synonyms | Not Available |
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| Chemical Formula | C30H48O |
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| Average Mass | 424.7130 Da |
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| Monoisotopic Mass | 424.37052 Da |
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| IUPAC Name | (1S,3R,8R,11R,12S,15R,16R)-7,7,12,16-tetramethyl-15-[(2R)-6-methylhept-5-en-2-yl]pentacyclo[9.7.0.0^{1,3}.0^{3,8}.0^{12,16}]octadecan-6-one |
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| Traditional Name | (1S,3R,8R,11R,12S,15R,16R)-7,7,12,16-tetramethyl-15-[(2R)-6-methylhept-5-en-2-yl]pentacyclo[9.7.0.0^{1,3}.0^{3,8}.0^{12,16}]octadecan-6-one |
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| CAS Registry Number | Not Available |
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| SMILES | C[C@H](CCC=C(C)C)[C@H]1CC[C@@]2(C)[C@H]3CC[C@@H]4[C@]5(C[C@@]35CC[C@]12C)CCC(=O)C4(C)C |
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| InChI Identifier | InChI=1S/C30H48O/c1-20(2)9-8-10-21(3)22-13-15-28(7)24-12-11-23-26(4,5)25(31)14-16-29(23)19-30(24,29)18-17-27(22,28)6/h9,21-24H,8,10-19H2,1-7H3/t21-,22-,23+,24-,27-,28+,29-,30+/m1/s1 |
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| InChI Key | NAJCQAAOHKVCES-LGPDGTNSSA-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 cycloartanols and derivatives. These are steroids containing a cycloartanol moiety. |
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| Kingdom | Organic compounds |
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| Super Class | Lipids and lipid-like molecules |
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| Class | Steroids and steroid derivatives |
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| Sub Class | Cycloartanols and derivatives |
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| Direct Parent | Cycloartanols and derivatives |
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| Alternative Parents | |
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| Substituents | - Cycloartanol-skeleton
- Triterpenoid
- Cycloartane-skeleton
- 9b,19-cyclo-lanostane-skeleton
- 3-oxo-5-alpha-steroid
- Oxosteroid
- 3-oxosteroid
- Cyclic ketone
- Ketone
- Organic oxygen compound
- Organic oxide
- Hydrocarbon derivative
- Organooxygen compound
- Carbonyl group
- Aliphatic homopolycyclic compound
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| Molecular Framework | Aliphatic homopolycyclic 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 | - Carvalho MG, Cardozo MA, Catunda Junior FE, Carvalho AG: Chemical constituents of Piptadenia gonoacantha J.F. Macbr. An Acad Bras Cienc. 2010 Sep;82(3):561-7. doi: 10.1590/s0001-37652010000300003. [PubMed:21562684 ]
- Akihisa T, Watanabe K, Yoneima R, Suzuki T, Kimura Y: Biotransformation of cycloartane-type triterpenes by the fungus Glomerella fusarioides. J Nat Prod. 2006 Apr;69(4):604-7. doi: 10.1021/np058120d. [PubMed:16643035 ]
- Wang L, Zhang C, Layba M, Zhang M: [Triterpenes and sterols from Nauclea latifolia]. Zhongguo Zhong Yao Za Zhi. 2011 Sep;36(18):2511-4. [PubMed:22256756 ]
- Gandhe S, Lakavath S, Palatheeya S, Schuehly W, Amancha K, Kiran Reddy Nallamaddi R, Palepu A, Thakur Y, Rao Adavi Rao Belvotagi V, Kumar Bobbala R, Narasimha Appa Rao Achanta V, Kunert O: Cycloartanes from the gum resin of Gardenia gummifera L.f. Chem Biodivers. 2013 Sep;10(9):1613-22. doi: 10.1002/cbdv.201200383. [PubMed:24078595 ]
- Wang W, Liu J, Han J, Xu Z, Liu R, Liu P, Wang W, Ma X, Guan S, Guo D: New triterpenoids from Kadsura heteroclita and their cytotoxic activity. Planta Med. 2006 Apr;72(5):450-7. doi: 10.1055/s-2005-916263. [PubMed:16557460 ]
- Sette-DE-Souza PH, Costa MJF, Araujo FAC, Alencar EN, Amaral-Machado L: Two phytocompounds from Schinopsis brasiliensis show promising antiviral activity with multiples targets in Influenza A virus. An Acad Bras Cienc. 2021 Nov 22;93(suppl 4):e20210964. doi: 10.1590/0001-3765202120210964. eCollection 2021. [PubMed:34817041 ]
- Gutierrez Nava ZJ, Jimenez-Aparicio AR, Herrera-Ruiz ML, Jimenez-Ferrer E: Immunomodulatory Effect of Agave tequilana Evaluated on an Autoimmunity Like-SLE Model Induced in Balb/c Mice with Pristane. Molecules. 2017 May 25;22(6):848. doi: 10.3390/molecules22060848. [PubMed:28587079 ]
- Srivastava R: A review on phytochemical, pharmacological, and pharmacognostical profile of Wrightia tinctoria: Adulterant of kurchi. Pharmacogn Rev. 2014 Jan;8(15):36-44. doi: 10.4103/0973-7847.125528. [PubMed:24600194 ]
- Zhu MJ, Tan NH, Xiong JY, Ji CJ, Zhu HZ, Xu JJ, Luo QJ: [Chemical constituents contained in ethanol extracts from Acorus tatarinowii and their anti-fatigue activity]. Zhongguo Zhong Yao Za Zhi. 2012 Oct;37(19):2898-901. [PubMed:23270229 ]
- LOTUS database [Link]
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