| Record Information |
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| Version | 2.0 |
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| Created at | 2022-09-03 02:43:31 UTC |
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| Updated at | 2022-09-03 02:43:31 UTC |
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| NP-MRD ID | NP0167187 |
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| Secondary Accession Numbers | None |
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| Natural Product Identification |
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| Common Name | (+)-ar,11s-myricanol |
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| Description | (+)-Ar,11S-Myricanol belongs to the class of organic compounds known as meta,meta-bridged biphenyls. These are cyclic diarylheptanoids where the two aryl groups are linked to each other by an ether group conjugated to their 3-position. (+)-ar,11s-myricanol is found in Morella cerifera, Morella esculenta, Morella nana, Morella rubra and Nageia nagi. (+)-ar,11s-myricanol was first documented in 2011 (PMID: 21141876). Based on a literature review very few articles have been published on (+)-Ar,11S-Myricanol (PMID: 25588114). |
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| Structure | COC1=C(O)C2=CC(=C1OC)C1=CC(CC[C@@H](O)CCCC2)=CC=C1O InChI=1S/C21H26O5/c1-25-20-17-12-14(19(24)21(20)26-2)5-3-4-6-15(22)9-7-13-8-10-18(23)16(17)11-13/h8,10-12,15,22-24H,3-7,9H2,1-2H3/t15-/m0/s1 |
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| Synonyms | Not Available |
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| Chemical Formula | C21H26O5 |
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| Average Mass | 358.4340 Da |
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| Monoisotopic Mass | 358.17802 Da |
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| IUPAC Name | (9S)-16,17-dimethoxytricyclo[12.3.1.1^{2,6}]nonadeca-1(17),2(19),3,5,14(18),15-hexaene-3,9,15-triol |
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| Traditional Name | (9S)-16,17-dimethoxytricyclo[12.3.1.1^{2,6}]nonadeca-1(17),2(19),3,5,14(18),15-hexaene-3,9,15-triol |
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| CAS Registry Number | Not Available |
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| SMILES | COC1=C(O)C2=CC(=C1OC)C1=CC(CC[C@@H](O)CCCC2)=CC=C1O |
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| InChI Identifier | InChI=1S/C21H26O5/c1-25-20-17-12-14(19(24)21(20)26-2)5-3-4-6-15(22)9-7-13-8-10-18(23)16(17)11-13/h8,10-12,15,22-24H,3-7,9H2,1-2H3/t15-/m0/s1 |
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| InChI Key | SBGBAZQAEOWGFT-HNNXBMFYSA-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 meta,meta-bridged biphenyls. These are cyclic diarylheptanoids where the two aryl groups are linked to each other by an ether group conjugated to their 3-position. |
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| Kingdom | Organic compounds |
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| Super Class | Phenylpropanoids and polyketides |
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| Class | Diarylheptanoids |
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| Sub Class | Cyclic diarylheptanoids |
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| Direct Parent | Meta,meta-bridged biphenyls |
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| Alternative Parents | |
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| Substituents | - Meta,meta-bridged biphenyl
- Anisole
- 1-hydroxy-2-unsubstituted benzenoid
- Alkyl aryl ether
- Benzenoid
- Secondary alcohol
- Polyol
- Ether
- Organic oxygen compound
- Hydrocarbon derivative
- Organooxygen compound
- Alcohol
- Aromatic homopolycyclic compound
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| Molecular Framework | Aromatic homopolycyclic compounds |
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| External Descriptors | |
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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 | - Jones JR, Lebar MD, Jinwal UK, Abisambra JF, Koren J 3rd, Blair L, O'Leary JC, Davey Z, Trotter J, Johnson AG, Weeber E, Eckman CB, Baker BJ, Dickey CA: The diarylheptanoid (+)-aR,11S-myricanol and two flavones from bayberry (Myrica cerifera) destabilize the microtubule-associated protein tau. J Nat Prod. 2011 Jan 28;74(1):38-44. doi: 10.1021/np100572z. Epub 2010 Dec 8. [PubMed:21141876 ]
- Martin MD, Calcul L, Smith C, Jinwal UK, Fontaine SN, Darling A, Seeley K, Wojtas L, Narayan M, Gestwicki JE, Smith GR, Reitz AB, Baker BJ, Dickey CA: Synthesis, stereochemical analysis, and derivatization of myricanol provide new probes that promote autophagic tau clearance. ACS Chem Biol. 2015 Apr 17;10(4):1099-109. doi: 10.1021/cb501013w. Epub 2015 Jan 30. [PubMed:25588114 ]
- LOTUS database [Link]
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