| Literature DB >> 35566260 |
Young Sook Yun1, Tomomi Nakano1, Haruhiko Fukaya1, Yukio Hitotsuyanagi1, Miho Nakamura1, Megumi Umetsu1, Nobuko Matsushita1, Katsunori Miyake1, Hiroyuki Fuchino2, Nobuo Kawahara2, Fuki Moriya1, Akihiro Ito1, Yuji Takahashi1, Hideshi Inoue1.
Abstract
Retusone A (1), a new sesquiterpene dimer consisting of two guaiane-type sesquiterpenoids, and oleodaphnal (2) were isolated from heartwood of Wikstroemia retusa (Thymelaeaceae). The planar structure of 1 was elucidated on the basis of HRESIMS and NMR spectroscopic data, and the relative stereochemistry was established by X-ray diffraction analysis. The absolute configuration of 1 was determined by electronic circular dichroism. Compound 1 suppressed luciferase reporter gene expression driven by the HBO1 (histone acetyltransferase binding to ORC1) gene promoter in human breast cancer MCF7 cells. Compound 1 also decreased the expression of endogenous HBO1 mRNA and protein, and inhibited proliferation of the cells. These results suggest that retusone A (1), which has a unique dimeric sesquiterpenoid structure with inhibitory activity against HBO1 expression, may contribute to the development of a novel therapeutic candidate for the treatment of breast cancer.Entities:
Keywords: HBO1; Thymelaeaceae; Wikstroemia retusa; breast cancer; guaiane-type; sesquiterpene
Mesh:
Substances:
Year: 2022 PMID: 35566260 PMCID: PMC9105026 DOI: 10.3390/molecules27092909
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.927
Figure 1The structures of retusone A (1) and oleodaphnal (2).
1H (500 MHz) and 13C (125 MHz) NMR Data of 1 in CDCl3
| Position | δH | δC Type | COSY | HMBC |
|---|---|---|---|---|
| 1 | 133.8, C | |||
| 2 | 3.09, d (10.4) | 47.7, CH | 14′ | 1, 3, 14′ |
| 3 | 200.1, C | |||
| 4 | 140.2, C | |||
| 5 | 163.8, C | |||
| 6 | 2.77, bd (17.8) | 35.7, CH2 | 7 | 1, 5, 7 |
| 7 | 2.57 b | 42.9, CH | 6, 8 | 9, 12, 13 |
| 8 | 1.87 b, 2.00 b | 31.9, CH2 | 7, 9 | 6, 7, 9, 10 |
| 9 | 2.22, ddd (4.2, 9.4, 18.2), 2.63 b | 29.4, CH2 | 8 | 1, 7, 8 |
| 10 | 130.7, C | |||
| 11 | 148.7, C | |||
| 12 | 4.71, bm, 4.77, m | 109.7, CH2 | 13 | 7, 11, 13 |
| 13 | 1.78, s | 20.6, CH3 | 12 | 7, 11, 12 |
| 14 | 4.86, s | 99.2, CH | 1, 9, 10 | |
| 15 | 1.74, s | 8.3, CH3 | 3, 4, 5 | |
| 1′ | 136.6, C | |||
| 2′ | 2.90 b,c | 39.1, CH | 1′, 3′, 5′, 10 | |
| 3′ | 204.6, C | |||
| 4′ | 140.0, C | |||
| 5′ | 167.4, C | |||
| 6′ | 2.84 b,c | 32.5, CH2 | 7′ | 1′, 4′, 5′, 7′, 8′ |
| 7′ | 2.60 b | 42.7, CH | 6′, 8′ | 6′, 8′, 9′ |
| 8′ | 1.94, ddd (2.5, 7.1, 14.1), 2.02 b | 32.3, CH2 | 7′, 9′ | 1′, 4′, 5′, 7′, 8′ |
| 9′ | 2.50, ddd (2.5, 7.6, 16.4), 2.61 b | 24.3, CH2 | 8′ | 1′, 7′, 10′ |
| 10′ | 135.9, C | |||
| 11′ | 149.4, C | |||
| 12′ | 4.75, m, 4.81, bm | 110.2, CH2 | 13′ | 7′, 11′, 13′ |
| 13′ | 1.79, s | 20.7, CH3 | 12′ | 7′, 11′, 12′ |
| 14′ | 4.40, d (10.4) | 69.8, CH | 2′ | 1, 3, 14, 1′, 9′, 10′ |
| 15′ | 1.80, s | 8.4, CH3 | 3′, 4′, 5′ | |
| OCH3 | 3.39, s | 55.7, CH3 | 14 |
J-values are given in Hz in parentheses. b Multiplicity not determined due to overlapping and/or broadening of the signals. c Two protons.
Figure 2(a) Key HMBC and 1H-1H COSY correlations and (b) ORTEP drawing of the crystal structure of 1.
Figure 3Calculated and experimental ECD spectra of 1.
Figure 4A possible biosynthetic pathway from oleodaphnal (2) to retusone A (1).
Figure 5Inhibitory activities of retusone A (1) on HBO1 expression in MCF 7 cells. (a) Luciferase reporter expression from pHBO1p(-640/-1)-Luc, (b) cell viability, (c) mRNA, and (d) protein level of endogenous HBO1 after treatment with (0.5–10 µM) for (a) and 10 µM for (b–d) with or without 1. Dimethylsulfoxide (DMSO) was used as a vehicle control. The quantitative data are shown as mean ± standard deviation (SD, n = 4). * p < 0.05 or ** p < 0.01 vs. control.
Figure 6Colony formation assay on MCF7 cells treated with 1. Dimethylsulfoxide (DMSO) was used as a vehicle control. The colony formation rate in the presence and absence of 1 or etoposide (10 μM) is shown as mean ± standard deviation (n = 3). ** p < 0.01 vs. control.