| Literature DB >> 22611361 |
Yuta Kudo1, Takeshi Yasumoto2, Keiichi Konoki1, Yuko Cho1, Mari Yotsu-Yamashita1.
Abstract
Identification of new tetrodotoxin (TTX) analogs from TTX-possessing animals might provide insight into its biosynthesis and metabolism. In this study, four new analogs, 8-epi-5,6,11-trideoxyTTX, 4,9-anhydro-8-epi-5,6,11-trideoxyTTX, 1-hydroxy-8-epi-5,6,11-trideoxyTTX, and 1-hydroxy-4,4a-anhydro-8-epi-5,6,11-trideoxyTTX, were isolated from the newt, Cynops ensicauda popei, and their structures were determined using spectroscopic methods. These are the first 8-epi-type analogs of TTX that have been found in a natural source. Furthermore, we examined the composition of the TTX analogs in this newt and in the ovary of the puffer fish, Fugu poecilonotus, using LC/MS. The results indicate that TTX and 11-deoxyTTX were present in both sources. However, 6-epiTTX and 8-epi-type analogs were detected only in the newt, while 5,6,11-trideoxyTTX was a specific and major analog in the puffer fish. Such considerable differences among analog compositions might reflect differences in the biosynthesis or metabolism of TTX between these animals.Entities:
Keywords: 8-epi-5,6,11-trideoxytetrodotoxin; LC/MS; newt; puffer fish; tetrodotoxin
Mesh:
Substances:
Year: 2012 PMID: 22611361 PMCID: PMC3347022 DOI: 10.3390/md10030655
Source DB: PubMed Journal: Mar Drugs ISSN: 1660-3397 Impact factor: 6.085
Figure 1The structures of Tetrodotoxin (TTX) (1) and its analogs found in newts (2–5, 9, 10, 12) and in puffer fishes (6–8, 10, 11).
13C and 1H NMR data of 8-epi-5,6,11-trideoxyTTX (2) and 5,6,11-trideoxyTTX (6) [16] in CD3COOD-D2O (4:96, v/v).
| 8- | 5,6,11-trideoxyTTX (6) | Δδ (2–6) | ||||
|---|---|---|---|---|---|---|
| Position | δC | δH ( | δC | δH ( | ΔδC | ΔδH |
| 2 | ND | 155.7 | ||||
| 4 | 77.6 | 5.17, d (8.8) | 77.3 | 5.17, d (10.0) | 0.3 | 0.00 |
| 4a | 40.6 | 2.28, m | 46.2 | 1.99, ddd (13.3, 10.0, 3.9) | −5.6 | 0.29 |
| 5eq | 27.5 | 2.05, m | 27.8 | 2.07, dt (13.3, 4.0) | −0.3 | −0.02 |
| 5ax | 0.87, q (13.3) | 0.92, q (13.3) | −0.05 | |||
| 6 | 32.1 | 2.30, m | 36.9 | 2.13, m | −4.8 | 0.17 |
| 7 | 83.9 | 4.55, br s | 87.2 | 4.61, br t | −3.3 | −0.06 |
| 8 | 67.9 | 4.33, d (4.1) | 74.5 | 4.10, d (2.3) | −6.6 | 0.23 |
| 8a | 61.4 | 61.2 | 0.2 | |||
| 9 | 75.0 | 4.36, s | 72.4 | 4.63, s | 2.6 | −0.27 |
| 10 | 176.6 | 177.4 | −0.8 | |||
| 11 | 17.8 | 1.06, d (7.0) | 18.3 | 1.08, d (6.7) | −0.5 | −0.02 |
ND denotes not determined.
Figure 2The structures of the new TTX analogs (2, 3) from the newt and their structurally similar analog (6) from puffer fish. The structure of 2 is shown with the difference of 1H NMR chemical shifts between 2 and 6, and key NOEs.
13C and 1H NMR data of 4,9-anhydro-8-epi-5,6,11-trideoxyTTX (3) and 4,9-anhydro-5,6,11-trideoxyTTX (7) [29] in CD3COOD-D2O (4:96, v/v).
| 4,9-Anhydro-8-
| 4,9-Anhydro-5,6,11-trideoxyTTX (7) | Δδ (3–7) | ||||
|---|---|---|---|---|---|---|
| Position | δC | δH ( | δC | δH ( | ΔδC | ΔδH |
| 2 | ND | 156.0 | ||||
| 4 | 86.6 | 5.24, s | 85.7 | 5.21, s | 0.9 | 0.03 |
| 4a | 40.7 | 2.72, dt (11.4, 6.5) | 43.7 | 2.67, dd (11.2, 7.0) | −3.0 | 0.05 |
| 5eq | 27.9 | 2.12, m | 26.6 | 2.12–2.04, m | 1.3 | 0.00–0.08 |
| 5ax | 0.82, dt (15.9, 12.4) | 0.82, q (11.2) | 0.00 | |||
| 6 | ND | 2.42, m | 33.8 | 2.12–2.04, m | 0.30–0.38 | |
| 7 | 84.0 | 4.60, br s | 86.7 | 4.70, br s | −2.7 | −0.10 |
| 8 | 64.3 | 4.60, br s | 68.0 | 4.43, d (2.1) | −3.7 | 0.17 |
| 8a | ND | 62.6 | ||||
| 9 | 85.6 | 5.04, s | 83.5 | 4.98, s | 2.1 | 0.06 |
| 10 | ND | 178.2 | ||||
| 11 | 18.7 | 1.03, d (6.8) | 18.2 | 1.02, d (6.6) | 0.5 | 0.01 |
ND denotes not determined.
13C and 1H NMR data of 1-hydroxy-8-epi-5,6,11-trideoxyTTX (4) and 5,6,11-trideoxyTTX (6) in CD3COOD-D2O (4:96, v/v).
| 1-Hydroxy-8-
| Δδ (4–6) | |||
|---|---|---|---|---|
| Position | δC | δH ( | ΔδC | ΔδH |
| 2 | ND | |||
| 4 | 77.3 | 5.08, d (9.4) | 0.0 | −0.09 |
| 4a | 40.3 | 2.54, dd (9.4, 2.3) | −5.9 | 0.55 |
| 5eq | 28.2 | 2.05, m | 0.4 | −0.02 |
| 5ax | 0.90, q (13.5) | −0.02 | ||
| 6 | 31.8 | 2.32, m | −5.1 | 0.19 |
| 7 | 84.2 | 4.67, d (4.4) | −3.0 | 0.06 |
| 8 | 65.3 | 4.53, d (4.1) | −9.2 | 0.43 |
| 8a | 68.0 | 6.8 | ||
| 9 | 69.0 | 4.79, s | −3.4 | 0.16 |
| 10 | 177.9 | 0.5 | ||
| 11 | 17.5 | 1.06, d (7.0) | −0.8 | −0.02 |
ND denotes not determined.
13C and 1H NMR data of 1-hydroxy-4,4a-anhydro-8-epi-5,6,11-trideoxyTTX (5) and 4,4a-anhydro-5,6,11-trideoxyTTX (8) in CD3COOD-D2O (4:96, v/v).
| 1-Hydroxy-4,4a-Anhydro-8- | 4,4a-Anhydro-5,6,11-trideoxyTTX (8) | Δδ (5–8) | ||||
|---|---|---|---|---|---|---|
| Position | δC | δH ( | δC | δH ( | ΔδC | ΔδH |
| 2 | 154.6 | 152.4 | 2.2 | |||
| 4 | 122.2 | 6.30, s | 120.4 | 6.24, s | 1.8 | 0.06 |
| 4a | 110.3 | 110.1 | 0.2 | |||
| 5eq | 30.9 | 2.38, dd (15.8, 5.3) | 29.9 | 2.37, d (14.1) | 1.0 | 0.01 |
| 5ax | 1.65, dd (15.0, 12.0) | 1.65, t (13.6) | 0.00 | |||
| 6 | 31.6 | 2.28, m | 35.6 | 2.03, m | −4.0 | 0.25 |
| 7 | 84.1 | 4.67, d (4.1) | 86.6 | 4.66, br s | −2.5 | 0.01 |
| 8 | 65.5 | 4.52, d (4.4) | 73.3 | 4.27, br s | −7.8 | 0.25 |
| 8a | 72.2 | 62.8 | 9.4 | |||
| 9 | 68.8 | 4.80, s | 71.2 | 4.48, s | −2.4 | 0.32 |
| 10 | 176.7 | 175.5 | 1.2 | |||
| 11 | 17.9 | 1.04, d (6.8) | 17.3 | 1.05, d (5.3) | 0.6 | −0.01 |
Figure 3The structures of the new TTX analogs from the newt (4, 5) and a structurally similar analog (7) from puffer fish. The structure of 5 is shown with the difference of 13C NMR chemical shifts between 5 and 7, and key NOEs.
Figure 4The profiles of TTX analogs in the whole body of Cynops ensicauda popei and the ovary of Fugu poecilonotus. Total mol of TTX analogs is counted as 100%.
The contents of TTX analogs per gram of the whole body of Cynops ensicauda popei and the ovary of Fugu poecilonotus.
| Toxin | LC/MS Results (μg/g) | |
|---|---|---|
| TTX | 134.0 | 49.6 |
| 6- | <0.3 | 27.0 |
| 4- | 11.5 | 8.0 |
| 4,9-anhydroTTX | 31.2 | 58.1 |
| 5-deoxyTTX | 4.2 | <0.3 |
| 11-deoxyTTX | 15.9 | 5.7 |
| 6,11-dideoxyTTX | 6.3 | <0.3 |
| 5,6,11-trideoxyTTX | 108.8 | ND * |
| anhydro-5,6,11-trideoxyTTX | 79.9 | ND * |
| 8- | ND * | 5.8 |
| 4,9-anhydro-8- | ND * | 7.7 |
| 1-hydroxy-8- | <0.3 | 2.4 |
| 1-hydroxy-4,4a-anhydro-8- | <0.3 | 8.3 |
| 11-norTTX-6( | 9.9 | <0.3 |
ND denotes not detected; * 5,6,11-TrideoxyTTX and 8-epi-5,6,11-trideoxyTTX were not clearly distinguished with each other by HILIC/MS. 1H NMR was used to identify these analogs in the corresponding fractions.