The transient receptor potential ankyrin-repeat 1 (TRPA1) is an important player in pain and inflammatory pathways. It is a promising target for novel drug development for the treatment of a number of pathological states. A novel peptide producing a significant potentiating effect on allyl isothiocyanate- and diclofenac-induced currents of TRPA1 was isolated from the venom of sea anemone Metridium senile. It is a 35-amino acid peptide cross-linked by two disulfide bridges named Ï-AnmTX Ms 9a-1 (short name Ms 9a-1) according to a structure similar to other sea anemone peptides belonging to structural group 9a. The structures of the two genes encoding the different precursor proteins of Ms 9a-1 were determined. Peptide Ms 9a-1 acted as a positive modulator of TRPA1 in vitro but did not cause pain or thermal hyperalgesia when injected into the hind paw of mice. Intravenous injection of Ms 9a-1 (0.3 mg/kg) produced a significant decrease in the nociceptive and inflammatory response to allyl isothiocyanate (the agonist of TRPA1) and reversed CFA (Complete Freund's Adjuvant)-induced inflammation and thermal hyperalgesia. Taken together these data support the hypothesis that Ms 9a-1 potentiates the response of TRPA1 to endogenous agonists followed by persistent functional loss of TRPA1-expressing neurons. We can conclude that TRPA1 potentiating may be useful as a therapeutic approach as Ms 9a-1 produces significant analgesic and anti-inflammatory effects in mice models of pain.
Peptide from Sea Anemone Metridium senile Affects Transient Receptor Potential Ankyrin-repeat 1 (TRPA1) Function and Produces Analgesic Effect.
来自海葵 Metridium senile 的肽影响瞬时受体电位锚蛋白重复序列 1 (TRPA1) 功能并产生镇痛作用
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作者:Logashina Yulia A, Mosharova Irina V, Korolkova Yulia V, Shelukhina Irina V, Dyachenko Igor A, Palikov Victor A, Palikova Yulia A, Murashev Arkadii N, Kozlov Sergey A, StensvÃ¥g Klara, Andreev Yaroslav A
| 期刊: | Journal of Biological Chemistry | 影响因子: | 3.900 |
| 时间: | 2017 | 起止号: | 2017 Feb 17; 292(7):2992-3004 |
| doi: | 10.1074/jbc.M116.757369 | 研究方向: | 免疫/内分泌 |
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