Z-Z Wu, S-R Chen, H-L Pan
文献索引:Neuroscience 141(1) , 407-19, (2006)
全文:HTML全文
Olvanil ((N-vanillyl)-9-oleamide), a non-pungent transient receptor potential vanilloid type 1 agonist, desensitizes nociceptors and alleviates pain. But its molecular targets and signaling mechanisms are little known. Calcium influx through voltage-activated Ca(2+) channels plays an important role in neurotransmitter release and synaptic transmission. Here we determined the effect of olvanil on voltage-activated Ca(2+) channel currents and the signaling pathways in primary sensory neurons. Whole-cell voltage-clamp recordings were performed in acutely isolated rat dorsal root ganglion neurons. Olvanil (1 microM) elicited a delayed but sustained inward current, and caused a profound inhibition (approximately 60%) of N-, P/Q-, L-, and R-type voltage-activated Ca(2+) channel current. Pretreatment with a specific transient receptor potential vanilloid type 1 antagonist or intracellular application of 1,2-bis(2-aminophenoxy)ethane-N,N,N',N'-tetraacetic acid abolished the inhibitory effect of olvanil on voltage-activated Ca(2+) channel current. Calmodulin antagonists (ophiobolin-A and calmodulin inhibitory peptide) largely blocked the effect of olvanil and capsaicin on voltage-activated Ca(2+) channel current. Furthermore, calcineurin (protein phosphatase 2B) inhibitors (deltamethrin and FK-506) eliminated the effect of olvanil on voltage-activated Ca(2+) channel current. Notably, 1,2-bis(2-aminophenoxy)ethane-N,N,N',N'-tetraacetic acid, calmodulin antagonists, and calcineurin inhibitors each alone significantly increased the amplitude of voltage-activated Ca(2+) channel current. In addition, double immunofluorescence labeling revealed that olvanil induced a rapid internalization of Ca(V)2.2 immunoreactivity from the membrane surface of dorsal root ganglion neurons. Collectively, this study suggests that stimulation of non-pungent transient receptor potential vanilloid type 1 inhibits voltage-activated Ca(2+) channels through a biochemical pathway involving intracellular Ca(2+)-calmodulin and calcineurin in nociceptive neurons. This new information is important for our understanding of the signaling mechanisms of desensitization of nociceptors by transient receptor potential vanilloid type 1 analogues and the feedback regulation of intracellular Ca(2+) and voltage-activated Ca(2+) channels in nociceptive sensory neurons.
| 结构式 | 名称/CAS号 | 分子式 | 全部文献 | 
|---|---|---|---|
                        ![]()  | 
                    奥伐尼
                     CAS:58493-49-5  | 
                    C26H43NO3 | 
| 
                                
                                Inhibition by capsaicin and its related vanilloids of compou...
                                 2013-03-14 [Life Sci. 92(6-7) , 368-78, (2013)]  | 
                        
| 
                                
                                Identification of drug modulators targeting gene-dosage dise...
                                 2012-07-20 [ACS Chem. Biol. 7(7) , 1205-13, (2012)]  | 
                        
| 
                                
                                Activation of recombinant human TRPV1 receptors expressed in...
                                 2007-08-01 [J. Neurochem. 102(3) , 801-11, (2007)]  | 
                        
| 
                                
                                Olvanil, a non-pungent vanilloid enhances the gastrointestin...
                                 2010-02-15 [Toxicol. Lett. 192(3) , 402-7, (2010)]  | 
                        
| 
                                
                                Olvanil acts on transient receptor potential vanilloid chann...
                                 2012-11-01 [Pain 153(11) , 2226-32, (2012)]  | 
                        
        首页 | 
        期刊大全 | 
        MSDS查询 | 
        化工产品分类 | 
        生物活性化合物 | 
        关于我们 | 
        
            免责声明:知识产权问题请联系 service1@chemsrc.com
        
        
        Copyright © 2024 ChemSrc All Rights Reserved
    
