Melittin activates TRPV1 receptors in primary nociceptive sensory neurons via the phospholipase A2 cascade pathways

被引:30
作者
Du, Yi-Ru [1 ,2 ]
Xiao, Yong [3 ,4 ]
Lu, Zhuo-Min [3 ,4 ]
Ding, Jing [2 ]
Xie, Fang [3 ,4 ]
Fu, Han [3 ,4 ]
Wang, Yan [3 ,4 ]
Strong, Judith A. [1 ]
Zhang, Jun-Ming [1 ]
Chen, Jun [2 ,3 ,4 ]
机构
[1] Univ Cincinnati, Coll Med, Pain Res Ctr, Dept Anesthesiol, Cincinnati, OH 45267 USA
[2] Capital Med Univ, Inst Biomed Sci Pain, Beijing 100069, Peoples R China
[3] Fourth Mil Med Univ, Inst Biomed Sci Pain, Tangdu Hosp, Xian 710038, Peoples R China
[4] Fourth Mil Med Univ, Inst Funct Brain Disorders, Tangdu Hosp, Xian 710038, Peoples R China
关键词
Melittin; Bee venom test; TRPV1; Phospholipase A2; Cyclooxygenases; Lipoxygenases; SENSITIVE PRIMARY AFFERENTS; PAIN-RELATED BEHAVIORS; ROOT GANGLION NEURONS; CONSCIOUS RATS; CAPSAICIN; INJECTION; RESPONSES; CULTURE; A(2); DESENSITIZATION;
D O I
10.1016/j.bbrc.2011.03.110
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Previous studies demonstrated that melittin, the main peptide in bee venom, could cause persistent spontaneous pain, primary heat and mechanical hyperalgesia, and enhance the excitability of spinal nociceptive neurons. However, the underlying mechanism of melittin-induced cutaneous hypersensitivity is unknown. Effects of melittin applied topically to acutely dissociated rat dorsal root ganglion neurons were studied using whole-cell patch clamp and calcium imaging techniques. Melittin induced intracellular calcium increases in 60% of small (<25 mu m) and medium (<40 mu m) diameter sensory neurons. In current clamp, topical application of melittin evoked long-lasting firing in 55% of small and medium-sized neurons tested. In voltage clamp, melittin evoked inward currents in sensory neurons in a concentration-dependent manner. Repeated application of melittin caused increased amplitude of the inward currents. Most melittin-sensitive neurons were capsaicin-sensitive, and 65% were isolectin B4 positive. Capsazepine, the TRPV1 receptor inhibitor, completely abolished the melittin-induced inward currents and intracellular calcium transients. Inhibitions of signaling pathways showed that phospholipase A(2), but not phospholipase C. was involved in producing the melittin-induced inward currents. Inhibitors of cyclooxygenases (COX) and lipoxygenases (LOX), two key components of the arachidonic acid metabolism pathway, each partially suppressed the inward current evoked by melittin. Inhibitors of protein kinase A (PKA), but not of PKC, also abolished the melittin-induced inward currents. These results indicate that melittin can directly excite small and medium-sized sensory neurons at least in part by activating TRPV1 receptors via PLA2-COXs/LOXs cascade pathways. (C) 2011 Elsevier Inc. All rights reserved.
引用
收藏
页码:32 / 37
页数:6
相关论文
共 47 条
  • [31] Protein kinase a anchoring via AKAP150 is essential for TRPV1 modulation by forskolin and prostaglandin E2 in mouse sensory neurons
    Schnizler, Katrin
    Shutov, Leonid P.
    Van Kanegan, Michael J.
    Merrill, Michelle A.
    Nichols, Blake
    McKnight, G. Stanley
    Strack, Stefan
    Hell, Johannes W.
    Usachev, Yuriy M.
    JOURNAL OF NEUROSCIENCE, 2008, 28 (19) : 4904 - 4917
  • [32] SENSITITIZATION OF TRPV1 NEURONS BY PGE2: LOST OF SENSORY SELECTIVITY FOR NOXIOUS HEAT AND PARTICIPATION ON MECHANICAL HYPERALGESIA
    Ruiz-Cantero, M. C.
    Montilla-Garcia, A.
    Perazzoli, G.
    Sanchez-Fernandez, C.
    Baeyens, J. M.
    Cobos, E. J.
    BASIC & CLINICAL PHARMACOLOGY & TOXICOLOGY, 2017, 121 : 85 - 85
  • [33] Electroacupuncture Alleviates Paclitaxel-Induced Peripheral Neuropathic Pain in Rats via Suppressing TLR4 Signaling and TRPV1 Upregulation in Sensory Neurons
    Li, Yuanyuan
    Yin, Chengyu
    Li, Xiaojie
    Liu, Boyu
    Wang, Jie
    Zheng, Xiaoli
    Shao, Xiaomei
    Liang, Yi
    Du, Junying
    Fang, Jianqiao
    Liu, Boyi
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2019, 20 (23)
  • [34] B-Type Natriuretic Peptide-Induced Delayed Modulation of TRPV1 and P2X3 Receptors of Mouse Trigeminal Sensory Neurons
    Vilotti, Sandra
    Marchenkove, Anna
    Ntamati, Niels
    Nistri, Andrea
    PLOS ONE, 2013, 8 (11):
  • [35] Long-term incubation with CXCL2, but not with CXCL1, alters the kinetics of TRPV1 receptors in cultured dorsal root ganglia neurons
    Deftu, Antonia-Teona
    Deftu, Alexandru-Florian
    Ristoiu, Violeta
    ARCHIVES OF BIOLOGICAL SCIENCES, 2017, 69 (01) : 53 - 59
  • [36] GPR177 in A-fiber sensory neurons drives diabetic neuropathic pain via WNT-mediated TRPV1 activation
    Xie, Ya-Kai
    Luo, Hao
    Zhang, Shan-Xin
    Chen, Xiao-Ying
    Guo, Ran
    Qiu, Xiao-Yun
    Liu, Shuai
    Wu, Hui
    Chen, Wen-Bo
    Zhen, Xing-Hua
    Ma, Qiang
    Tian, Jin-Lan
    Li, Shun
    Chen, Xinzhong
    Han, Qingjian
    Duan, Shumin
    Shen, Chengyong
    Yang, Fan
    Xu, Zhen-Zhong
    SCIENCE TRANSLATIONAL MEDICINE, 2022, 14 (639)
  • [37] Metabotropic Glutamate Receptor 2/3 (mGluR2/3) Activation Suppresses TRPV1 Sensitization in Mouse, But Not Human, Sensory Neurons
    Sheahan, Tayler D.
    Valtcheva, Manouela V.
    Mcllvried, Lisa A.
    Pullen, Melanie Y.
    Baranger, David A. A.
    Gereau, Robert W.
    ENEURO, 2018, 5 (02)
  • [38] Nucleotides control the excitability of sensory neurons via two P2Y receptors and a bifurcated signaling cascade
    Yousuf, Arsalan
    Klinger, Felicia
    Schicker, Klaus
    Boehm, Stefan
    PAIN, 2011, 152 (08) : 1899 - 1908
  • [39] Activation of Mu Opioid Receptors Sensitizes Transient Receptor Potential Vanilloid Type 1 (TRPV1) via β-Arrestin-2-Mediated Cross-Talk
    Rowan, Matthew P.
    Bierbower, Sonya M.
    Eskander, Michael A.
    Szteyn, Kalina
    Por, Elaine D.
    Gomez, Ruben
    Veldhuis, Nicholas
    Bunnett, Nigel W.
    Jeske, Nathaniel A.
    PLOS ONE, 2014, 9 (04):
  • [40] TLR4 mediates upregulation and sensitization of TRPV1 in primary afferent neurons in 2,4,6-trinitrobenzene sulfate-induced colitis
    Wu, Yingwei
    Wang, Yingping
    Wang, Juan
    Fan, Qi
    Zhu, Jinyu
    Yang, Liu
    Rong, Weifang
    MOLECULAR PAIN, 2019, 15