Akopian A N, Souslova V, England S, Okuse K, Ogata N, Ure J, Smith A, Kerr B J, McMahon S B, Boyce S, Hill R, Stanfa L C, Dickenson A H, Wood J N
Molecular Nociception Group, Department of Biology, Medawar Building, University College, London WC1E 6BT, UK.
Nat Neurosci. 1999 Jun;2(6):541-8. doi: 10.1038/9195.
Many damage-sensing neurons express tetrodotoxin (TTX)-resistant voltage-gated sodium channels. Here we examined the role of the sensory-neuron-specific (SNS) TTX-resistant sodium channel alpha subunit in nociception and pain by constructing sns-null mutant mice. These mice expressed only TTX-sensitive sodium currents on step depolarizations from normal resting potentials, showing that all slow TTX-resistant currents are encoded by the sns gene. Null mutants were viable, fertile and apparently normal, although lowered thresholds of electrical activation of C-fibers and increased current densities of TTX-sensitive channels demonstrated compensatory upregulation of TTX-sensitive currents in sensory neurons. Behavioral studies demonstrated a pronounced analgesia to noxious mechanical stimuli, small deficits in noxious thermoreception and delayed development of inflammatory hyperalgesia. These data show that SNS is involved in pain pathways and suggest that blockade of SNS expression or function may produce analgesia without side effects.
许多损伤感应神经元表达对河豚毒素(TTX)耐受的电压门控钠通道。在此,我们通过构建sns基因敲除突变小鼠,研究了感觉神经元特异性(SNS)对TTX耐受的钠通道α亚基在伤害感受和疼痛中的作用。这些小鼠在从正常静息电位进行阶跃去极化时仅表达对TTX敏感的钠电流,表明所有缓慢的对TTX耐受的电流均由sns基因编码。基因敲除突变体是可存活的、可育的且外观正常,尽管C纤维电激活阈值降低以及对TTX敏感通道的电流密度增加表明感觉神经元中对TTX敏感的电流出现了代偿性上调。行为学研究表明,对有害机械刺激有明显的镇痛作用,对有害温度感受有轻微缺陷,且炎症性痛觉过敏的发展延迟。这些数据表明SNS参与疼痛通路,并提示阻断SNS表达或功能可能产生无副作用的镇痛作用。