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影响磷脂酶C介导的信号转导的药物会阻断成年斑马鱼的嗅觉环核苷酸门控电流。

Drugs affecting phospholipase C-mediated signal transduction block the olfactory cyclic nucleotide-gated current of adult zebrafish.

作者信息

Ma L, Michel W C

机构信息

Department of Physiology, University of Utah School of Medicine, Salt Lake City, Utah 84108, USA.

出版信息

J Neurophysiol. 1998 Mar;79(3):1183-92. doi: 10.1152/jn.1998.79.3.1183.

Abstract

Amino acid and bile salt odorants are detected by zebrafish with relatively independent odorant receptors, but the transduction cascade(s) subsequently activated by these odorants remains unknown. Electro-olfactogram recording methods were used to determine the effects of two drugs, reported to affect phospholipase C (PLC)/inositol tripohsphate (IP3)-mediated olfactory transduction in other vertebrate species, on amino acid and bile salt-evoked responses. At the appropriate concentrations, either an IP3-gated channel blocker, ruthenium red (0.01-0.1 microM), or a PLC inhibitor, neomycin (50 microM), reduced amino-acid-evoked responses to a significantly greater extent than bile salt-evoked responses. Excised patch recording techniques were used to measure the affects of these drugs on second-messenger-activated currents. Ruthenium red and neomycin are both effective blockers of the olfactory cyclic nucleotide-gated (CNG) current. Both drugs blocked the CNG channel in a voltage-dependent and reversible manner. No IP3-activated currents could be recorded. The differential effects of ruthenium red and neomycin on odor-evoked responses suggest the activation of multiple transduction cascades. The nonspecific actions of these drugs on odor-activated transduction pathways and our inability to record an IP3-activated current do not permit the conclusion that zebrafish, like other fish species, use a PLC/IP3-mediated transduction cascade in the detection of odorants.

摘要

斑马鱼通过相对独立的气味受体来检测氨基酸和胆盐气味剂,但这些气味剂随后激活的转导级联反应仍不清楚。采用电嗅图记录方法来确定两种药物对氨基酸和胆盐诱发反应的影响,据报道这两种药物会影响其他脊椎动物物种中磷脂酶C(PLC)/肌醇三磷酸(IP3)介导的嗅觉转导。在适当浓度下,IP3门控通道阻滞剂钌红(0.01 - 0.1微摩尔)或PLC抑制剂新霉素(50微摩尔)对氨基酸诱发反应的降低程度明显大于对胆盐诱发反应的降低程度。采用膜片钳记录技术来测量这些药物对第二信使激活电流的影响。钌红和新霉素都是嗅觉环核苷酸门控(CNG)电流的有效阻滞剂。两种药物均以电压依赖性和可逆方式阻断CNG通道。未记录到IP3激活电流。钌红和新霉素对气味诱发反应的不同影响表明激活了多个转导级联反应。这些药物对气味激活转导途径的非特异性作用以及我们无法记录到IP3激活电流,使得我们无法得出斑马鱼与其他鱼类一样在检测气味剂时使用PLC/IP3介导的转导级联反应这一结论。

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