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一氧化氮 - 环鸟苷酸级联反应在环磷酸腺苷依赖性长期记忆形成中的关键作用。

Critical role of nitric oxide-cGMP cascade in the formation of cAMP-dependent long-term memory.

作者信息

Matsumoto Yukihisa, Unoki Sae, Aonuma Hitoshi, Mizunami Makoto

机构信息

Graduate School of Life Sciences, Tohoku University, Aoba-ku, Sendai 980-8577, Japan.

出版信息

Learn Mem. 2006 Jan-Feb;13(1):35-44. doi: 10.1101/lm.130506.

Abstract

Cyclic AMP pathway plays an essential role in formation of long-term memory (LTM). In some species, the nitric oxide (NO)-cyclic GMP pathway has been found to act in parallel and complementary to the cAMP pathway for LTM formation. Here we describe a new role of the NO-cGMP pathway, namely, stimulation of the cAMP pathway to induce LTM. We have studied the signaling cascade underlying LTM formation by systematically coinjecting various "LTM-inducing" and "LTM-blocking" drugs in crickets. Multiple-trial olfactory conditioning led to LTM that lasted for several days, while memory induced by single-trial conditioning decayed away within several hours. Injection of inhibitors of the enzyme forming NO, cGMP, or cAMP into the hemolymph prior to multiple-trial conditioning blocked LTM, whereas injection of an NO donor, cGMP analog, or cAMP analog prior to single-trial conditioning induced LTM. Induction of LTM by injection of an NO donor or cGMP analog paired with single-trial conditioning was blocked by inhibitors of the cAMP pathway, but induction of LTM by a cAMP analog was unaffected by inhibitors of the NO-cGMP pathway. Inhibitors of cyclic nucleotide-gated channel (CNG channel) or calmodulin-blocked induction of LTM by cGMP analog paired with single-trial conditioning, but they did not affect induction of LTM by cAMP analog. Our findings suggest that the cAMP pathway is a downstream target of the NO-cGMP pathway for the formation of LTM, and that the CNG channel and calcium-calmodulin intervene between the NO-cGMP pathway and the cAMP pathway.

摘要

环磷酸腺苷(cAMP)信号通路在长期记忆(LTM)形成中起着至关重要的作用。在某些物种中,已发现一氧化氮(NO)-环磷酸鸟苷(cGMP)信号通路在LTM形成过程中与cAMP信号通路并行且互补发挥作用。在此,我们描述了NO-cGMP信号通路的一个新作用,即刺激cAMP信号通路以诱导LTM。我们通过在蟋蟀中系统地共注射各种“LTM诱导”和“LTM阻断”药物,研究了LTM形成背后的信号级联反应。多次试验的嗅觉条件训练导致持续数天的LTM,而单次试验条件训练诱导的记忆在数小时内消退。在多次试验条件训练前向血淋巴中注射生成NO、cGMP或cAMP的酶的抑制剂会阻断LTM,而在单次试验条件训练前注射NO供体、cGMP类似物或cAMP类似物则会诱导LTM。注射NO供体或cGMP类似物并结合单次试验条件训练诱导的LTM被cAMP信号通路的抑制剂阻断,但cAMP类似物诱导的LTM不受NO-cGMP信号通路抑制剂的影响。环核苷酸门控通道(CNG通道)或钙调蛋白的抑制剂阻断了cGMP类似物结合单次试验条件训练诱导的LTM,但它们不影响cAMP类似物诱导的LTM。我们的研究结果表明,cAMP信号通路是NO-cGMP信号通路在LTM形成中的下游靶点,并且CNG通道和钙-钙调蛋白在NO-cGMP信号通路和cAMP信号通路之间起干预作用。

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