Huang Yan-You, Kandel Eric R
Kavli Institute for Brain Science, New York, New York, USA.
Learn Mem. 2006 May-Jun;13(3):298-306. doi: 10.1101/lm.166906.
Protein synthesis-dependent late phase of LTP (L-LTP) is typically induced by repeated high-frequency stimulation (HFS). This form of L-LTP is reduced in the aged animal and is positively correlated with age-related memory loss. Here we report a novel form of protein synthesis-dependent late phase of LTP in the CA1 region of hippocampus induced by a brief 1-Hz paired-pulse stimulation (PP-1 Hz, 1 min). In contrast to L-LTP induced by HFS, the late phase of PP-1 Hz LTP does not exist in young adult animals. Rather, it emerges and becomes enhanced in an age-related way. Thus, in 1.5- to 2-mo-old mice, a brief PP-1 Hz stimulation induces only a short lasting LTP, decaying to baseline in about 90 min. By contrast, PP-1 Hz stimulation induces an enduring and protein synthesis dependent LTP in 12- to 18-mo-old mice. The PP-1 Hz-induced L-LTP is dependent on NMDA receptor activation, requires voltage-dependent calcium channels, and is modulated by dopamine D1/D5 receptors. Because memory ability declines with aging, the age-related enhancement of L-LTP induced by PP-1 Hz stimulation indicates that this form of L-LTP appears to be inversely correlated with memory ability.
蛋白质合成依赖性长时程增强(L-LTP)的晚期通常由重复高频刺激(HFS)诱导产生。这种形式的L-LTP在老年动物中会减弱,并且与年龄相关的记忆丧失呈正相关。在此,我们报告了一种新型的蛋白质合成依赖性长时程增强晚期,它由短暂的1赫兹配对脉冲刺激(PP-1 Hz,1分钟)在海马体CA1区域诱导产生。与HFS诱导的L-LTP不同,PP-1 Hz LTP的晚期在年轻成年动物中并不存在。相反,它会以与年龄相关的方式出现并增强。因此,在1.5至2月龄的小鼠中,短暂的PP-1 Hz刺激仅诱导出短暂的长时程增强,在约90分钟内衰减至基线水平。相比之下,PP-1 Hz刺激在12至18月龄的小鼠中诱导出持久的、蛋白质合成依赖性的长时程增强。PP-1 Hz诱导的L-LTP依赖于NMDA受体激活,需要电压依赖性钙通道,并受多巴胺D1/D5受体调节。由于记忆能力会随着衰老而下降,PP-1 Hz刺激诱导的与年龄相关的L-LTP增强表明,这种形式的L-LTP似乎与记忆能力呈负相关。