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Reduced Delayed-Rectifier K+ Current in the Learning Mutant rutabaga

机译:学习突变体大头菜中降低的延迟整流子K +电流

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摘要

In the Drosophila mutant rutabaga, short-term memory is deficient and intracellular cyclic adenosine monophosphate (cAMP) concentration is reduced. We characterized the delayed-rectifier potassium current (IKDR) in rutabaga as compared with the wild-type. The conventional whole-cell patch-clamp technique was applied to cultured Drosophila neurons derived from embryonic neuroblasts. IKDR was smaller in rutabaga (368 ± 11 pA) than in wild-type (541 ± 14 pA) neurons, measured in a Ca2+-free solution. IKDR was clearly activated at ∼0 mV in the two genotypes. IKDR typically reached its peak within 10–20 msec after the start of the pulse (60 mV). There was no difference in inactivation of IKDR for wild-type (14 ± 3%) and rutabaga (19 ± 3%). After application of 10 mM TEA, in wild-type, IKDR was reduced by 46 ± 5%, whereas in rutabaga, IKDR was reduced by 28 ± 3%. Our results suggest that IKDR is carried by two different types of channels, one which is TEA-sensitive, whereas the other is TEA-insensitive. Apparently, the TEA-sensitive channel is less expressed in rutabaga neurons than in wild-type neurons. Conceivably, altered neuronal excitability in the rutabaga mutant could disrupt the processing of neural signals necessary for learning and memory.
机译:在果蝇突变体大头菜中,短期记忆不足并且细胞内环状单磷酸腺苷(cAMP)浓度降低。与野生型相比,我们对大头菜中的延迟整流钾电流(IKDR)进行了表征。常规的全细胞膜片钳技术被应用于培养源自胚胎神经母细胞的果蝇神经元。在不含Ca 2 + 的溶液中测得,大头菜(368±11 pA)的IKDR比野生型(541±14 pA)的小。在两种基因型中,IKDR明显在〜0 mV激活。 IKDR通常在脉冲开始后的10–20毫秒(60 mV)内达到峰值。野生型(14%±3%)和大头菜(19%±3%)的IKDR灭活没有差异。施用10 mM TEA后,在野生型中IKDR降低46%±5%,而在大头菜中,IKDR降低28%±3%。我们的结果表明,IKDR由两种不同类型的通道承载,一种通道对TEA敏感,而另一种通道对TEA不敏感。显然,与野生型神经元相比,大头菜神经元中TEA敏感通道的表达较少。可以想象,大头菜突变体中神经元兴奋性的改变可能会破坏学习和记忆所必需的神经信号的处理。

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