首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Importance of the CNGA4 channel gene for odor discrimination and adaptation in behaving mice.
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Importance of the CNGA4 channel gene for odor discrimination and adaptation in behaving mice.

机译:CNGA4通道基因对于行为小鼠的气味识别和适应的重要性。

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Odor stimulation of olfactory sensory neurons (OSNs) leads to both the activation and subsequent desensitization of a heteromultimeric cyclic-nucleotide-gated (CNG) channel present in these cells. The native olfactory CNG channel consists of three distinct subunits: CNGA2, CNGA4, and CNGB1b. Mice in which the CNGA4 gene has been deleted display defective Ca(2+)calmodulin-dependent inhibition of the CNG channel, resulting in a striking reduction in adaptation of the odor-induced electrophysiological response in the OSNs. These mutants therefore afford an excellent opportunity to assess the importance of Ca(2+)-mediated CNG channel desensitization for odor discrimination and adaptation in behaving animals. By using an operant conditioning paradigm, we show that CNGA4-null mice are profoundly impaired in the detection and discrimination of olfactory stimuli in the presence of an adapting background odor. The extent of this impairment depends on both the concentration and the molecular identity of the adapting stimulus. Thus, Ca(2+)-dependent desensitization of the odor response in the OSNs mediated by the CNGA4 subunit is essential for normal odor sensation and adaptation of freely behaving mice, preventing saturation of the olfactory signal transduction machinery and extending the range of odor detection and discrimination.
机译:嗅觉感觉神经元(OSNs)的气味刺激导致这些细胞中存在的异多聚环核苷酸门控(CNG)通道的激活和随后的脱敏。天然的嗅觉CNG通道由三个不同的亚基组成:CNGA2,CNGA4和CNGB1b。 CNGA4基因已被删除的小鼠显示缺陷的Ca(2+)钙调蛋白依赖性的CNG通道抑制,导致OSNs中气味诱导的电生理反应的适应性显着降低。因此,这些突变体提供了一个极好的机会来评估Ca(2+)介导的CNG通道脱敏对于行为辨别和适应行为动物的重要性。通过使用操作条件条件范式,我们表明,在存在适应性背景气味的情况下,CNGA4缺失小鼠在嗅觉刺激的检测和辨别中受到严重损害。这种损害的程度取决于适应性刺激的浓度和分子特性。因此,由CNGA4亚基介导的OSNs中气味响应的Ca(2+)依赖性脱敏对于正常的气味感觉和行为自由的小鼠的适应,防止嗅觉信号转导机制饱和并扩展气味检测范围至关重要和歧视。

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