首页> 美国卫生研究院文献>The Journal of Neuroscience >Mutations of the Caenorhabditis elegansBrain-Specific Inorganic Phosphate Transporter eat-4Affect Habituation of the Tap–Withdrawal Response without Affecting the Response Itself
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Mutations of the Caenorhabditis elegansBrain-Specific Inorganic Phosphate Transporter eat-4Affect Habituation of the Tap–Withdrawal Response without Affecting the Response Itself

机译:秀丽隐杆线虫的突变脑特异性无机磷酸盐转运蛋白eat-4在不影响应答的情况下影响抽头-应答反应的习性

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摘要

The studies reported here were designed to investigate the role of the mutation eat-4 in the response to tap and in habituation in the nematode Caenorhabditis elegans. InC. elegans eat-4 has been found to affect a number of glutamatergic pathways. It has been hypothesized to positively regulate glutaminase activity and therefore glutamatergic neurotransmission. In the eat-4(ky5) loss-of-function worms, there is presumably insufficient glutamate available for sustained transmission. In the experiments reported here eat-4 worms showed no differences from wild-type in the magnitude of response to a single tap, indicating that the neural circuit underlying the response was intact and functional in the mutant worms. However, wheneat-4 worms were given repeated taps the resulting habituation was different from that seen in wild-type worms:eat-4 worms habituate more rapidly and recover more slowly than wild-type worms at all interstimulus intervals tested. In addition, eat-4 worms do not show dishabituation. The same transgene rescues pharyngeal activity defects and both the habituation and dishabituation deficits seen in theeat-4 worms. Our results suggest that neurotransmitter regulation plays a role in habituation and may play a role in dishabituation.
机译:本文报道的研究旨在研究突变eat-4在线虫秀丽隐杆线虫对水龙头的反应和适应中的作用。 InC。秀丽隐杆线虫eat-4被发现影响许多谷氨酸能途径。已经假设它可以正向调节谷氨酰胺酶活性,从而调节谷氨酸能神经传递。在eat-4(ky5)功能丧失的蠕虫中,可能没有足够的谷氨酸用于持续传播。在这里报道的实验中,eat-4蠕虫对单次敲击的响应程度与野生型没有差异,这表明响应背后的神经回路在突变蠕虫中是完整的且具有功能。但是,反复吃掉eat-4蠕虫后,其习性与野生型蠕虫不同:在所有测试的刺激间隔内,eat-4蠕虫比野生型蠕虫的习性更快,恢复速度更慢。此外,eat-4蠕虫不会显示出栖息地。相同的转基因可以挽救在eat-4蠕虫中发现的咽部活动缺陷以及适应和不适应缺陷。我们的研究结果表明神经递质调节在习惯中起作用,并且可能在习惯中起作用。

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