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首页> 外文期刊>Scientific reports. >The Amino Acid Transporter JhI-21 Coevolves with Glutamate Receptors, Impacts NMJ Physiology, and Influences Locomotor Activity in Drosophila Larvae
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The Amino Acid Transporter JhI-21 Coevolves with Glutamate Receptors, Impacts NMJ Physiology, and Influences Locomotor Activity in Drosophila Larvae

机译:氨基酸转运蛋白JhI-21与谷氨酸受体共同进化,影响NMJ生理,并影响果蝇幼虫的自发活动。

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Changes in synaptic physiology underlie neuronal network plasticity and behavioral phenomena, which are adjusted during development. The Drosophila larval glutamatergic neuromuscular junction (NMJ) represents a powerful synaptic model to investigate factors impacting these processes. Amino acids such as glutamate have been shown to regulate Drosophila NMJ physiology by modulating the clustering of postsynaptic glutamate receptors and thereby regulating the strength of signal transmission from the motor neuron to the muscle cell. To identify amino acid transporters impacting glutmatergic signal transmission, we used Evolutionary Rate Covariation (ERC), a recently developed bioinformatic tool. Our screen identified ten proteins co-evolving with NMJ glutamate receptors. We selected one candidate transporter, the SLC7 (Solute Carrier) transporter family member JhI-21 (Juvenile hormone Inducible-21), which is expressed in Drosophila larval motor neurons. We show that JhI-21 suppresses postsynaptic muscle glutamate receptor abundance, and that JhI-21 expression in motor neurons regulates larval crawling behavior in a developmental stage-specific manner.
机译:突触生理学的变化是神经元网络可塑性和行为现象的基础,在发育过程中会进行调整。果蝇幼虫谷氨酸能神经肌肉接头(NMJ)代表了一个强大的突触模型,以研究影响这些过程的因素。氨基酸(例如谷氨酸)已显示出通过调节突触后谷氨酸受体的聚集从而调节从运动神经元到肌肉细胞的信号传递的强度来调节果蝇NMJ生理。为了确定影响谷氨酸能信号传递的氨基酸转运蛋白,我们使用了最近开发的生物信息学工具进化速率协变(ERC)。我们的筛选确定了与NMJ谷氨酸受体共同进化的十种蛋白质。我们选择了一种候选转运蛋白,SLC7(Solute Carrier)转运蛋白家族成员JhI-21(少年激素诱导型21),其在果蝇幼虫运动神经元中表达。我们显示,JhI-21抑制突触后肌肉谷氨酸受体丰度,并且JhI-21在运动神经元中的表达以发育阶段特异的方式调节幼虫的爬行行为。

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