bioRxiv · 10.1101/2021.12.01.470757
Tadr Is an Axonal Histidine Transporter Required for Visual Neurotransmission in Drosophila
Abstract
Neurotransmitters are generated by de novo synthesis and are essential for sustained, high-frequency synaptic transmission. Histamine, a monoamine neurotransmitter, is synthesized through decarboxylation of histidine by Histidine decarboxylase (Hdc). However, little is known about how histidine is presented to Hdc as a precursor. Here, we identified a specific histidine transporter, TADR (Torn And Diminished Rhabdomeres), that is required for visual transmission in Drosophila. TADR and Hdc co-localized to neuronal terminals, and mutations in tadr reduced levels of histamine, thus disrupting visual synaptic transmission and phototaxis behavior. These results demonstrate that a specific amino acid transporter provides precursors for monoamine neurotransmitters, providing the first genetic evidence that a histidine amino acid transporter plays a critical role in synaptic transmission. These results suggest that TADR-dependent local de novo synthesis of histamine is required for synaptic transmission.
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Wang, T., Han, Y., Peng, L.. 2021-12-03. Tadr Is an Axonal Histidine Transporter Required for Visual Neurotransmission in Drosophila. https://doi.org/10.1101/2021.12.01.470757
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