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Sokabe, T.

Publications and source records attributed to Sokabe, T..

2 recordsLinked to original sources

Ether phospholipids modulate somatosensory responses by tuning multiple receptor functions in Drosophila

Transient receptor potential (TRP) and PIEZO channels are known receptors for physical stimuli, such as temperature and mechanical touch, respectively, in sensory nerves. As these receptors are localized in the plasma membrane, the modulation of sensory receptor activity by plasma membrane lipids has recently attracted attention. In this study, we focused on ether phospholipids (ePLs), which are abundant in neurons, and analyzed their role in somatosensation using Drosophila as a model. Reduced mechanosensory behavior was observed with ePL synthesizing gene knockout or knockdown in mechano-sensitive PIEZO-expressing neurons. The activation of PIEZO channels was significantly augmented in the presence of ePLs. Furthermore, we observed that ePLs modulate the thermosensory behavior and reduce thermal threshold of the thermosensitive TRPA1 channels. Finally, we revealed that ePLs affect membrane tension and lipid order of the plasma membrane in culture cells. Our study identified ePLs as a modulator of multiple somatosensation modalities in Drosophila, which underscore the significance of functional interaction between membrane lipid and sensory channel proteins.

molecular biology↗

Light-induction of endocannabinoids and activation of Drosophila TRPC channels

Drosophila phototransduction represents a classical model for signaling cascades that culminate with activation of TRP channels. TRP and TRPL are the canonical TRP (TRPC) channels, which are gated by light stimulation of rhodopsin and engagement of Gq and phospholipase C{beta} (PLC). Despite decades of investigation, the mechanism of TRP activation in photoreceptor cells is unresolved. Here, using a combination of genetics, lipidomics and Ca2+ imaging, we found that light increased the levels of an abundant endocannabinoid, 2-linoleoyl glycerol (2-LG) in vivo. The elevation in 2-LG strictly depended on the PLC encoded by norpA. Moreover, this endocannabinoid upregulated TRPC-dependent Ca2+ influx in a heterologous expression system and in dissociated ommatidia from compound eyes. We propose that 2-LG is a physiologically relevant endocannabinoid that activates TRPC channels in photoreceptor cells.

neuroscience↗