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Tarusawa, E.

Publications and source records attributed to Tarusawa, E..

2 recordsLinked to original sources

Visualization of trans homophilic interaction of clustered protocadherin in neurons

Clustered protocadherin (Pcdh) functions as a cell recognition molecule through the homophilic interaction in CNS. However, its interactions have yet not been visualized in neurons. We previously reported Pcdh{gamma}B2-FRET probes to be applicable only for cell lines. Herein, we newly designed Pcdh{gamma}B2-FRET probes by fusing FRET donor and acceptor fluorescent proteins to a single Pcdh{gamma}B2 molecule and succeeded in visualizing Pcdh{gamma}B2 homophilic interaction in cultured hippocampal neurons. The {gamma}B2-FRET probe localized in the soma and neurites, and FRET signals were observed at contact sites between neurites and eliminated by EGTA addition. Live imaging revealed that the FRET-negative {gamma}B2 signals were rapidly moving along neurites and soma, whereas the FRET-positive signals remained in place. We observed that the {gamma}B2 proteins at synapses rarely interact homophilically. The {gamma}B2-FRET probe would allow us to elucidate the function of the homophilic interaction and the cell recognition mechanism. Significance StatementWe visualize the Pcdh homophilic interaction using a novel FRET-based probe, and reveal that the homophilically interacting Pcdh proteins are found at contact sites between the neurites and roots of neurites from the soma, and are stable at a location. Additionally, in neurons, Pcdh proteins are located at synapses but rarely interact homophilically.

neuroscience↗

Imbalanced expression of clustered protocadherins in pre- and post-synaptic compartments of CA1 pyramidal cells during hippocampal development

Clustered protocadherins (cPcdhs) are candidates for the neural circuit formation; however, the localization of cPcdhs in pre- and post-synaptic compartments has not been well characterized. Here we examined the localization of cPcdh{gamma} proteins in the mouse hippocampal CA1 region using light and electron microscopy. From postnatal day 7 to 21, cPcdh{gamma} immunosignals were detected in approximately 40-60% of spines of pyramidal cells. SDS-digested freeze-fracture replica labelling revealed that cPcdh{gamma} immunolabeling was found in 50% of PSD 95-positive postsynaptic profiles but only in less than 10% of vGluT1-positive pre-synaptic terminals. Interestingly, cPcdh{gamma}-positive pre-synaptic terminal was exclusively accompanied by cPcdh{gamma}-positive postsynaptic counterpart. In addition, electrophysiological investigations revealed that the miniature excitatory postsynaptic current frequency in cPcdh{gamma} cKO mice was significantly higher than that in wild-type mice. These results suggest that cPcdh{gamma} proteins are unequally distributed in the pre- and post-synaptic membrane during neural circuit development and regulate the number of excitatory synapses.

neuroscience↗