Michisuke Yuzaki
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Professor Michisuke Yuzaki is a faculty member at Keio University School of Medicine in Japan. His research interests encompass synaptic plasticity, neuron signaling, and the interplay between immune responses and neuronal activity, as evidenced by his recent articles. His work includes the investigation of AMPA and kainate receptors, as well as the role of macrophages in the synovium. Professor Yuzaki's contributions significantly enhance our understanding of neuronal functions and their implications for hearing and synaptic integrity.
Recent Grants
Grant: Close
細胞外足場タンパク質によるシナプス・非シナプス機能制御機構の解明
Open Date: 2020-04-01
Close Date: 2025-03-31
Grant: Close
Dynamic regulation of neural circuit remodeling by scrap & build system
Open Date: 2016-06-30
Close Date: 2021-03-31
Grant: Close
Dynamic regulation of cerebellar neural circuits by "scrap and build" mechanisms
Open Date: 2016-06-30
Close Date: 2021-03-31
Grant: Close
Regulation of synapse formation, maintenance, elimination and plasticity by C1q family proteins
Open Date: 2015-05-29
Close Date: 2020-03-31
Grant: Close
Bridge over troubled synapses: synthetic extracellular protein scaffolds for neuronal connectivity
Open Date: 2014-05-01
Close Date: 2017-04-30
Articles (16)
Brain-Specific Angiogenesis Inhibitor 3 Is Expressed in the Cochlea and Is Necessary for Hearing Function in Mice
Mammalian auditory hair cells transduce sound-evoked traveling waves in the cochlea into nerve stimuli, which are essential for hearing function. Pillar cells located between the inner and outer hair cells are involved in the formation of the tunnel of Corti, which incorporates outer-hair-cell-driven fluid oscillation and basilar membrane movement, leading to the fine-tuned frequency-specific perception of sounds by the inner hair cells. However, the detailed molecular mechanism underlying the development and maintenance of pillar cells remains to be elucidated. In this study, we examined the expression and function of brain-specific angiogenesis inhibitor 3 (Bai3), an adhesion G-protein-coupled receptor, in the cochlea. We found that Bai3 was expressed in hair cells in neonatal mice and pillar cells in adult mice, and, interestingly, Bai3 knockout mice revealed the abnormal formation of pillar cells, with the elevation of the hearing threshold in a frequency-dependent manner. Furthermore, old Bai3 knockout mice showed the degeneration of hair cells and spiral ganglion neurons in the basal turn. The results suggest that Bai3 plays a crucial role in the development and/or maintenance of pillar cells, which, in turn, are necessary for normal hearing function. Our results may contribute to understanding the mechanisms of hearing loss in human patients.
Year:
2023
Collaborators (9)
Masayuki Itoh
Assistant Professor
Gakushuin University
Daisuke Ino
Lecturer
Osaka University
Junichi Iwakiri
Assistant professor
University of Tokyo
Kenji Yatsuzuka
Assistant Professor
Nagoya University
Pierre Paoletti
Université PSL
Wataru Kakegawa
Associate Professor
Keio University School of Medicine
Masaaki Nishiyama
Professor
Kanazawa University
Ryou Kubota
Junior Associate Professor
Kyoto University
Masato Fujioka
Kitasato University School of Medicine

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