National Center ofNeurology and Psychiatry

Department ofBiochemistry & Cellular Biology

Science TokyoNCNP Brain Physiology and Pathology,Science Tokyo

Epilepsy Research Group

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Research Summary

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Functional analysis of the epilepsy-causing gene DSCAML1

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2. Multi-omics analysis using epilepsy surgery specimens

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Publications

  • Ogata S, Hashizume K, Hayase Y, Kanno Y, Hori K, Balan S, Yoshikawa T, Takahashi H, Taya S, Hoshino M. Potential involvement of DSCAML1 mutations in neurodevelopmental disorders. Genes to Cells. 2021 Mar;26(3):136-151. doi: 10.1111/gtc.12831.
  • Hayase Y, Amano S, Hashizume K, Tominaga T, Miyamoto H, Kanno Y, Ueno-Inoue Y, Inoue T, Yamada M, Ogata S, Balan S, Hayashi K, Miura Y, Tokudome K, Ohno Y, Nishijo T, Momiyama T, Yanagawa Y, Takizawa A, Mashimo T, Serikawa T, Sekine A, Nakagawa E, Takeshita E, Yoshikawa T, Waga C, Inoue K, Goto YI, Nabeshima Y, Ihara N, Yamakawa K, Taya S, Hoshino M. Down syndrome cell adhesion molecule like-1 (DSCAML1) links the GABA system and seizure susceptibility. Acta Neuropathologica Communications. 2020 Nov 30;8(1):206. doi: 10.1186/s40478-020-01082-6.
  • Arimura N, Okada M, Taya S, Dewa KI, Tsuzuki A, Uetake H, Miyashita S, Hashizume K, Shimaoka K, Egusa S, Nishioka T, Yanagawa Y, Yamakawa K, Inoue YU, Inoue T, Kaibuchi K, Hoshino M. DSCAM regulates delamination of neurons in the developing midbrain Science Advances. 2020 Sep 2;6(36):eaba1693. doi: 10.1126/sciadv.aba1693. 3.
  • Arimura N, Dewa KI, Okada M, Yanagawa Y, Taya SI, Hoshino M. Comprehensive and cell-type-based characterization of the dorsal midbrain during development. Genes to Cells. 2019 Jan;24(1):41-59. doi: 10.1111/gtc.12656.
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