Papers - Tokuraku Kiyotaka

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  1. Aggregation of Mouse Serum Amyloid A Protein Was Promoted by Amyloid-Enhancing Factors with the More Genetically Homologous Serum Amyloid A

    Xuguang Lin, Masahiro Kuragano, Kenichi Watanabe, Kiyotaka Tokuraku,International Journal of Molecular Sciences,vol.22,Article Number:1036,2021.01

  2. Design of calcium hydroxide–based granules for livestock sanitation

    Shinya Yamanaka, Shuya Hirano, Koji Uwai, Kiyotaka Tokuraku,Case Studies in Chemical and Environmental Engineering,vol.2,Article Number:100005,2020.09

  3. Microtubule elongation along actin filaments induced by microtubule-associated protein 4 contributes to the formation of cellular protrusions

    Chihiro Doki, Kohei Nishida, Shoma Saito, Miyuki Shiga, Hikaru Makihara, Ayumu Kuramoto, Masahiro Kuragano, Motohiro Nozumi, Michihiro Igarashi, Hiroyuki Nakagawa, Susumu Kotani, Kiyotaka Tokuraku,Journal of Biochemistry,vol.168,(p.295 ~ 303),2020.09

  4. Daurichromenic Acid from the Chinese Traditional Medicinal Plant Rhododendron dauricum Inhibits Sphingomyelin Synthase and Aβ Aggregation

    Hadya Virupaksha Deepak, Mahadeva M. Swamy, Yuta Murai, Yoshiko Suga, Masaki Anetai, Takuro Yo, Masahiro Kuragano, Koji Uwai, Kiyotaka Tokuraku, Kenji Monde,Molecules,vol.25,Article Number:4077,2020.09

  5. Dietary intake of rosmarinic acid increases serum inhibitory activity in amyloid A aggregation and suppresses deposition in the organs of mice

    Xuguang Lin, Kenichi Watanabe, Masahiro Kuragano, Yukina Kurotaki, Ushio Nakanishi, Kiyotaka Tokuraku,International Journal of Molecular Science,vol.21,Article Number:6031,2020.08

  6. Mechanical Stimulation-Induced Orientation of Gliding Microtubules in Confined Microwells

    Inoue Daisuke, Kabir Arif Md. Rashedul, Tokuraku Kiyotaka, Sada Kazuki, Kakugo Akira,ADVANCED MATERIALS INTERFACES,vol.7,(13),Article Number:1902013,2020.07

  7. Three-dimensional real time imaging of amyloid β aggregation on living cells

    Masahiro Kuragano, Ryota Yamashita, Yusaku Chikai, Ryota Kitamura, Kiyotaka Tokuraku,Scientific Reports,vol.10,Article Number:9742,2020.06

  8. Evaluation of amyloid β42 aggregation inhibitory activity of commercial dressings by a microliter-scale high-throughput screening system using quantum-dot nanoprobes

    Masahiro Kuragano, Wataru Yoshinari, Xuguang Lin, Keiya Shimamori, Koji Uwai and Kiyotaka Tokuraku,Foods,vol.9,Article Number:825,2020.06

  9. Long-Range and Directional Allostery of Actin Filaments Plays Important Roles in Various Cellular Activities

    Kiyotaka Tokuraku, Masahiro Kuragano, Taro Q. P. Uyeda,International Journal of Molecular Science,vol.21,Article Number:3209,2020.05

  10. 蛍光イメージング技術を用いたアミロイドβ凝集阻害物質の微量ハイスループットスクリーニングシステム

    倉賀野正弘、上井幸司、徳樂清孝,分光研究,vol.69,(2),(p.64 ~ 68),2020.04

  11. Real-Time 3D Imaging and Inhibition Analysis of Various Amyloid Aggregations Using Quantum Dots

    Xuguang Lin, Nuomin Galaqin, Reina Tainaka, Keiya Shimamori, Masahiro Kuragano, Taro Q.P. Noguchi, Kiyotaka Tokuraku,International Journal of Molecular Science,vol.21,Article Number:1978,2020.03

  12. Adaptation of Patterns of Motile Filaments under Dynamic Boundary Conditions

    Daisuke Inoue, Greg Gutmann, Takahiro Nitta, Arif Md. Rashedul Kabir, Akihiko Konagaya, Kiyotaka Tokuraku, Kazuki Sada, Henry Hess, Akira Kakugo,ACS Nano,vol.13,(11),(p.12452 ~ 12460),2019.11

  13. An automated microliter-scale high-throughput screening system (MSHTS) for real-time monitoring of protein aggregation using quantum-dot nanoprobes

    Rina Sasaki, Reina Tainaka, Yuichi Ando, Yurika Hashi, Deepak H. Virupaksha, Yoshiko Suga, Yuta Murai, Masaki Anetai, Kenji Monde, Kiminori Ota, Ikuko Ito, Haruhisa Kikuchi, Yoshiteru Oshima, Yasuyuki Endo, Hitomi Nakao, Masafumi Sakono, Koji Uwai, and Kiyotaka Tokuraku,SCIENTIFIC REPORTS,vol.9,Article Number:2587,2019.02

  14. Structural insight into microtubule stabilization and kinesin inhibition by Tau family MAPs

    Hideki Shigematsu, Tsuyoshi Imasaki, Chihiro Doki, Takuya Sumi, Mari Aoki, Tomomi Uchikubo‑Kamo, Ayako Sakamoto, Kiyotaka Tokuraku, Mikako Shirouzu, and Ryo Nitta,JOURNAL OF CELL BIOLOGY,vol.217,(p.4155 ~ 4163),2018.12

  15. Uni-directional Propagation of Structural Changes in Actin Filaments

    Taro Q.P. Uyeda, Kien Xuan Ngo, Noriyuki Kodera, Kiyotaka Tokuraku,The Role of Water in ATP Hydrolysis Energy Transduction by Protein Machinery,(p.157 ~ 177),2018

  16. Unidirectional growth of heavy meromyosin (HMM) clusters along actin filaments revealed by real-time fluorescence microscopy

    Rika Hirakawa, Yusuke Nishikawa, Taro Q.P. Uyeda, Kiyotaka Tokuraku,Cytoskeleton,vol.74,(12),(p.482 ~ 489),2017.12

  17. Structure-activity relations of rosmarinic acid derivatives for the amyloid beta aggregation inhibition and antioxidant properties

    Taguchi Riho, Hatayama Koki, Takahashi Tomohito, Hayashi Takafumi, Sato Yuki, Sato Daisuke, Ohta Kiminori, Nakano Hiroto, Seki Chigusa, Endo Yasuyuki, Tokuraku Kiyotaka, Uwai Koji,EUROPEAN JOURNAL OF MEDICINAL CHEMISTRY,vol.138,(p.1066 ~ 1075),2017.09

  18. Allosteric regulation by cooperative conformational changes of actin filaments drives mutually exclusive binding with cofilin and myosin

    Ngo Kien Xuan, Umeki Nobuhisa, Kijima Saku T., Kodera Noriyuki, Ueno Hiroaki, Furutani-Umezu Nozomi, Nakajima Jun, Noguchi Taro Q. P., Nagasaki Akira, Tokuraku Kiyotaka, Uyeda Taro Q. P.,SCIENTIFIC REPORTS,vol.6,Article Number:35449,2016.10

  19. Evaluation of the effects of amyloid beta aggregation from seaweed extracts by a microliter-scale high-throughput screening system with a quantum dot nanoprobe

    Ogara Toshiki, Takahashi Tomohito, Yasui Hajime, Uwai Koji, Tokuraku Kiyotaka,JOURNAL OF BIOSCIENCE AND BIOENGINEERING,vol.120,(1),(p.45 ~ 50),2015.07

  20. Molecular Evolution of a Group of Microtubule-Associated Proteins Sharing Partial Similarities in their Primary Structures

    Yurika Hashi, Susumu Kotani, Kiyotaka Tokuraku,Sci. J. Kanagawa Univ.,vol.26,(p.1 ~ 6),2015.06

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