保健衛生学部

Fumio Matsushita

  (松下 文雄)

Profile Information

Affiliation
Professor, Biology, School of Health Sciences Faculty of Rehabilitation, Fujita Health University
Degree
Ph.D.(Kyoto University)

J-GLOBAL ID
200901053954844786
researchmap Member ID
1000226786

Education

 3

Papers

 19
  • Taei MATSUI, Fumio MATSUSHITA, Jiharu HAMAKO, Taiki KANO
    Japanese Journal of Thrombosis and Hemostasis, 36(4) 505-515, 2025  Peer-reviewed
  • Youhei Nashimoto, Fumio Matsushita, Johannes M Dijkstra, Yuta Nakamura, Hidehiko Akiyama, Jiharu Hamako, Takashi Morita, Satohiko Araki, Taei Matsui
    Toxins, 14(4), Mar 25, 2022  
    Bitiscetin-1 (aka bitiscetin) and bitiscetin-2 are C-type lectin-like proteins purified from the venom of Bitis arietans (puff adder). They bind to von Willebrand factor (VWF) and-at least bitiscetin-1-induce platelet agglutination via enhancement of VWF binding to platelet glycoprotein Ib (GPIb). Bitiscetin-1 and -2 bind the VWF A1 and A3 domains, respectively. The A3 domain includes the major site of VWF for binding collagen, explaining why bitiscetin-2 blocks VWF-to-collagen binding. In the present study, sequences for a novel bitiscetin protein-bitiscetin-3-were identified in cDNA constructed from the B. arietans venom gland. The deduced amino acid sequences of bitiscetin-3 subunits α and β share 79 and 80% identity with those of bitiscetin-1, respectively. Expression vectors for bitiscetin-3α and -3β were co-transfected to 293T cells, producing the heterodimer protein recombinant bitiscetin-3 (rBit-3). Functionally, purified rBit-3 (1) induced platelet agglutination involving VWF and GPIb, (2) did not compete with bitiscetin-1 for binding to VWF, (3) blocked VWF-to-collagen binding, and (4) lost its platelet agglutination inducing ability in the presence of an anti-VWF monoclonal antibody that blocked VWF-to-collagen binding. These combined results suggest that bitiscetin-3 binds to the A3 domain, as does bitiscetin-2. Except for a small N-terminal fragment of a single subunit-which differs from that of both bitiscetin-3 subunits-the sequences of bitiscetin-2 have never been determined. Therefore, by identifying and analyzing bitiscetin-3, the present study is the first to present the full-length α- and β-subunit sequences and recombinant expression of a bitiscetin-family toxin that blocks the binding of VWF to collagen.
  • Riona Hatazawa, Saori Fukuda, Kanako Kumamoto, Fumio Matsushita, Shizuko Nagao, Takayuki Murata, Koki Taniguchi, Taei Matsui, Satoshi Komoto
    The Journal of general virology, 102(4), Apr, 2021  Peer-reviewed
    With the recent establishment of robust reverse genetics systems for rotavirus, rotavirus is being developed as a vector to express foreign genes. However, insertion of larger sequences such as those encoding multiple foreign genes into the rotavirus genome has been challenging because the virus segments are small. In this paper, we attempted to insert multiple foreign genes into a single gene segment of rotavirus to determine whether it can efficiently express multiple exogenous genes from its genome. At first, we engineered a truncated NSP1 segment platform lacking most of the NSP1 open reading frame and including a self-cleaving 2A sequence (2A), which made it possible to generate a recombinant rotavirus stably expressing NanoLuc (Nluc) luciferase as a model foreign gene. Based on this approach, we then demonstrated the generation of a replication-competent recombinant rotavirus expressing three reporter genes (Nluc, EGFP, and mCherry) by separating them with self-cleaving 2As, indicating the capacity of rotaviruses as to the insertion of multiple foreign genes. Importantly, the inserted multiple foreign genes remained genetically stable during serial passages in cell culture, indicating the potential of rotaviruses as attractive expression vectors. The strategy described here will serve as a model for the generation of rotavirus-based vectors designed for the expression and/or delivery of multiple foreign genes.
  • Taiki Kano, Kazunao Kondo, Jiharu Hamako, Fumio Matsushita, Kazuya Sakai, Taei Matsui
    International Journal of Hematology, 108(2) 1-6, Apr 4, 2018  Peer-reviewed
  • T. Matsui, A. Hori, J. Hamako, F. Matsushita, Y. Ozeki, Y. Sakurai, M. Hayakawa, M. Matsumoto, Y. Fujimura
    JOURNAL OF THROMBOSIS AND HAEMOSTASIS, 15(3) 538-548, Mar, 2017  Peer-reviewed

Misc.

 12

Presentations

 28

Teaching Experience

 7

Professional Memberships

 2

Research Projects

 4

Other

 2

作成した教科書、教材、参考書

 4
  • 件名(英語)
    基礎科学実験(生物学)テキスト
    開始年月日(英語)
    2019
    終了年月日(英語)
    2024
  • 件名(英語)
    生物学基礎実験テキスト(放射線学科編)
    開始年月日(英語)
    2009
    終了年月日(英語)
    2018
    概要(英語)
    顕微鏡操作の基礎、細胞や筋収縮の観察、DNAの性質、DNAに対する紫外線の効果
  • 件名(英語)
    自然科学情報論演習テキスト(生命科学編)
    開始年月日(英語)
    2009
    終了年月日(英語)
    2015/11
    概要(英語)
    タンパク質のアミノ酸配列や立体構造、遺伝子の塩基配列の情報の検索・表示・比較
  • 件名(英語)
    生物学基礎実験テキスト(臨床検査学科編)
    開始年月日(英語)
    2009
    終了年月日(英語)
    2015/10
    概要(英語)
    顕微鏡操作の基礎、細胞の観察、DNAの抽出と形質転換、DNAの切断と電気泳動