研究者業績

池原 早苗

イケハラ サナエ  (Sanae Ikehara)

基本情報

所属
千葉大学 大学院医学研究院腫瘍病理学 助教
国立研究開発法人産業技術総合研究所 細胞分子工学研究部門 招聘研究員
学位
医学博士(名古屋大学)

J-GLOBAL ID
200901037592681594
researchmap会員ID
6000017015

論文

 47
  • 池原 譲, 若井 健, 池原 早苗, 山口 高志, 東 和彦, 大木 翔太, 飛梅 実, 鈴木 良夫, 山本 一夫, 馬場 恒明
    日本病理学会会誌 112(1) 157-157 2023年3月  
  • 村上 未樹, 池原 早苗, 東 和彦, 大木 翔太, 若井 健, 山口 高志, 山本 一夫, 鈴木 良夫, 池田 純一郎, 池原 譲
    日本病理学会会誌 112(1) 351-351 2023年3月  
  • 三神 功亮, 若井 健, 大塚 亮太, 池原 早苗, 山口 高志, 秋田 新介, 長嶋 健, 三川 信之, 松原 久裕, 池原 譲
    日本病理学会会誌 112(1) 339-339 2023年3月  
  • 若井 健, 米田 慧, 三神 功亮, 東 和彦, 池原 早苗, 山口 高志, 坂本 信一, 納谷 幸男, 市川 智彦, 池原 譲
    日本病理学会会誌 112(1) 280-280 2023年3月  
  • Karin Murakami, Ryo Tamura, Sanae Ikehara, Hayato Ota, Tomomi Ichimiya, Naoki Matsumoto, Hisahiro Matsubara, Shoko Nishihara, Yuzuru Ikehara, Kazuo Yamamoto
    Biochemical Journal 480(1) 41-56 2023年1月13日  査読有り
    Glycosaminoglycan (GAG) is a polysaccharide present on the cell surface as an extracellular matrix component, and is composed of repeating disaccharide units consisting of an amino sugar and uronic acid except in the case of the keratan sulfate. Sulfated GAGs, such as heparan sulfate, heparin, and chondroitin sulfate mediate signal transduction of growth factors, and their functions vary with the type and degree of sulfated modification. We have previously identified human and mouse cochlins as proteins that bind to sulfated GAGs. Here, we prepared a recombinant cochlin fused to human IgG-Fc or Protein A at the C-terminus as a detection and purification tag and investigated the ligand specificity of cochlin. We found that cochlin can be used as a specific probe for highly sulfated heparan sulfate and chondroitin sulfate E. We then used mutant analysis to identify the mechanism by which cochlin recognizes GAGs and developed a GAG detection system using cochlin. Interestingly, a mutant lacking the vWA2 domain bound to various types of GAGs. The N-terminal amino acid residues of cochlin contributed to its binding to heparin. Pathological specimens from human myocarditis patients were stained with a cochlin-Fc mutant. The results showed that both tryptase-positive and tryptase-negative mast cells were stained with this mutant. The identification of detailed modification patterns of GAGs is an important method to elucidate the molecular mechanisms of various diseases. The method developed for evaluating the expression of highly sulfated GAGs will help understand the biological and pathological importance of sulfated GAGs in the future.

MISC

 44

共同研究・競争的資金等の研究課題

 4

産業財産権

 11