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多細胞システム制御研究グループ

研究概要

我々は独自の細胞工学(細胞操作、生体模倣・疾患モデル)、統合オミクス解析(シングルセル糖鎖/RNA seq)、有機合成(糖鎖・糖ペプチド合成技術)を融合することで、細胞産業・再生医療・創薬・ヘルスケアの推進に貢献する革新的技術を開発します。

多細胞システム制御研究グループ紹介

研究課題

研究課題1:糖鎖解析技術の開発
研究担当者:小高 陽樹、舘野 浩章

糖鎖は全ての細胞の最も外側を覆い、細胞の種類や状態(分化、がん化)で変化することから「細胞の顔」と呼ばれ、再生医療に用いる細胞の品質管理や、がん等の疾患の創薬標的として期待されています。我々はこれまで組換えレクチンライブラリーを構築し、これらを用いることで糖鎖をプロファイリングする技術の開発に取り組んできました。まず複数のレクチンをスライドグラス上に固定化したレクチンアレイの開発と利用を進めてきました。また最近、シーケンシングによる糖鎖プロファイリング技術を開発し、1細胞ごとの糖鎖発現と遺伝子発現を同時解析する技術(scGR-seq)の確立に展開することに成功しました。さらに微生物叢の糖鎖プロファイリングにも応用しました。本技術の更なる高度化と応用を進めていきます。

多細胞システム制御研究グループ2

研究課題

研究課題2:幹細胞品質管理技術の開発
研究担当者:渡邊 朋子、回渕 修治、舘野 浩章

ヒト多能性細胞やヒト間葉系幹細胞は再生医療のための細胞源として期待されています。これら細胞をヒトに移植する際、細胞の安全性や品質の確保が極めて重要です。我々はこれまで、移植用細胞に残存する造腫瘍性のヒト多能性幹細胞を非破壊的に検出し、除去する技術を開発し、企業と共同で実用化することに成功しました。今後も新しい品質管理技術の開発を目指します。

多細胞システム制御研究グループ3

研究課題

研究課題3:がん、糖尿病、精神・神経変性疾患診断治療技術の開発
研究担当者:回渕 修治、小高 陽樹、桑原 知子、舘野 浩章

がん、糖尿病、精神・神経疾患の診断技術の開発は、確定診断・治療方針の決定・QOLの向上・早期の社会復帰のために重要です。我々は正常細胞と疾患細胞(前立腺がん、乳がん、膵癌、糖尿病、精神疾患)の細胞機能や遺伝子・糖鎖発現を比較解析することで、新規の診断技術の開発を目指しています。

多細胞システム制御研究グループ4

研究課題

研究課題4:エクソソームの分離精製、活用技術の開発
研究担当者:石井 則行、小高 陽樹、渡邊 朋子、舘野 浩章

エクソソームは真核細胞のエンドソーム区画で産生される細胞膜結合性の細胞外小胞であり、体循環に乗って他の細胞へと運ばれ、発生、生理、病理的プロセスにおいて細胞間コミュニケーションツールとして機能しています。所内外と連携し、細胞から分泌された直後のインタクトな状態にある膜小胞の調製技術の高度化、活用技術の開発、糖鎖機能解明など、理工学的視点からナノサイズの未開拓領域である謎多きエクソソームの本質の解明に挑戦します。

多細胞システム制御研究グループ5

研究課題

研究課題6:マイクロ波を利用した糖鎖や創薬活性化合物の精密合成研究
研究担当者:清水 弘樹

近年、マイクロ波は化学反応の効率加熱手段として多用されるが、低温での反応や精密な温度制御が要求される糖鎖や創薬活性物質の精密合成での利用展開は進んでいない。また、化学反応におけるマイクロ波の加熱特性以外の特有効果については疑問視する声も多く、 「まやかし」とも揶揄する学者も存在する。
我々は、1)冷却機能を備えたマイクロ波照射反応装置を製作し、精密な温度制御や低温での照射を可能とし、2)LeX3糖体合成やペプチド合成に適応させ、マイクロ波特有の効果を明確にした。そして3)高価で貴重な糖アミノ酸シントンの安定性と反応性両方の向上に成功し、世界に類のない複雑な糖鎖ペプチドの数十mgスケール合成法の確立、4)酵素反応を題材としてマイクロ波の分子選択活性化効果を考察し、マイクロ波効果の本質に迫る、などの研究をすすめている。

多細胞システム制御研究グループ6

研究課題

研究課題7:昆虫モデルを利用した社会環境と健康・寿命の連関解明
研究担当者:古藤 日子

生物は他個体との密接な社会的コミュニケーションの中で生活し、社会環境の変化は私たちの健康や寿命に対し正にも負にも大きな影響を及ぼしています。我々は複雑な社会性をもって生活する社会性昆虫を社会的ストレスの評価モデルとして確立し、社会環境と健康・寿命の連関機構を解明し、社会的ストレスの緩和と健康長寿社会の実現に貢献する研究を目指します。

多細胞システム制御研究グループ7

グループの構成メンバー

                               
顔写真 所属・役職および名前 専門分野 その他、etc
戸井グループ長の写真 研究グループ長(兼務) 戸井 基道
  • 難治性・希少神経筋疾患モデルの構築
  • 分子動態イメージング
  • モデル動物による機能性成分評価
  •  
  •  
舘野研究グループ付の写真 研究グループ付(兼務) 舘野 浩章
  • 糖鎖・レクチン工学技術の開発
  • 細胞操作技術技術の開発
  • エクソソーム操作技術の開発
清水主任研究員の写真 主任研究員 清水 弘樹
  • マイクロ波の化学的作用機序の解明とその利用展開
  • 複雑な糖ペプチドや糖鎖、薬剤候補化合物の合成
  • 細胞関与化合物ベースとした化学研究
桑原主任研究員の写真 主任研究員 桑原 知子
  • 疾患体モデルの標的因子探索
  • 疾患由来組織・細胞の機能解析
  • 神経幹細胞の制御因子解析
回渕主任研究員の写真 主任研究員 回渕 修治
  • 細胞の操作・管理技術の開発
  • 細胞の突然変異の解析
  • 細胞・組織・臓器における性(雌雄)差の解析
古藤主任研究員の写真 主任研究員 古藤 日子
  • 昆虫を使った社会的ストレス研究モデルの構築
  • 社会性と健康、寿命の連関解明
  • 昆虫資源に着目した未知生物機能と制御分子の探索
 
渡邊研究グループ付の写真 主任研究員 渡邊 朋子
  • 幹細胞の評価マーカー探索
  • 幹細胞の分化能評価系の開発
  • 細胞の単離・濃縮技術の開発
 
小高研究員の写真 主任研究員 小高 陽樹
  • 脳オルガノイドによる疾患モデルの開発
  • 糖鎖による細胞評価・操作技術の開発
  • 細胞外小胞による疾患マーカーの開発
 
佐野研究員の写真 研究員 佐野 加苗
  • 糖鎖の化学合成技術の開発
  • 各種疾患と関連する糖鎖生合成酵素の検出技術の開発
  • 組織特異的な薬剤送達システムの開発
 

業績リスト

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    GENES (Basel). 2024 Feb 26;15(3):300. doi: 10.3390/genes15030300
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    Lectin Blotting of Cell Lysates.
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    Xenopus Dusp6 modulates FGF signaling to precisely pattern pre-placodal ectoderm.
    DEVELOPMENTAL BIOLOGY. 2022 May 16. doi: 10.1016/j.ydbio.2022.05.009
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    FRONT CELL DEV BIOL. 2022 May 27;10:919168. doi: 10.3389/fcell.2022.919168
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    MOL ECOL. 2022 Jun 12. doi: 10.1111/mec.16551
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    CD63-positive extracellular vesicles are potential diagnostic biomarkers of pancreatic ductal adenocarcinoma.
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    The therapeutic capacity of bone marrow MSC-derived extracellular vesicles in Achilles tendon healing is passage-dependent and indicated by specific glycans.
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    TRANSPL INT. 2022 Mar 23;35:10248. doi: 10.3389/ti.2022.10248
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    Quantitative evaluation of glycan-binding specificity of recombinant Concanavalin A produced in lettuce (Lactuca sativa).
    BIOTECHNOL BIOENG. 2022 Apr 8. doi: 10.1002/bit.28099
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    MICROSC MICROANAL. 2022 Apr 1:1-10. doi: 10.1017/S1431927622000411
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    Distinguishing functional exosomes and other extracellular vesicles as a nucleic acid cargo by the anion-exchange method.
    J EXTRACELL VESICLES. 2022 Mar;11(3):e12205. doi: 10.1002/jev2.12205
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    scGR-seq: Integrated analysis of glycan and RNA in single cells.
    STAR PROTOC. 2022 Feb 18;3(1):101179. doi: 10.1016/j.xpro.2022.101179. eCollection
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    Self-Assembling Lectin Nano-Block Oligomers Enhance Binding Avidity to Glycans.
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES 23 (2);doi: 10.3390/ijms23020676 JAN
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    Evaluation of Glycan-Binding Specificity by Glycoconjugate Microarray with an Evanescent-Field Fluorescence Detection System.
    METHODS MOL BIOL. 2022;2460:25-32. doi: 10.1007/978-1-0716-2148-6_2
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    DCIR and its ligand asialo-biantennary N-glycan regulate DC function and osteoclastogenesis.
    J EXP MED. 2021 Dec 6;218(12):e20210435. doi: 10.1084/jem.20210435. Epub 2021 Nov
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    Assessment of Surface Glycan Diversity on Extracellular Vesicles by Lectin Microarray and Glycoengineering Strategies for Drug Delivery Applications.
    SMALL METHODS; doi: 10.1002/smtd.202100785
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    Glycan detecting tools developed from the Clostridium botulinum whole hemagglutinin complex.
    SCI REP. 2021 Nov 9;11(1):21973. doi: 10.1038/s41598-021-01501-1
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    Self-Assembling Functional Complexes of Protein Nanobuilding Blocks with a Trimeric Lectin.
    PROTEIN SCIENCE 30 158-159; OCT
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    Self-Assembling Lectin Nano-Building Blocks Enhance Avidity to Glycans through Polyvalent Effect.
    PROTEIN SCIENCE 30 173-174; OCT
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    Transferrin Biosynthesized in the Brain Is a Novel Biomarker for Alzheimers Disease.
    METABOLITES. 2021 Sep 10;11(9):616. doi: 10.3390/metabo11090616
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    Integrated analysis of glycan and RNA in single cells.
    ISCIENCE. 2021 Jul 17;24(8):102882. doi: 10.1016/j.isci.2021.102882. eCollection
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    A glycosaminoglycan microarray identifies the binding of SARS-CoV-2 spike protein to chondroitin sulfate E.
    FEBS LETT. 2021 Aug 10. doi: 10.1002/1873-3468.14173
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    First person - Yoshikazu Haramoto.
    BIOLOGY OPEN 10 (4);doi: 10.1242/bio.058759 APR
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    Independent pseudogenizations and losses of sox15 during amniote diversification following asymmetric ohnolog evolution.
    BMC ECOL EVOL. 2021 Jun 30;21(1):134. doi: 10.1186/s12862-021-01864-z
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    Carcinoembryonic antigen as a specific glycoprotein ligand of rBC2LCN lectin on pancreatic ductal adenocarcinoma cells
    Cancer Sci. 2021 Jun 11. doi: 10.1111/cas.15023
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    Brain-Derived Neurotrophic Factor Signaling in the Pathophysiology of Alzheimers Disease: Beneficial Effects of Flavonoids for Neuroprotection.
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    Visualization of X chromosome reactivation in mouse primordial germ cells in vivo.
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    Elimination of cells deviated from human induced pluripotent stem cells with a photoactivatable IR700-labelled antibody.
    BIOCHEM BIOPHYS RES COMMUN. 2021 Mar 25;554:13-18. doi: 10.1016/j.bbrc.2021.03.078
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    Glycans on CEA as a targeting ligand of pancreatic ductal adenocarcinoma in novel lectin-drug conjugated therapy.
    CANCER SCIENCE 112 718-718; FEB
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    Novel Pancreatic Cancer Therapy Targeting Cell Surface Glycans by Liposomes Modified with rBC2LCN Lectin
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    Complete mitochondrial genome sequence of Japanese forest green tree frog (Rhacophorus arboreus.
    Mitochondrial DNA B Resour 2020 Sep 16;5(3):3347-3348. doi: 10.1080/23802359.2020.1820396
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    Platelet-derived extracellular vesicles are increased in sera of Alzheimers disease patients, as revealed by Tim4-based assays.
    FEBS OPEN BIO 2020 Dec 20. doi: 10.1002/2211-5463.13068
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    Quantitative structural analysis of glycans expressed within tumors derived from pancreatic cancer patient-derived xenograft mouse models
    Biochem Biophys Res Commun. 2020 Dec 4:S0006-291X(20)32131-8. doi: 10.1016/j.bbrc.2020.11.087
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    Lectin Drug Conjugate Therapy for Colorectal Cancer
    Cancer Sci. 2020 Oct 15. (2020) doi: 10.1111/cas.14687
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    Complete mitochondrial genome sequence of Japanese forest green tree frog (Rhacophorus arboreus)
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    Monoclonal antibodies specific for podocalyxin expressed on human induced pluripotent stem cells.
    Biochem Biophys Res Commun. 2020 Sep 7:S0006-291X(20)31692-2. (2020) doi:10.1016/j.bbrc.2020.08.092
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    Interferon-α alters host glycosylation machinery during treated HIV infection
    EBioMedicine. 59:102945. (2020) doi: 10.1016/j.ebiom.2020.102945
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    Novel Caffeic Acid Phenethyl Ester-Mortalin Antibody Nanoparticles Offer Enhanced Selective Cytotoxicity to Cancer Cells
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    SSEA-1-positive fibronectin is secreted by cells deviated from the undifferentiated state of human induced pluripotent stem cells
    Biochem Biophys Res Commun. 529 (3) 575-581;(2020) doi:10.1016/j.bbrc.2020.06.074
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    Sialyl-Lewis(X) Glycoantigen Is Enriched on Cells with Persistent HIV Transcription during Therapy
    Cell Rep. Aug 4;32(5):107991. (2020) doi: 10.1016/j.celrep.2020.107991
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    Glycome profiling by lectin microarray reveals dynamic glycan alterations during epidermal stem cell aging
    Aging Cell. 35: 0 (2020) doi:10.1111/acel.13190
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    A technique for removing tumourigenic pluripotent stem cells using rBC2LCN lectin.
    Regen Ther. 14: 306-314 (2020) doi: 10.1016/j.reth.2020.03.017
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    Expression and Purification of a Human Pluripotent Stem Cell-Specific Lectin Probe, rBC2LCN
    Methods Mol Biol. 9084: 30080-8 (2020) doi: 10.1007/978-1-0716-0430-4_44
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    rBC2LCN lectin as a potential probe of early-stage HER2-positive breast carcinoma
    FEBS Open Bio 10: 1056-1064 (2020) doi: 10.1002/2211-5463.12852
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    Sialylation and fucosylation modulate inflammasome-activating eIF2 Signaling and microbial translocation during HIV infection
    Mucosal Immunology 129: 215-222 (2020) doi: 10.1038/s41385-020-0279-5
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    Plasma and antibody glycomic biomarkers of time to HIV rebound and viral setpoint
    Aids 34 34: 681-686 (2020) doi: 10.1097/QAD.0000000000002476
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    Oriented immobilization of rBC2LCN lectin for highly sensitive detection of human pluripotent stem cells using cell culture supernatants
    J Biosci Bioeng. 129: 215-222 (2020) doi: 10.1016/j.jbiosc.2019.08.003
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    Parallel Evolution of Two dmrt1-Derived Genes, dmy and dm-W, for Vertebrate Sex Determination
    iScience 23: 100757 (2020) doi: 10.1016/j.isci.2019.100757
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    Clec10a regulates mite-induced dermatitis
    Science Immunology 4 4: 0 (2019) doi: 10.1126/sciimmunol.aax6908
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    Glycan Binding Profiling of Jacalin-Related Lectins from the Pteria Penguin Pearl Shell
    Int J Mol Sci. 20: 0 (2019) doi: 10.3390/ijms20184629
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    Independent evolution for sex determination and differentiation in the DMRT family in animals
    Biology Open 8: 10 (2019) doi: 10.1242/bio.041962
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    mRNA and miRNA expression profiles in an ectoderm-biased substate of human pluripotent stem cells
    Scientific Reports 189: 233-248 (2019) doi: 10.1038/s41598-019-48447-z
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    Structural basis for specific recognition of core fucosylation in N-glycans by Pholiota squarrosa lectin (PhoSL
    Glycobiology. 29: 576-587 (2019) doi: 10.1093/glycob/cwz025
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    Identification of Aquatic Organisms Using a Magneto-Optical Element
    Sensors 19: 3254 (2019) doi: 10.3390/s19153254
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    Characterization and functional analysis of novel circulating NK cell sub-populations
    Int Immunol. 31: 515-530 (2019) doi: 10.1093/intimm/dxz027
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    Human Stem Cell Glycome: From Structural Elucidation to Social Implementation
    Trends In Glycoscience And Glycotechnology 31: 0 (2019) doi: 10.4052/tigg.1939.2SE
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    The rBC2LCN-positive subpopulation of PC-3 cells exhibits cancer stem-like properties
    Biochem Biophys Res Commun. 515: 176-182 (2019) doi: 10.1016/j.bbrc.2019.05.108
  • Matsunami M, Suzuki M, Haramoto Y, Fukui A, Inoue T, Yamaguchi K, Uchiyama I, Mori K, Tashiro K, Ito Y, Takeuchi T, Suzuki KT, Agata K, Shigenobu S, Hayashi T
    A comprehensive reference transcriptome resource for the Iberian ribbed newt Pleurodeles waltl, an emerging model for developmental and regeneration biology
    DNA Res. 26: 217-229 (2019) doi: 10.1093/dnares/dsz003
  • Dion J, Minoshima F, Saito S, Kiyoi K, Hasehira K, Tateno H*
    Photoactivable Elimination of Tumorigenic Human Induced Pluripotent Stem Cells by Using a Lectin-Doxorubicin Prodrug Conjugate
    Chembiochem. 20: 1606-1611 (2019) doi: 10.1002/cbic.201900086
  • Yamazaki T, Inui M, Hiemori K, Tomono S, Itoh M, Ichimonji I, Nakashima A, Takagi H, Biswas M, Izawa K, Kitaura J, Imai T, Sugiura N, Tateno H, Akashi-Takamura S
    Receptor-destroying enzyme (RDE) from Vibrio cholerae modulates IgE activity and reduces the initiation of anaphylaxis
    J Biol Chem. 294: 6659-6669 (2019) doi: 10.1074/jbc.RA118.006375
  • Kondo M, Matsuo M, Igarashi K, Haramoto Y, Yamamoto T, Yasuoka Y, Taira M
    De novo transcription of multiple Hox cluster genes takes place simultaneously in early Xenopus tropicalis embryos
    Biology Open 8: bio038422 (2019) doi: 10.1242/bio.038422
  • Yokoyama H, Moreno-Andres D, Astrinidis SA, Hao Y, Weberruss M, Schellhaus AK, Lue H, Haramoto Y, Gruss OJ, Antonin W
    Chromosome alignment maintenance requires the MAP RECQL4, mutated in the Rothmund-Thomson syndrome
    Life Sci Alliance. 2: e201800120 (2019) doi: 10.26508/lsa.201800120
  • Sakai K, Hiemori K, Tateno H, Hirabayashi J, Gonoi T
    Fucose-specific lectin of Aspergillus fumigatus: binding properties and effects on immune response stimulation
    Med Mycol. 57: 71-83 (2019) doi: 10.1093/mmy/myx163
  • Omata Y, Aoki R, Aoki-Yoshida A, Hiemori K, Toyoda A, Tateno H, Suzuki C, Takayama Y
    Reduced fucosylation in the distal intestinal epithelium of mice subjected to chronic social defeat stress
    Sci Rep. 8: 13199 (2018) doi: 10.1038/s41598-018-31403-8
  • Unno H, Nakamura A, Mori S, Goda S, Yamaguchi K, Hiemori K, Tateno H, Hatakeyama T
    Identification, Characterization, and X-ray Crystallographic Analysis of a Novel Type of Lectin AJLec from the Sea Anemone Anthopleura japonica
    Sci Rep. 8: 11516 (2018) doi: 10.1038/s41598-018-29498-0
  • Hirabayashi J, Hu D, Tateno H, Kuwabara N, Kato R, Yagi F
    Carbohydrate Recognition Mechanism of the Mushroom Galectin ACG
    Trends In Glycoscience And Glycotechnology 30: 0 (2018) doi: 10.4052/tigg.1736.1SE
  • Yamasaki K, Yamasaki T, Tateno H
    The trimeric solution structure and fucose-binding mechanism of the core fucosylation-specific lectin PhoSL
    Sci Rep. 8: 7740 (2018) doi: 10.1038/s41598-018-25630-2
  • Nakagawa Y, Tateno H, Ebara M
    Investigation of Selective Recognition of Sugars Using Lectin-inspired Temperature-responsive Polymers
    Chemistry Letters 47: 134-137 (2018) doi: 10.1246/cl.170967
  • Saito S, Hiemori K, Kiyoi K, Tateno H*
    Glycome analysis of extracellular vesicles derived from human induced pluripotent stem cells using lectin microarray
    Sci Rep. 8: 3997 (2018) doi: 10.1038/s41598-018-22450-2
  • Shimomura O, Oda T, Tateno H, Ozawa Y, Kimura S, Sakashita S, Noguchi M, Hirabayashi J, Asashima M, Ohkohchi N
    A Novel Therapeutic Strategy for Pancreatic Cancer: Targeting Cell Surface Glycan Using rBC2LC-N Lectin-Drug Conjugate (LDC
    Mol Cancer Ther. 17: 183-195 (2018) doi: 10.1158/1535-7163.MCT-17-0232
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    Folding and Binding Properties of Human Complement Receptor Type 1 Extracellular Domain
    Peripheral Membrane Proteins 1: 105-122, (2018) doi:10.5772/intechopen.75120
  • Hasehira K, Hirabayashi J, Tateno H*
    Structural and quantitative evidence of alpha2-6-sialylated N-glycans as markers of the differentiation potential of human mesenchymal stem cells
    Glycoconj J. 34: 797-806 (2017) doi: 10.1007/s10719-016-9699-6
  • Nagae M, Mishra SK, Hanashima S, Tateno H, Yamaguchi Y
    Distinct roles for each N-glycan branch interacting with mannose-binding type Jacalin-related lectins Orysata and Calsepa
    Glycobiology. 27: 1120-1133 (2017) doi: 10.1093/glycob/cwx081
  • Dion J, Advedissian T, Storozhylova N, Dahbi S, Lambert A, Deshayes F, Viguier M, Tellier C, Poirier F, Teletchea S, Dussouy C, Tateno H, Hirabayashi J, Grandjean C
    Development of a Sensitive Microarray Platform for the Ranking of Galectin Inhibitors: Identification of a Selective Galectin-3 Inhibitor
    Chembiochem. 18: 2428-2440 (2017) doi: 10.1002/cbic.201700544
  • Fujimaki S, Kuwabara T
    Diabetes-Induced Dysfunction of Mitochondria and Stem Cells in Skeletal Muscle and the Nervous System
    Int J Mol Sci. 18: 0 (2017) doi: 10.3390/ijms18102147
  • Fujimaki S, Kuwabara T
    Diabetes-Induced Dysfunction of Mitochondria and Stem Cells in Skeletal Muscle and the Nervous System
    INTERNATIONAL J. Molecular Sciences 18: 10 (2017) doi: 10.3390/ijms18102147
  • Yagi H, Tateno H, Hayashi K, Hayashi T, Takahashi K, Hirabayashi J, Kato K, Tsuboi M
    Lectin microarray analysis of isolated polysaccharides from Sasa veitchii
    Biosci Biotechnol Biochem. 81: 1687-1689 (2017) doi: 10.1080/09168451.2017.1340089
  • Hatakeyama T, Ichise A, Unno H, Goda S, Oda T, Tateno H, , Hirabayashi J, Sakai H, Nakagawa H
    Carbohydrate recognition by the rhamnose-binding lectin SUL-I with a novel three-domain structure isolated from the venom of globiferous pedicellariae of the flower sea urchin Toxopneustes pileolus
    Protein Science 26: 1574-1583 (2017) doi: 10.1002/pro.3185
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    Engineering of a Potent Recombinant Lectin-Toxin Fusion Protein to Eliminate Human Pluripotent Stem Cells
    Molecules. 22: 0 (2017) doi: 10.3390/molecules22071151
  • Haramoto Y, Saijyo T, Tanaka T, Furuno N, Suzuki A, Ito Y, Kondo M, Taira M, Takahashi S
    Identification and comparative analyses of Siamois cluster genes in Xenopus laevis and tropicalis
    Dev Biol. 426: 374-383 (2017) doi: 10.1016/j.ydbio.2016.07.015
  • Itakura Y, Nakamura-Tsuruta S, Kominami J, Tateno H, Hirabayashi J
    Sugar-Binding Profiles of Chitin-Binding Lectins from the Hevein Family: A Comprehensive Study
    INTERNATIONAL J. Molecular Sciences 18: 10 (2017) doi: 10.3390/ijms18061160
  • Sato T, Tateno H, Kaji H, Chiba Y, Kubota T, Hirabayashi J, Narimatsu H
    Engineering of recombinant Wisteria floribunda agglutinin specifically binding to GalNAcbeta1,4GlcNAc (LacdiNAc
    Glycobiology. 0: 0 (2017) doi: 10.1093/glycob/cwx038
  • Nakata H, Lin CY, Abolhassani M, Ogawa T, Tateno H, Hirabayashi J, Muramoto K
    Isolation of Rice Bran Lectins and Characterization of Their Unique Behavior in Caco-2 Cells
    Int J Mol Sci. 18: 0 (2017) doi: 10.3390/ijms18051052
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    Electron microscopic and physicobiochemical studies of chaperonin GroEL and GroES complexes.
    Microscopy and imaging science: practical approaches to applied research and education 7: 112-119 (2017)
    https://pdfs.semanticscholar.org/a1b0/0359b396c3ffca75feae3625122b58c4a7a4.pdf
  • Ishii N
    GroEL and the GroEL-GroES Complex
    Macromolecular Protein Complexes: Structure And Function 83: 483 (2017) doi: 10.1007/978-3-319-46503-6_17
  • Ishii N
    GroEL and the GroEL-GroES Complex
    Subcell Biochem. 7: 11563 (2017) doi: 10.1007/978-3-319-46503-6_17
  • Yamamoto YY, Uno Y, Sha E, Ikegami K, Ishii N, Dohmae N, Sekiguchi H, Sasaki YC, Yohda M
    Asymmetry in the function and dynamics of the cytosolic group II chaperonin CCT/TRiC
    PloS One. 12: 0 (2017) doi: 10.1371/journal.pone.0176054

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