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Dive into the research topics where Masahiro Ueda is active.

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Featured researches published by Masahiro Ueda.


bioRxiv | 2017

Single-molecule diffusion-based estimation of GPCR activity

Masataka Yanagawa; Michio Hiroshima; Yuichi Togashi; Takahiro Yamashita; Yoshinori Shichida; Masayuki Murata; Masahiro Ueda; Yasushi Sako

G protein-coupled receptors (GPCRs) are major drug targets and have high potential for drug discovery. The development of a method for measuring the activities of GPCRs is essential for pharmacology and drug screening. However, it is difficult to measure the effects of a drug by monitoring the receptor on the cell surface, and changes in the concentrations of downstream signaling molecules, which are specific to each receptor, are used as an index of the receptor activity. Here, we show that single-molecule imaging analysis provides an alternative method for assessing GPCR activity. We monitored the dynamics of the diffusion of metabotropic glutamate receptor 3 (mGluR3), a class C GPCR, under various ligand conditions by using total internal reflection fluorescence microscopy (TIRFM). The single-molecule tracking analysis demonstrates that changes in the average diffusion coefficient of mGluR3 quantitatively reflect the ligand-dependent activity. Then, we reveal that the diffusion of receptor molecules is altered by the common physiological events associated with GPCRs, including G protein binding or accumulation in clathrin-coated pits, by inhibitor assay and dual-color single-molecule imaging analysis. We also confirm the general applicability of the method to class A and B GPCRs, demonstrating that the diffusion coefficient is a good index for estimating the activities of many GPCRs regardless of the phylogenetic groups, chemical properties of the ligands, and G protein-coupling selectivity.G protein-coupled receptors (GPCRs) are major drug targets and have high potential for drug discovery. The development of a method for measuring the activities of GPCRs is essential for pharmacology and drug screening. However, it is difficult to measure the effects of a drug by monitoring the receptor on the cell surface, and changes in the concentrations of downstream signaling molecules, which depend on signaling pathway selectivity of the receptor, are used as an index of the receptor activity. Here, we show that single-molecule imaging analysis provides an alternative method for assessing ligand effects on GPCR. We monitored the dynamics of the diffusion of metabotropic glutamate receptor 3 (mGluR3), a class C GPCR, under various ligand conditions by using total internal reflection fluorescence microscopy (TIRFM). The single-molecule tracking analysis demonstrates that changes in the average diffusion coefficient of mGluR3 quantitatively reflect the ligand-dependent activity. Then, we reveal that the diffusion of receptor molecules is altered by the common physiological events associated with GPCRs, including G protein binding or accumulation in clathrin-coated pits, by inhibition experiments and dual-color single-molecule imaging analysis. We also confirm the generality of agonist-induced diffusion change in class A and B GPCRs, demonstrating that the diffusion coefficient is a good index for estimating the ligand effects on many GPCRs regardless of the phylogenetic groups, chemical properties of the ligands, and G protein-coupling selectivity. One Sentence Summary: Single-molecule imaging for evaluating ligand effects on GPCRs by monitoring the diffusion dynamics on the cell surface.


Archive | 2011

Cell signaling reactions : single-molecular kinetic analysis

Yasushi Sako; Masahiro Ueda


Archive | 2018

Simulation of live-cell imaging system reveals hidden uncertainties in cooperative binding measurements

Masaki Watabe; Satya N. V. Arjunan; Wei Xiang Chew; Michio Hiroshima; Kazunari Kaizu; Jun Kozuka; Masahiro Ueda; Koichi Takahashi


生物物理 | 2014

2P183 細胞極性形成におけるポジティブフィードバック機構の1分子イメージング解析(12. 細胞生物的課題,ポスター,第52回日本生物物理学会年会(2014年度))

Satomi Matsuoka; Masahiro Ueda


生物物理 | 2014

1P182 RAFの疾病関連変異体のコンフォメーションと機能(12. 細胞生物的課題,ポスター,第52回日本生物物理学会年会(2014年度))

Kayo Hibino; Masahiro Ueda; Yasushi Sako


生物物理 | 2014

3P083 1分子イメージングによるPI3Kの活性制御機構の解析(01E. 蛋白質:計測・解析の方法論,ポスター,第52回日本生物物理学会年会(2014年度))

Seiya Fukushima; Satomi Matsuoka; Masahiro Ueda


生物物理 | 2013

3P185 情報処理タンパク質RAFの多状態性と細胞応答(12.細胞生物的課題,ポスター,日本生物物理学会年会第51回(2013年度))

Kayo Hibino; Kenji Okamoto; Masahiro Ueda; Yasushi Sako


生物物理 | 2013

1P276 イノシトールリン脂質代謝系が細胞の自発運動への効果の理論と実験による検証(24. 数理生物学,ポスター,日本生物物理学会年会第51回(2013年度))

Masato Yasui; Satomi Matsuoka; Masahiro Ueda


生物物理 | 2012

1G1558 細胞内FRETイメージングによる情報処理タンパク質RAFの構造とEGF応答の相関解析(細胞生物的課題I,口頭発表,日本生物物理学会第50回年会(2012年度))

Kayo Hibino; Masahiro Ueda; Yasushi Sako


生物物理 | 2012

2PS051 細胞性粘菌で探る細胞運動ダイナミクスと走電性応答の関係性(日本生物物理学会第50回年会(2012年度))

Hiroaki Takagi; Masayuki Sato; Masahiro Ueda

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