2P122 新規コイルドコイルラベル法を用いた生細胞膜での受容体オリゴマー化解析法の開発(膜蛋白質,第48回日本生物物理学会年会)
スポンサーリンク
概要
- 論文の詳細を見る
- 2010-08-15
著者
-
Yano Yoshiaki
Graduate School of Pharmaceutical Sciences, Kyoto University
-
Omae Kaoru
Graduate School of Pharmaceutical Sciences, Kyoto University
-
Mitsuzaki Katsumi
Graduate School of Pharmaceutical Sciences, Kyoto University
-
Omae Kaoru
Graduate School Of Pharmaceutical Sciences Kyoto University
-
Yano Yoshiaki
Graduate School Of Biostudies Kyoto University
-
Mitsuzaki Katsumi
Graduate School Of Pharmaceutical Sciences Kyoto University
関連論文
- 2P122 新規コイルドコイルラベル法を用いた生細胞膜での受容体オリゴマー化解析法の開発(膜蛋白質,第48回日本生物物理学会年会)
- 1P120 1I1240 1分子蛍光計測による膜貫通ヘリックス間相互作用揺らぎの検出(膜蛋白質,口頭発表,第48回日本生物物理学会年会)
- Properties of Intracellular Fragment Peptides of Mouse Prostaglandin E_2 Receptor EP3 Isoform
- Elucidation of Membrane Protein Folding Using Model Transmembrane Helices
- Thermodynamics of Hydrophobic Mismatch for Transmembrane Helix-Helix and Helix-Lipid Interactions
- Structural Analysis of Amyloid-β Protein Fibrils Formed in Raft-Like Model Membranes
- Specific Fluorescence Labeling of Membrane Receptors in Living Cells using Coiled-coil Tag
- Visualizing Internalization of Membrane Receptors Using New Fluorescence Labeling Method
- Synthetic Studies on 7TM-GPCR (I) : Lipid Bilayer Assisted Membrane Peptide Ligation
- Stability and Self-Association of a Model Transmembrane Helix in Lipid Bilayers
- Interactions of a Membrane-Spanning Model Peptide with Lipid Bilayers
- Membrane Insertion and Dissociation Processes of a Model Transmembrane Helix
- Internalization and oligomerization of membrane receptors in living cells as detected by novel coiled-coil fluorescence labeling methods
- Association-dissociation kinetics for dimerization of transmembrane helices as detected by single molecule fluorescence spectroscopy
- Comparison between Amyloid beta-Protein Aggregates Formed in Aqueous Solution and Raft-like Membranes
- 3B0924 膜貫通ヘリックスの膜分配・自己会合の熱力学 : ホスファチジルエタノールアミンによる疎脂性相互作用(3B 膜蛋白質2,日本生物物理学会第49回年会)
- Low-Polarity Environment is Important for the Formation of Toxic Amyloid β Aggregates
- Improvement of Probe Peptides for Coiled-Coil Labeling by Introducing Phosphoserines
- Lipophobic Interaction : Lipid-Induced Association of Transmembrane Helices