Structure of the connexin 26 gap junction channel at 3.5 Å resolution S Maeda, S Nakagawa, M Suga, E Yamashita, A Oshima, Y Fujiyoshi, ... Nature 458 (7238), 597-602, 2009 | 833 | 2009 |
Structure of the µ-opioid receptor–Gi protein complex A Koehl, H Hu, S Maeda, Y Zhang, Q Qu, JM Paggi, NR Latorraca, ... Nature 558 (7711), 547-552, 2018 | 693 | 2018 |
Structure of a signaling cannabinoid receptor 1-G protein complex KK Kumar, M Shalev-Benami, MJ Robertson, H Hu, SD Banister, ... Cell 176 (3), 448-458. e12, 2019 | 419 | 2019 |
Structures of the M1 and M2 muscarinic acetylcholine receptor/G-protein complexes S Maeda, Q Qu, MJ Robertson, G Skiniotis, BK Kobilka Science 364 (6440), 552-557, 2019 | 315 | 2019 |
Development of an antibody fragment that stabilizes GPCR/G-protein complexes S Maeda, A Koehl, H Matile, H Hu, D Hilger, GFX Schertler, A Manglik, ... Nature communications 9 (1), 3712, 2018 | 195 | 2018 |
Structure of the gap junction channel and its implications for its biological functions S Maeda, T Tsukihara Cellular and Molecular Life Sciences 68, 1115-1129, 2011 | 190 | 2011 |
Roles of Met-34, Cys-64, and Arg-75 in the assembly of human connexin 26: implication for key amino acid residues for channel formation and function A Oshima, T Doi, K Mitsuoka, S Maeda, Y Fujiyoshi Journal of Biological Chemistry 278 (3), 1807-1816, 2003 | 118 | 2003 |
Structural and functional studies of gap junction channels S Nakagawa, S Maeda, T Tsukihara Current opinion in structural biology 20 (4), 423-430, 2010 | 103 | 2010 |
Local membrane charge regulates β2 adrenergic receptor coupling to Gi3 MJ Strohman, S Maeda, D Hilger, M Masureel, Y Du, BK Kobilka Nature Communications 10 (1), 2234, 2019 | 90 | 2019 |
Conformational complexity and dynamics in a muscarinic receptor revealed by NMR spectroscopy J Xu, Y Hu, J Kaindl, P Risel, H Hübner, S Maeda, X Niu, H Li, P Gmeiner, ... Molecular cell 75 (1), 53-65. e7, 2019 | 83 | 2019 |
Activation of the α2B adrenoceptor by the sedative sympatholytic dexmedetomidine D Yuan, Z Liu, J Kaindl, S Maeda, J Zhao, X Sun, J Xu, P Gmeiner, ... Nature chemical biology 16 (5), 507-512, 2020 | 80 | 2020 |
Probing Gαi1 protein activation at single–amino acid resolution D Sun, T Flock, X Deupi, S Maeda, M Matkovic, S Mendieta, D Mayer, ... Nature structural & molecular biology 22 (9), 686-694, 2015 | 80 | 2015 |
Structural insights into the subtype-selective antagonist binding to the M2 muscarinic receptor R Suno, S Lee, S Maeda, S Yasuda, K Yamashita, K Hirata, S Horita, ... Nature chemical biology 14 (12), 1150-1158, 2018 | 73 | 2018 |
Ligand binding of the second PDZ domain regulates clustering of PSD-95 with the Kv1. 4 potassium channel F Imamura, S Maeda, T Doi, Y Fujiyoshi Journal of Biological Chemistry 277 (5), 3640-3646, 2002 | 66 | 2002 |
Membrane phosphoinositides regulate GPCR-β-arrestin complex assembly and dynamics J Janetzko, R Kise, B Barsi-Rhyne, DH Siepe, FM Heydenreich, ... Cell 185 (24), 4560-4573. e19, 2022 | 64 | 2022 |
Cryo-EM structure of the rhodopsin-Gαi-βγ complex reveals binding of the rhodopsin C-terminal tail to the gβ subunit CJ Tsai, J Marino, R Adaixo, F Pamula, J Muehle, S Maeda, T Flock, ... Elife 8, e46041, 2019 | 63 | 2019 |
Structural mechanism underlying primary and secondary coupling between GPCRs and the Gi/o family HR Kim, J Xu, S Maeda, NM Duc, D Ahn, Y Du, KY Chung Nature Communications 11 (1), 3160, 2020 | 62 | 2020 |
Production of GPCR and GPCR complexes for structure determination S Maeda, GFX Schertler Current opinion in structural biology 23 (3), 381-392, 2013 | 61 | 2013 |
Asparagine 175 of connexin32 is a critical residue for docking and forming functional heterotypic gap junction channels with connexin26 S Nakagawa, XQ Gong, S Maeda, Y Dong, Y Misumi, T Tsukihara, D Bai Journal of Biological Chemistry 286 (22), 19672-19681, 2011 | 53 | 2011 |
Structure and selectivity engineering of the M1 muscarinic receptor toxin complex S Maeda, J Xu, FM N. Kadji, MJ Clark, J Zhao, N Tsutsumi, J Aoki, ... Science 369 (6500), 161-167, 2020 | 45 | 2020 |