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7SSZ
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Structure of human Kv1.3 with A0194009G09 nanobodies
分子名称: Nanobody A0194009G09, POTASSIUM ION, Potassium voltage-gated channel subfamily A member 3,Green fluorescent protein fusion
著者Meyerson, J.R, Selvakumar, P.
登録日2021-11-11
公開日2022-06-29
最終更新日2022-07-20
実験手法ELECTRON MICROSCOPY (3.25 Å)
主引用文献Structures of the T cell potassium channel Kv1.3 with immunoglobulin modulators.
Nat Commun, 13, 2022
7SSX
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BU of 7ssx by Molmil
Structure of human Kv1.3
分子名称: POTASSIUM ION, Potassium voltage-gated channel subfamily A member 3, Green fluorescent protein fusion
著者Meyerson, J.R, Selvakumar, P.
登録日2021-11-11
公開日2022-06-29
最終更新日2024-06-05
実験手法ELECTRON MICROSCOPY (2.89 Å)
主引用文献Structures of the T cell potassium channel Kv1.3 with immunoglobulin modulators.
Nat Commun, 13, 2022
7V0V
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BU of 7v0v by Molmil
GFP Nanobody NMR Structure
分子名称: Anti-GFP Nanobody
著者Mueller, G.A.
登録日2022-05-11
公開日2022-06-08
最終更新日2024-05-15
実験手法SOLUTION NMR
主引用文献Nanobody Paratope Ensembles in Solution Characterized by MD Simulations and NMR.
Int J Mol Sci, 23, 2022
7EYQ
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BU of 7eyq by Molmil
Cryo-EM (SPA) structure of human Nup155 Longer N-terminus (19-1069) at 5.4 Angstrom resolution
分子名称: G protein/GFP fusion protein,Nuclear pore complex protein Nup155
著者Niranjan, S.
登録日2021-05-31
公開日2022-06-08
最終更新日2024-06-12
実験手法ELECTRON MICROSCOPY (5.4 Å)
主引用文献Cryo-EM (SPA) structure of human Nup155 Longer N-terminus (19-1069) at 5.4 Angstrom resolution
To Be Published
7EYE
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BU of 7eye by Molmil
Cryo-EM (SPA) structure of Nup155 N-terminus (19-863) at 5.1 Angstrom resolution
分子名称: G protein/GFP fusion protein,Nuclear pore complex protein Nup155
著者Niranjan, S.
登録日2021-05-30
公開日2022-06-08
最終更新日2024-06-12
実験手法ELECTRON MICROSCOPY (5.1 Å)
主引用文献Cryo-EM (SPA) structure of Nup155 N-terminus (19-863) at 5.2 Angstrom resolution
To Be Published
7EYF
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BU of 7eyf by Molmil
Cryo-EM (SPA) structure of human Nup155 C-terminus (864-1337) at 5.3 Angstroms resolution
分子名称: Nuclear pore complex protein Nup155
著者Niranjan, S.
登録日2021-05-30
公開日2022-06-08
最終更新日2024-06-12
実験手法ELECTRON MICROSCOPY (5.3 Å)
主引用文献Cryo-EM (SPA) structure of human Nup155 C-terminus (864-1337) at 5.3 Angstroms resolution
To Be Published
7X5V
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BU of 7x5v by Molmil
NaVEh Sodium channel, and NaVEh from the coccolithophore Emiliania huxleyi
分子名称: ion channel, ion channel,GFP-TwinStrep
著者Jiang, D, Zhang, J.
登録日2022-03-05
公開日2022-06-01
実験手法ELECTRON MICROSCOPY (2.83 Å)
主引用文献N-type fast inactivation of a eukaryotic voltage-gated sodium channel.
Nat Commun, 13, 2022
7SQY
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BU of 7sqy by Molmil
CSDaV GFP mutant
分子名称: Citrus Sudden Death-associated Virus Capsid Protein,Green fluorescent protein,Citrus Sudden Death-associated Virus Capsid Protein
著者Guo, F, Matsumura, E.E, Falk, B.W.
登録日2021-11-07
公開日2022-05-25
最終更新日2024-06-05
実験手法ELECTRON MICROSCOPY (3.4 Å)
主引用文献Citrus sudden death-associated virus as a new expression vector for rapid in planta production of heterologous proteins, chimeric virions, and virus-like particles.
Biotechnol Rep., 35, 2022
7SQZ
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BU of 7sqz by Molmil
CSDaV wild-type
分子名称: Citrus Sudden Death-associated Virus Capsid Protein
著者Guo, F, Matsumura, E.E, Falk, B.W.
登録日2021-11-07
公開日2022-05-25
最終更新日2024-06-05
実験手法ELECTRON MICROSCOPY (3.1 Å)
主引用文献Citrus sudden death-associated virus as a new expression vector for rapid in planta production of heterologous proteins, chimeric virions, and virus-like particles.
Biotechnol Rep., 35, 2022
7Z7P
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BU of 7z7p by Molmil
Structure of the fluorescent protein NeonCyan0.95 at pH 5.6
分子名称: NeonCyan0.95, SULFATE ION
著者Depernet, H, Dupuy, J, Royant, A.
登録日2022-03-16
公開日2022-05-04
最終更新日2024-01-31
実験手法X-RAY DIFFRACTION (1.95 Å)
主引用文献Cyan fluorescent proteins derived from mNeonGreen.
Protein Eng.Des.Sel., 35, 2022
7Z7O
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BU of 7z7o by Molmil
Structure of the fluorescent protein NeonCyan0.95 at pH 7.5
分子名称: NeonCyan0.95
著者Clavel, D, Dupuy, J, Royant, A.
登録日2022-03-16
公開日2022-05-04
最終更新日2024-01-31
実験手法X-RAY DIFFRACTION (1.51 Å)
主引用文献Cyan fluorescent proteins derived from mNeonGreen.
Protein Eng.Des.Sel., 35, 2022
7Z7Q
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BU of 7z7q by Molmil
Structure of the T207D single-point mutant of the fluorescent protein NeonCyan1 at pH 6.5
分子名称: NeonCyan1
著者Duarte, K, Dupuy, J, Royant, A.
登録日2022-03-16
公開日2022-05-04
最終更新日2024-01-31
実験手法X-RAY DIFFRACTION (1.6 Å)
主引用文献Cyan fluorescent proteins derived from mNeonGreen.
Protein Eng.Des.Sel., 35, 2022
7CAO
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BU of 7cao by Molmil
Crystal structure of red chromoprotein from Olindias formosa
分子名称: Chromoprotein
著者Nakashima, R, Zhai, L, Ike, Y, Matsudz, T, Nagai, T.
登録日2020-06-09
公開日2022-04-20
最終更新日2023-11-29
実験手法X-RAY DIFFRACTION (2.05 Å)
主引用文献Structure-based analysis and evolution of a monomerized red-colored chromoprotein from the Olindias formosa jellyfish.
Protein Sci., 31, 2022
7AMU
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BU of 7amu by Molmil
Crystal structure of rsEGFP2 T204A in its fluorescent on-state
分子名称: GLYCEROL, Green fluorescent protein, SULFATE ION
著者Moreno-Chicano, T, Schlichting, I, Hartmann, E, Zala, N, Colletier, J.-P, Weik, M.
登録日2020-10-09
公開日2022-04-20
最終更新日2024-01-31
実験手法X-RAY DIFFRACTION (1.64 Å)
主引用文献Crystal structure of rsEGFP2 in its fluorescent on-state at pH 8.0
To Be Published
7Z01
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BU of 7z01 by Molmil
Z-SBTubA4 photoswitch bound to tubulin-DARPin D1 complex
分子名称: 2-methoxy-5-[2-(5,6,7-trimethoxy-1,3-benzothiazol-2-yl)ethyl]phenol, CALCIUM ION, Designed Ankyrin Repeat Protein (DARPIN) D1, ...
著者Wranik, M, Weinert, T, Standfuss, J, Steinmetz, M.
登録日2022-02-21
公開日2022-03-30
最終更新日2024-01-31
実験手法X-RAY DIFFRACTION (1.82 Å)
主引用文献In Vivo Photocontrol of Microtubule Dynamics and Integrity, Migration and Mitosis, by the Potent GFP-Imaging-Compatible Photoswitchable Reagents SBTubA4P and SBTub2M.
J.Am.Chem.Soc., 144, 2022
7Z02
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BU of 7z02 by Molmil
Z-SBTub2M photoswitch bound to tubulin-DARPin D1 complex
分子名称: 6-methyl-2-[2-(3,4,5-trimethoxyphenyl)ethyl]-1,3-benzothiazole, Designed Ankyrin Repeat Protein (DARPIN) D1, GUANOSINE-5'-DIPHOSPHATE, ...
著者Wranik, M, Weinert, T, Standfuss, J, Steinmetz, M.
登録日2022-02-21
公開日2022-03-30
最終更新日2024-01-31
実験手法X-RAY DIFFRACTION (2.36 Å)
主引用文献In Vivo Photocontrol of Microtubule Dynamics and Integrity, Migration and Mitosis, by the Potent GFP-Imaging-Compatible Photoswitchable Reagents SBTubA4P and SBTub2M.
J.Am.Chem.Soc., 144, 2022
7SF9
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BU of 7sf9 by Molmil
Branchiostoma Floridae Violet Fluorescent Protein
分子名称: Violet Fluorescent Protein
著者Pletnev, S, Pletneva, N, Pletnev, V.Z, Muslinkina, L.
登録日2021-10-03
公開日2022-03-30
最終更新日2023-10-18
実験手法X-RAY DIFFRACTION (1.8 Å)
主引用文献A novel violet fluorescent protein contains a unique oxidized tyrosine as the simplest chromophore ever reported in fluorescent proteins.
Protein Sci., 31, 2022
7SFA
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BU of 7sfa by Molmil
Branchiostoma floridae fluorescent protein LanFP10A2
分子名称: Fluorescent protein lanFP10A2
著者Pletnev, S, Pletneva, N, Pletnev, V.Z, Muslinkina, L.
登録日2021-10-03
公開日2022-03-30
最終更新日2023-11-15
実験手法X-RAY DIFFRACTION (1.65 Å)
主引用文献A novel violet fluorescent protein contains a unique oxidized tyrosine as the simplest chromophore ever reported in fluorescent proteins.
Protein Sci., 31, 2022
7QGK
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BU of 7qgk by Molmil
The mRubyFT protein, Genetically Encoded Blue-to-Red Fluorescent Timer in its red state
分子名称: MAGNESIUM ION, The red form of the mRubyFT protein, Genetically Encoded Blue-to-Red Fluorescent Timer
著者Boyko, K.M, Nikolaeva, A.Y, Gaivoronskii, F.A, Vlaskina, A.V, Subach, O.M, Popov, V.O, Subach, F.V.
登録日2021-12-08
公開日2022-03-23
最終更新日2024-02-07
実験手法X-RAY DIFFRACTION (1.5 Å)
主引用文献The mRubyFT Protein, Genetically Encoded Blue-to-Red Fluorescent Timer.
Int J Mol Sci, 23, 2022
7PD0
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BU of 7pd0 by Molmil
Functional and structural characterization of redox sensitive superfolder green fluorescent protein and variants
分子名称: DI(HYDROXYETHYL)ETHER, GLYCEROL, Green fluorescent protein, ...
著者Fritz-Wolf, K, Heimsch, K.C, Schuh, A.K, Becker, K.
登録日2021-08-04
公開日2022-02-16
最終更新日2024-01-31
実験手法X-RAY DIFFRACTION (2 Å)
主引用文献Structure and Function of Redox-Sensitive Superfolder Green Fluorescent Protein Variant.
Antioxid.Redox Signal., 37, 2022
7PCA
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BU of 7pca by Molmil
Functional and structural characterization of redox sensitive superfolder green fluorescent protein and variants
分子名称: ETHANOL, FORMAMIDE, GLYCEROL, ...
著者Fritz-Wolf, K, Heimsch, K.C, Schuh, A.K, Becker, K.
登録日2021-08-03
公開日2022-02-16
最終更新日2024-01-31
実験手法X-RAY DIFFRACTION (1.05 Å)
主引用文献Structure and Function of Redox-Sensitive Superfolder Green Fluorescent Protein Variant.
Antioxid.Redox Signal., 37, 2022
7PCZ
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BU of 7pcz by Molmil
Functional and structural characterization of redox sensitive superfolder green fluorescent protein and variants
分子名称: ETHANOL, GLYCEROL, Green fluorescent protein
著者Fritz-Wolf, K, Heimsch, K.C, Schuh, A.K, Becker, K.
登録日2021-08-04
公開日2022-02-16
最終更新日2024-01-31
実験手法X-RAY DIFFRACTION (1.35 Å)
主引用文献Structure and Function of Redox-Sensitive Superfolder Green Fluorescent Protein Variant.
Antioxid.Redox Signal., 37, 2022
7KVT
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BU of 7kvt by Molmil
Crystal structure of Squash RNA aptamer in complex with DFHBI-1T with iridium (III) ions
分子名称: (5Z)-5-(3,5-difluoro-4-hydroxybenzylidene)-2-methyl-3-(2,2,2-trifluoroethyl)-3,5-dihydro-4H-imidazol-4-one, IRIDIUM HEXAMMINE ION, MAGNESIUM ION, ...
著者Truong, L, Ferre-D'Amare, A.R.
登録日2020-11-28
公開日2022-01-19
最終更新日2024-05-22
実験手法X-RAY DIFFRACTION (2.73 Å)
主引用文献The fluorescent aptamer Squash extensively repurposes the adenine riboswitch fold.
Nat.Chem.Biol., 18, 2022
7KVU
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Crystal structure of Squash RNA aptamer in complex with DFHBI-1T
分子名称: (5Z)-5-(3,5-difluoro-4-hydroxybenzylidene)-2-methyl-3-(2,2,2-trifluoroethyl)-3,5-dihydro-4H-imidazol-4-one, MAGNESIUM ION, POTASSIUM ION, ...
著者Truong, L, Ferre-D'Amare, A.R.
登録日2020-11-28
公開日2022-01-19
最終更新日2023-10-18
実験手法X-RAY DIFFRACTION (2.68 Å)
主引用文献The fluorescent aptamer Squash extensively repurposes the adenine riboswitch fold.
Nat.Chem.Biol., 18, 2022
7KVV
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Crystal structure of Squash RNA aptamer in complex with DFHBI-1T
分子名称: (5Z)-5-[(3,5-difluoro-4-hydroxyphenyl)methylidene]-2-[(E)-(hydroxyimino)methyl]-3-methyl-3,5-dihydro-4H-imidazol-4-one, MAGNESIUM ION, Squash RNA aptamer bound to DFHO
著者Truong, L, Ferre-D'Amare, A.R.
登録日2020-11-28
公開日2022-01-19
最終更新日2023-10-18
実験手法X-RAY DIFFRACTION (2.85 Å)
主引用文献The fluorescent aptamer Squash extensively repurposes the adenine riboswitch fold.
Nat.Chem.Biol., 18, 2022

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