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Showing 1 - 50 of 169 items for (author: lu & ym)

EMDB-18540:
human connexin-36 gap junction channel in complex with mefloquine
Method: single particle / : Ding XY, Blum TB, Korkhov VM

EMDB-18987:
human connexin-36 gap junction channel
Method: single particle / : Ding XY, Blum TB, Korkhov VM

EMDB-18988:
human connexin-36 gap junction channel in complex with quinine
Method: single particle / : Ding XY, Blum TB, Korkhov VM

PDB-8qoj:
human connexin-36 gap junction channel in complex with mefloquine
Method: single particle / : Ding XY, Blum TB, Korkhov VM

PDB-8r7p:
human connexin-36 gap junction channel
Method: single particle / : Ding XY, Blum TB, Korkhov VM

PDB-8r7q:
human connexin-36 gap junction channel in complex with quinine
Method: single particle / : Ding XY, Blum TB, Korkhov VM

EMDB-17295:
Stabilised BA.1 SARS-CoV-2 spike with H6 nanobodies in '3 up' RBD conformation
Method: single particle / : Weckener M, Naismith JH, Owens RJ

PDB-8oyt:
Stabilised BA.1 SARS-CoV-2 spike with H6 nanobodies in '3 up' RBD conformation
Method: single particle / : Weckener M, Naismith JH, Owens RJ

EMDB-18549:
Ammonium Transporter Amt1 from Shewanella denitrificans
Method: single particle / : Gschell M, Zhang L, Einsle O, Andrade S

EMDB-17296:
Stabilised BA.1 SARS-CoV-2 spike with H6 nanobodies in '2 up 1 down' RBD conformation
Method: single particle / : Weckener M, Naismith JH, Owens RJ

PDB-8oyu:
Stabilised BA.1 SARS-CoV-2 spike with H6 nanobodies in '2 up 1 down' RBD conformation
Method: single particle / : Weckener M, Naismith JH, Owens RJ

EMDB-19767:
Structure of a 2873 Scaffold Base DNA Origami V1
Method: single particle / : Ali K, Georg K, Volodymyr M, Johanna G, Maximilian NH, Lukas K, Simone C, Hendrik D

EMDB-19769:
Structure of a 2873 Scaffold Base DNA Origami V2
Method: single particle / : Ali K, Georg K, Volodymyr M, Johanna G, Maximilian NH, Lukas K, Simone C, Hendrik D

EMDB-19770:
Structure of a 2873 Scaffold Base DNA Origami V3
Method: single particle / : Ali K, Georg K, Volodymyr M, Johanna G, Maximilian NH, Lukas K, Simone C, Hendrik D

EMDB-19775:
Structure of a 1033 Scaffold Base DNA Origami Nanostructure V4 with Desalted Purified Staples
Method: single particle / : Ali K, Georg K, Volodymyr M, Johanna G, Maximilian NH, Lukas K, Simone C, Hendrik D

EMDB-19776:
Structure of a 1033 Scaffold Base DNA Origami Nanostructure V4 with HPLC Purified Staples
Method: single particle / : Ali K, Georg K, Volodymyr M, Johanna G, Maximilian NH, Lukas K, Simone C, Hendrik D

EMDB-19867:
Cryo-EM Structure of a 1033 Scaffold Base DNA Origami Nanostructure V4 and TBA
Method: single particle / : Ali K, Georg K, Volodymyr M, Johanna G, Maximilian NH, Lukas K, Simone C, Hendrik D

EMDB-19874:
Refinement Focused on the 1st Body of a 1033 Scaffold-Based DNA Origami Nanostructure V4 with TBA
Method: single particle / : Ali K, Georg K, Volodymyr M, Johanna G, Maximilian NH, Lukas K, Simone C, Hendrik D

EMDB-19875:
Refinement Focused on the 2nd Body of a 1033 Scaffold-Based DNA Origami Nanostructure V4 with TBA
Method: single particle / : Ali K, Georg K, Volodymyr M, Johanna G, Maximilian NH, Lukas K, Simone C, Hendrik D

EMDB-19876:
Refinement Focused on the 3rd Body of a 1033 Scaffold-Based DNA Origami Nanostructure V4 with TBA
Method: single particle / : Ali K, Georg K, Volodymyr M, Johanna G, Maximilian NH, Lukas K, Simone C, Hendrik D

PDB-9eoq:
Cryo-EM Structure of a 1033 Scaffold Base DNA Origami Nanostructure V4 and TBA
Method: single particle / : Ali K, Georg K, Volodymyr M, Johanna G, Maximilian NH, Lukas K, Simone C, Hendrik D

EMDB-18334:
Cryo-EM structure of the inward-facing FLVCR1
Method: single particle / : Weng TH, Wu D, Safarian S

EMDB-18335:
Cryo-EM structure of the inward-facing choline-bound FLVCR1
Method: single particle / : Weng TH, Wu D, Safarian S

EMDB-18336:
Cryo-EM structure of the inward-facing FLVCR2
Method: single particle / : Weng TH, Wu D, Safarian S

EMDB-18337:
Cryo-EM structure of the outward-facing FLVCR2
Method: single particle / : Weng TH, Wu D, Safarian S

EMDB-18339:
Cryo-EM structure of the inward-facing choline-bound FLVCR2
Method: single particle / : Weng TH, Wu D, Safarian S

EMDB-19009:
Cryo-EM structure of the inward-facing ethanolamine-bound FLVCR1
Method: single particle / : Weng TH, Wu D, Safarian S

PDB-8qcs:
Cryo-EM structure of the inward-facing FLVCR1
Method: single particle / : Weng TH, Wu D, Safarian S

PDB-8qct:
Cryo-EM structure of the inward-facing choline-bound FLVCR1
Method: single particle / : Weng TH, Wu D, Safarian S

PDB-8qcx:
Cryo-EM structure of the inward-facing FLVCR2
Method: single particle / : Weng TH, Wu D, Safarian S

PDB-8qcy:
Cryo-EM structure of the outward-facing FLVCR2
Method: single particle / : Weng TH, Wu D, Safarian S

PDB-8qd0:
Cryo-EM structure of the inward-facing choline-bound FLVCR2
Method: single particle / : Weng TH, Wu D, Safarian S

PDB-8r8t:
Cryo-EM structure of the inward-facing ethanolamine-bound FLVCR1
Method: single particle / : Weng TH, Wu D, Safarian S

EMDB-36229:
CryoEM structure of Gi-coupled MRGPRX1 with peptide agonist CNF-Tx2
Method: single particle / : Sun JP, Xu HE, Yang F, Liu ZM, Guo LL, Zhang YM, Fang GX, Tie L, Zhuang YM, Xue CY

EMDB-36232:
CryoEM structure of Gq-coupled MRGPRX1 with peptide agonist BAM8-22
Method: single particle / : Sun JP, Xu HE, Yang F, Liu ZM, Guo LL, Zhang YM, Fang GX, Tie L, Zhuang YM, Xue CY

EMDB-36233:
CryoEM structure of Gi-coupled MRGPRX1 with peptide agonist BAM8-22
Method: single particle / : Sun JP, Xu HE, Yang F, Liu ZM, Guo LL, Zhang YM, Fang GX, Tie L, Zhuang YM, Xue CY

EMDB-18941:
SARS-CoV-2 S (Spike) protein (BA.1) in complex with VHH Ma16B06 (sub-volume of two adjacent RBD-VHH modules)
Method: single particle / : Guttler T, Aksu M, Gorlich D

EMDB-15118:
13pf undecorated microtubule from recombinant human tubulin (alpha1B, beta3) lacking the C-terminal tail
Method: helical / : Ebberink E, Fernandes S, Hatzopoulos GN, Agashe N, Guidotti N, Reichart T, Reymond L, Velluz MC, Schneider FZ, Pourroy C, Janke C, Gonczy P, Aumeier C, Fierz B

EMDB-15119:
13pf undecorated microtubule from recombinant human tubulin (alpha1B, beta3) with spliced unmodified C-terminal tail on alpha1B.
Method: helical / : Ebberink E, Fernandes S, Hatzopoulos GN, Agashe N, Guidotti N, Reichart T, Reymond L, Velluz MC, Schneider FZ, Pourroy C, Janke C, Gonczy P, Aumeier C, Fierz B

EMDB-15120:
13pf undecorated microtubule from recombinant human tubulin (alpha1B, beta3) with spliced C-terminal tail containing 10E branch on alpha1B.
Method: helical / : Ebberink E, Fernandes S, Hatzopoulos GN, Agashe N, Guidotti N, Reichart T, Reymond L, Velluz MC, Schneider FZ, Pourroy C, Janke C, Gonczy P, Aumeier C, Fierz B

EMDB-34030:
Cryo-EM map of a dimeric form of Ecoli Malate Synthase G (MSG)
Method: single particle / : Wu KP, Wu YM, Lu YC

EMDB-34029:
2.9-angstrom cryo-EM structure of Ecoli malate synthase G
Method: single particle / : Wu KP, Wu YM, Lu YC

EMDB-14452:
Connexin43 gap junction channel structure in digitonin
Method: single particle / : Qi C, Korkhov MV

EMDB-14455:
Connexin43 gap junction channel structure in nanodisc
Method: single particle / : Qi C, Korkhov MV

EMDB-14456:
Connexin43 gap junction channel structure in digitonin
Method: single particle / : Qi C, Korkhov MV

PDB-7z1t:
Connexin43 gap junction channel structure in digitonin
Method: single particle / : Qi C, Korkhov MV

PDB-7z22:
Connexin43 gap junction channel structure in nanodisc
Method: single particle / : Qi C, Korkhov MV

PDB-7z23:
Connexin43 hemi channel in nanodisc
Method: single particle / : Qi C, Korkhov MV

EMDB-33241:
Cryo-EM Structure of Human Niacin Receptor HCA2-Gi protein complex
Method: single particle / : Yang Y, Kang HJ, Gao RG, Wang JJ, Han GW, DiBerto JF, Wu LJ, Tong JH, Qu L, Wu YR, Pileski R, Li XM, Zhang XC, Zhao SW, Kenakin T, Wang Q, Stevens RC, Peng W, Roth BL, Rao ZH, Liu ZJ

PDB-7xk2:
Cryo-EM Structure of Human Niacin Receptor HCA2-Gi protein complex
Method: single particle / : Yang Y, Kang HJ, Gao RG, Wang JJ, Han GW, DiBerto JF, Wu LJ, Tong JH, Qu L, Wu YR, Pileski R, Li XM, Zhang XC, Zhao SW, Kenakin T, Wang Q, Stevens RC, Peng W, Roth BL, Rao ZH, Liu ZJ

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Oct 5, 2021. Nobel Prize for mechanically activated and temperature-gated ion channels

Nobel Prize for mechanically activated and temperature-gated ion channels

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