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Showing 1 - 50 of 72 items for (author: cornelius & g)

EMDB-35257:
Structure of EP54-C3aR-Go complex
Method: single particle / : Yadav MK, Yadav R, Maharana J, Sarma P, Banerjee R, Shukla AK, Gati C

EMDB-35259:
Structure of Apo-C3aR-Go complex (Glacios)
Method: single particle / : Yadav MK, Yadav R, Maharana J, Sarma P, Banerjee R, Shukla AK, Gati C

EMDB-35263:
Structure of EP54-C3aR-Gq complex
Method: single particle / : Yadav MK, Yadav R, Maharana J, Sarma P, Banerjee R, Shukla AK, Gati C

EMDB-35275:
Structure of C3a-C3aR-Go complex (Composite map)
Method: single particle / : Yadav MK, Yadav R, Maharana J, Sarma P, Banerjee R, Shukla AK, Gati C

EMDB-35282:
Structure of Apo-C3aR-Go complex (Titan)
Method: single particle / : Yadav MK, Yadav R, Maharana J, Sarma P, Banerjee R, Shukla AK, Gati C

EMDB-35292:
Structure of C5a bound human C5aR1 in complex with Go (Composite map)
Method: single particle / : Yadav MK, Yadav R, Maharana J, Banerjee R, Shukla AK, Gati C

EMDB-35293:
C3a-C3aR-Go (C3aR-Go complex only, Original Map)
Method: single particle / : Yadav MK, Yadav R, Maharana J, Sarma P, Banerjee R, Shukla AK, Gati C

EMDB-35294:
C3a-C3aR-Go (C3a only, Original Map)
Method: single particle / : Yadav MK, Yadav R, Maharana J, Sarma P, Banerjee R, Shukla AK, Gati C

EMDB-35295:
C5a-hC5aR1-Go (hC5aR1-Go complex only, Original map)
Method: single particle / : Yadav MK, Yadav R, Maharana J, Banerjee R, Shukla AK, Gati C

EMDB-35296:
C5a-hC5aR1-Go complex (C5a only, Original map)
Method: single particle / : Yadav MK, Yadav R, Maharana J, Banerjee R, Shukla AK, Gati C

EMDB-36001:
Structure of EP141-C3aR-Go complex
Method: single particle / : Yadav MK, Yadav R, Maharana J, Sarma P, Banerjee R, Shukla AK, Gati C

EMDB-36755:
Structure of human C5a-desArg bound human C5aR1 in complex with Go
Method: single particle / : Yadav MK, Yadav R, Maharana J, Sarma P, Banerjee R, Shukla AK, Gati C

PDB-8i95:
Structure of EP54-C3aR-Go complex
Method: single particle / : Yadav MK, Yadav R, Maharana J, Sarma P, Banerjee R, Shukla AK, Gati C

PDB-8i97:
Structure of Apo-C3aR-Go complex (Glacios)
Method: single particle / : Yadav MK, Yadav R, Maharana J, Sarma P, Banerjee R, Shukla AK, Gati C

PDB-8i9a:
Structure of EP54-C3aR-Gq complex
Method: single particle / : Yadav MK, Yadav R, Maharana J, Sarma P, Banerjee R, Shukla AK, Gati C

PDB-8i9l:
Structure of C3a-C3aR-Go complex (Composite map)
Method: single particle / : Yadav MK, Yadav R, Maharana J, Sarma P, Banerjee R, Shukla AK, Gati C

PDB-8i9s:
Structure of Apo-C3aR-Go complex (Titan)
Method: single particle / : Yadav MK, Yadav R, Maharana J, Sarma P, Banerjee R, Shukla AK, Gati C

PDB-8ia2:
Structure of C5a bound human C5aR1 in complex with Go (Composite map)
Method: single particle / : Yadav MK, Yadav R, Maharana J, Banerjee R, Shukla AK, Gati C

PDB-8j6d:
Structure of EP141-C3aR-Go complex
Method: single particle / : Yadav MK, Yadav R, Maharana J, Sarma P, Banerjee R, Shukla AK, Gati C

PDB-8jzz:
Structure of human C5a-desArg bound human C5aR1 in complex with Go
Method: single particle / : Yadav MK, Yadav R, Maharana J, Sarma P, Banerjee R, Shukla AK, Gati C

EMDB-29644:
Structure of signaling thrombopoietin-MPL receptor complex
Method: single particle / : Tsutsumi N, Jude KM, Gati C, Garcia KC

PDB-8g04:
Structure of signaling thrombopoietin-MPL receptor complex
Method: single particle / : Tsutsumi N, Jude KM, Gati C, Garcia KC

EMDB-36220:
Cryo-EM structure of Na+,K+-ATPase in the E1.Mg2+ state.
Method: single particle / : Kanai R, Vilsen B, Cornelius F, Toyoshima C

PDB-8jfz:
Cryo-EM structure of Na+,K+-ATPase in the E1.Mg2+ state.
Method: single particle / : Kanai R, Vilsen B, Cornelius F, Toyoshima C

EMDB-15971:
SARS-CoV-2 Delta-RBD complexed with Fabs BA.2-36, BA.2-23, EY6A and COVOX-45
Method: single particle / : Duyvesteyn HME, Ren J, Stuart DI

PDB-8bcz:
SARS-CoV-2 Delta-RBD complexed with Fabs BA.2-36, BA.2-23, EY6A and COVOX-45
Method: single particle / : Duyvesteyn HME, Ren J, Stuart DI

EMDB-33601:
Cryo-EM structure of the Na+,K+-ATPase in the E2.2K+ state
Method: single particle / : Kanai R, Cornelius F, Vilsen B, Toyoshima C

EMDB-33602:
Cryo-EM structure of the Na+,K+-ATPase in the E2.2K+ state after addition of ATP
Method: single particle / : Kanai R, Cornelius F, Vilsen B, Toyoshima C

PDB-7y45:
Cryo-EM structure of the Na+,K+-ATPase in the E2.2K+ state
Method: single particle / : Kanai R, Cornelius F, Vilsen B, Toyoshima C

PDB-7y46:
Cryo-EM structure of the Na+,K+-ATPase in the E2.2K+ state after addition of ATP
Method: single particle / : Kanai R, Cornelius F, Vilsen B, Toyoshima C

EMDB-25170:
Human wildtype GABA reuptake transporter 1 in complex with tiagabine, inward-open conformation
Method: single particle / : Gati C, Motiwala Z, Aduri NG, Shaye H, Han GW, Cherezov V

PDB-7sk2:
Human wildtype GABA reuptake transporter 1 in complex with tiagabine, inward-open conformation
Method: single particle / : Gati C, Motiwala Z, Aduri NG, Shaye H, Han GW, Cherezov V

EMDB-11953:
SARS-CoV-2 S 2P trimer in complex with monovalent DARPin R2 (State 1) - Composite Map
Method: single particle / : Hurdiss DL, Drulyte I

EMDB-11954:
SARS-CoV-2 S 2P trimer in complex with monovalent DARPin R2 (State 2)
Method: single particle / : Hurdiss DL, Drulyte I

EMDB-14810:
SARS-CoV-2 S 2P trimer in complex with monovalent DARPin R2 (State 1) - Consensus Map
Method: single particle / : Hurdiss DL, Drulyte I

EMDB-14811:
SARS-CoV-2 S 2P trimer in complex with monovalent DARPin R2 (State 1) - Focused Refinement
Method: single particle / : Hurdiss DL, Drulyte I

EMDB-32894:
Cryo-EM structure of Na+,K+-ATPase in the E2P state formed by ATP
Method: single particle / : Kanai R, Cornelius F, Vilsen B, Toyoshima C

EMDB-32895:
Cryo-EM structure of Na+,K+-ATPase in the E2P state formed by ATP in the presence of 40 mM Mg2+
Method: single particle / : Kanai R, Cornelius F, Vilsen B, Toyoshima C

EMDB-32896:
Cryo-EM structure of Na+,K+-ATPase in the E2P state formed by inorganic phosphate
Method: single particle / : Kanai R, Cornelius F, Vilsen B, Toyoshima C

EMDB-32897:
Cryo-EM structure of Na+,K+-ATPase in the E2P state formed by ATP with istaroxime
Method: single particle / : Kanai R, Cornelius F, Vilsen B, Toyoshima C

EMDB-32898:
Cryo-EM structure of Na+,K+-ATPase in the E2P state formed by inorganic phosphate with istaroxime
Method: single particle / : Kanai R, Cornelius F, Vilsen B, Toyoshima C

EMDB-32899:
Cryo-EM structure of Na+,K+-ATPase in the E2P state formed by ATP with ouabain
Method: single particle / : Kanai R, Cornelius F, Vilsen B, Toyoshima C

EMDB-32900:
Cryo-EM structure of Na+,K+-ATPase in the E2P state formed by inorganic phosphate with ouabain
Method: single particle / : Kanai R, Cornelius F, Vilsen B, Toyoshima C

PDB-7wyu:
Cryo-EM structure of Na+,K+-ATPase in the E2P state formed by ATP
Method: single particle / : Kanai R, Cornelius F, Vilsen B, Toyoshima C

PDB-7wyv:
Cryo-EM structure of Na+,K+-ATPase in the E2P state formed by ATP in the presence of 40 mM Mg2+
Method: single particle / : Kanai R, Cornelius F, Vilsen B, Toyoshima C

PDB-7wyw:
Cryo-EM structure of Na+,K+-ATPase in the E2P state formed by inorganic phosphate
Method: single particle / : Kanai R, Cornelius F, Vilsen B, Toyoshima C

PDB-7wyx:
Cryo-EM structure of Na+,K+-ATPase in the E2P state formed by ATP with istaroxime
Method: single particle / : Kanai R, Cornelius F, Vilsen B, Toyoshima C

PDB-7wyy:
Cryo-EM structure of Na+,K+-ATPase in the E2P state formed by inorganic phosphate with istaroxime
Method: single particle / : Kanai R, Cornelius F, Vilsen B, Toyoshima C

PDB-7wyz:
Cryo-EM structure of Na+,K+-ATPase in the E2P state formed by ATP with ouabain
Method: single particle / : Kanai R, Cornelius F, Vilsen B, Toyoshima C

PDB-7wz0:
Cryo-EM structure of Na+,K+-ATPase in the E2P state formed by inorganic phosphate with ouabain
Method: single particle / : Kanai R, Cornelius F, Vilsen B, Toyoshima C

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Feb 9, 2022. New format data for meta-information of EMDB entries

New format data for meta-information of EMDB entries

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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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External links:The Nobel Prize in Physiology or Medicine 2021 - NobelPrize.org / Structure data by Ardem Patapoutian / Structure data by David Julius

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