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Showing 1 - 50 of 109 items for (author: rahman & s)

EMDB-41908:
Local refinement map on VFT-CRD of active-state CaSR in lipid nanodiscs
Method: single particle / : He F, Wu C, Gao Y, Skiniotis G

EMDB-41909:
Consensus refinement map of active-state human CaSR in lipid nanodiscs
Method: single particle / : He F, Wu C, Gao Y, Skiniotis G

EMDB-41910:
Local refinement map on CRD-7TM of active-state CaSR in lipid nanodiscs
Method: single particle / : He F, Wu C, Gao Y, Skiniotis G

EMDB-41925:
Local refinement map on VFT-CRD of cinacalcet-bound human calcium-sensing receptor CaSR-Gi complex in lipid nanodiscs
Method: single particle / : He F, Wu C, Gao Y, Skiniotis G

EMDB-41926:
Local refinement map on Gi of cinacalcet-bound human calcium-sensing receptor CaSR-Gi complex in lipid nanodiscs
Method: single particle / : He F, Wu C, Gao Y, Skiniotis G

EMDB-41927:
Local refinement map on CRD-7TM of cinacalcet-bound human calcium-sensing receptor CaSR-Gi complex in lipid nanodiscs
Method: single particle / : He F, Wu C, Gao Y, Skiniotis G

EMDB-41928:
Consensus refinement map of cinacalcet-bound human calcium-sensing receptor CaSR-Gi complex in lipid nanodiscs
Method: single particle / : He F, Wu C, Gao Y, Skiniotis G

EMDB-41949:
Consensus refinement map of cinacalcet-bound human calcium-sensing receptor CaSR-Gq complex in lipid nanodiscs
Method: single particle / : He F, Wu C, Gao Y, Skiniotis G

EMDB-41950:
Local refinement map on CRD-7TM of cinacalcet-bound human calcium-sensing receptor CaSR-Gq complex in lipid nanodiscs
Method: single particle / : He F, Wu C, Gao Y, Skiniotis G

EMDB-41951:
Local refinement map on VFT-CRD of cinacalcet-bound human calcium-sensing receptor CaSR-Gq complex in lipid nanodiscs
Method: single particle / : He F, Wu C, Gao Y, Skiniotis G

EMDB-41952:
Local refinement map on Gq of cinacalcet-bound human calcium-sensing receptor CaSR-Gq complex in lipid nanodiscs
Method: single particle / : He F, Wu C, Gao Y, Skiniotis G

EMDB-41953:
Consensus refinement map of PAM-free human calcium-sensing receptor CaSR-Gi complex in lipid nanodiscs
Method: single particle / : He F, Wu C, Gao Y, Skiniotis G

EMDB-41954:
Local refinement map on VFT-CRD of PAM-free human calcium-sensing receptor CaSR-Gi complex in lipid nanodiscs
Method: single particle / : He F, Wu C, Gao Y, Skiniotis G

EMDB-41956:
Local refinement map on CRD-7TM of PAM-free human calcium-sensing receptor CaSR-Gi complex in lipid nanodiscs
Method: single particle / : He F, Wu C, Gao Y, Skiniotis G

EMDB-41957:
Local refinement map on Gi of PAM-free human calcium-sensing receptor CaSR-Gi complex in lipid nanodiscs
Method: single particle / : He F, Wu C, Gao Y, Skiniotis G

EMDB-43529:
L5A7 Fab bound to Indonesia2005 Hemagglutinin
Method: single particle / : Olia AS, Gorman J, Kwong PD

EMDB-43545:
L5A7 Fab bound to 28H6E11 anti-idiotype Fab
Method: single particle / : Olia AS, Morano NC, Kwong PD

PDB-8vue:
L5A7 Fab bound to Indonesia2005 Hemagglutinin
Method: single particle / : Olia AS, Gorman J, Kwong PD

PDB-8vuz:
L5A7 Fab bound to 28H6E11 anti-idiotype Fab
Method: single particle / : Olia AS, Morano NC, Kwong PD

EMDB-42601:
CryoEM structure of Kappa Opioid Receptor bound to a semi-peptide and Gi1
Method: single particle / : Fay JF, Che T

EMDB-29767:
H2BK120ub+H3K79me2-modified nucleosome ubiquitin position 5
Method: single particle / : Hicks CW, Wolberger C

EMDB-29769:
H2BK120ub+H3K79me2-modified nucleosome ubiquitin position 6
Method: single particle / : Hicks CW, Wolberger C

EMDB-29778:
H2AK119ub-modified nucleosome ubiquitin position 1
Method: single particle / : Hicks CW, Wolberger C

EMDB-29781:
H2AK119ub-modified nucleosome ubiquitin position 2
Method: single particle / : Hicks CW, Wolberger C

EMDB-41124:
ISOLATED LETHOCERUS INDICUS Z-DISCS CRYO-EM MAP
Method: electron tomography / : Abbasi Yeganeh F, Taylor KA

EMDB-40914:
Cryo-EM structure of cinacalcet-bound active-state human calcium-sensing receptor CaSR in lipid nanodiscs
Method: single particle / : He F, Wu C, Gao Y, Skiniotis G

EMDB-40915:
Cryo-EM structure of cinacalcet-bound human calcium-sensing receptor CaSR-Gq complex in lipid nanodiscs
Method: single particle / : He F, Wu C, Gao Y, Skiniotis G

EMDB-40916:
Cryo-EM structure of cinacalcet-bound human calcium-sensing receptor CaSR-Gi complex in lipid nanodiscs
Method: single particle / : He F, Wu C, Gao Y, Skiniotis G

EMDB-40917:
Cryo-EM structure of PAM-free human calcium-sensing receptor CaSR-Gi complex in lipid nanodiscs
Method: single particle / : He F, Wu C, Gao Y, Skiniotis G

PDB-8szf:
Cryo-EM structure of cinacalcet-bound active-state human calcium-sensing receptor CaSR in lipid nanodiscs
Method: single particle / : He F, Wu C, Gao Y, Skiniotis G

PDB-8szg:
Cryo-EM structure of cinacalcet-bound human calcium-sensing receptor CaSR-Gq complex in lipid nanodiscs
Method: single particle / : He F, Wu C, Gao Y, Skiniotis G

PDB-8szh:
Cryo-EM structure of cinacalcet-bound human calcium-sensing receptor CaSR-Gi complex in lipid nanodiscs
Method: single particle / : He F, Wu C, Gao Y, Skiniotis G

PDB-8szi:
Cryo-EM structure of PAM-free human calcium-sensing receptor CaSR-Gi complex in lipid nanodiscs
Method: single particle / : He F, Wu C, Gao Y, Skiniotis G

EMDB-29026:
CryoEM structure of Kappa Opioid Receptor bound to a semi-peptide and Gi1
Method: single particle / : Fay JF, Che T

PDB-8feg:
CryoEM structure of Kappa Opioid Receptor bound to a semi-peptide and Gi1
Method: single particle / : Fay JF, Che T

EMDB-35930:
CryoEM structure of SARS CoV-2 RBD and Aptamer complex
Method: single particle / : Rahman MS, Jang SK, Lee JO

EMDB-35945:
CryoEM structure of SARS CoV-2 RBD and Aptamer complex
Method: single particle / : Rahman MS, Jang SK, Lee JO

PDB-8j1q:
CryoEM structure of SARS CoV-2 RBD and Aptamer complex
Method: single particle / : Rahman MS, Jang SK, Lee JO

PDB-8j26:
CryoEM structure of SARS CoV-2 RBD and Aptamer complex
Method: single particle / : Rahman MS, Jang SK, Lee JO

EMDB-28576:
Cryo-EM structure of Torpedo nicotinic acetylcholine receptor in complex with rocuronium, resting-like state
Method: single particle / : Goswami U, Rahman MM, Teng J, Hibbs RE

EMDB-28826:
Cryo-EM structure of Torpedo nicotinic acetylcholine receptor in complex with rocuronium, pore-blocked state
Method: single particle / : Goswami U, Rahman MM, Teng J, Hibbs RE

EMDB-28892:
Cryo-EM structure of Torpedo nicotinic acetylcholine receptor in complex with etomidate, desensitized-like state
Method: single particle / : Goswami U, Rahman MM, Teng J, Hibbs RE

EMDB-28893:
Cryo-EM structure of Torpedo nicotinic acetylcholine receptor in complex with succinylcholine, desensitized-like state
Method: single particle / : Goswami U, Rahman MM, Teng J, Hibbs RE

PDB-8esk:
Cryo-EM structure of Torpedo nicotinic acetylcholine receptor in complex with rocuronium, resting-like state
Method: single particle / : Goswami U, Rahman MM, Teng J, Hibbs RE

PDB-8f2s:
Cryo-EM structure of Torpedo nicotinic acetylcholine receptor in complex with rocuronium, pore-blocked state
Method: single particle / : Goswami U, Rahman MM, Teng J, Hibbs RE

PDB-8f6y:
Cryo-EM structure of Torpedo nicotinic acetylcholine receptor in complex with etomidate, desensitized-like state
Method: single particle / : Goswami U, Rahman MM, Teng J, Hibbs RE

PDB-8f6z:
Cryo-EM structure of Torpedo nicotinic acetylcholine receptor in complex with succinylcholine, desensitized-like state
Method: single particle / : Goswami U, Rahman MM, Teng J, Hibbs RE

EMDB-28208:
CryoEM map of myosin thick filament from Bombus ignitus asynchronous flight muscle
Method: single particle / : Li J, Rahmani H, Abbasi Yeganeh F, Rastegarpouyani H, Taylor DW, Wood NB, Previs MJ, Iwamoto H, Taylor KA

PDB-8ew5:
The structure of flightin within myosin thick filaments from Bombus ignitus flight muscle
Method: single particle / : Li J, Rahmani H, Abbasi Yeganeh F, Rastegarpouyani H, Taylor DW, Wood NB, Previs MJ, Iwamoto H, Taylor KA

EMDB-27802:
Complex between MLL1-WRAD and an H2B-ubiquitinated nucleosome- State 1
Method: single particle / : Niklas HA, Rahman S, Worden EJ, Wolberger C

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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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