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Showing 1 - 50 of 187 items for (author: pardon & e)

EMDB-50021:
BasC in complex with nanobody 71
Method: single particle / : Martinez Molledo M, Fort J, Palacin M, Llorca O

EMDB-50069:
BasC in complex with nanobody 53
Method: single particle / : Fort J, Palacin M

EMDB-19504:
RyR1 in detergent in close state in complex with nanobody and FKBP12
Method: single particle / : Li C, Efremov RG

EMDB-19505:
TM part of RyR1 in detergent in close state
Method: single particle / : Li C, Efremov RG

EMDB-19506:
Tm part of RyR1 reconstituted into liposome in primed state
Method: single particle / : Li C, Efremov RG

EMDB-19507:
TM part of RyR1 in detergent in open state
Method: single particle / : Li C, Efremov RG

EMDB-19508:
RyR1 reconstituted into liposome in open state in complex with nanobody and FKBP12
Method: single particle / : Li C, Efremov RG

EMDB-19509:
open state RyR2 in detergent in complex with nanobody
Method: single particle / : Li C, Efremov RG

EMDB-19510:
TM part of RyR1 reconstituted in liposome in open state
Method: single particle / : Li C, Efremov RG

EMDB-19511:
TM part of RyR2 in detergent in open state
Method: single particle / : Li C, Efremov RG

EMDB-19512:
RyR1 in reconstitute in liposome in primed state in complex with nanobody and FKBP12
Method: single particle / : Li C, Efremov RG

EMDB-19486:
Structure of RyR1 in lipid nanodisc in primed state in complex with nanobody and FKBP12
Method: single particle / : Li C, Efremov RG

EMDB-19487:
Structure of RyR1 reconstituted into lipid nanodisc in primed state in complex with Ca2+, ATP, caffeine and Nb9657
Method: single particle / : Li C, Efremov RG

EMDB-19498:
Structure of RyR1 in detergent in primed state in complex with nanobody and FKBP12
Method: single particle / : Li C, Efremov RG

EMDB-19500:
transmembrane part of RyR1
Method: single particle / : Li C, Efremov RG

EMDB-19502:
structure of RyR1 in complex with nanobody and FKBP12
Method: single particle / : Li C, Efremov RG

EMDB-19463:
Structure of mouse RyR2 solubilised in detergent in open state in complex with Ca2+, ATP, caffeine and Nb9657.
Method: single particle / : Li C, Efremov RG

EMDB-19464:
Structure of rabbit RyR1 reconstituted into lipid liposomes in open state in complex with Ca2+, ATP, caffeine and Nb9657.
Method: single particle / : Li C, Efremov RG

EMDB-19465:
Structure of RyR1 reconstituted into lipid liposomes in primed state in complex with Ca2+, ATP, caffeine and Nb9657.
Method: single particle / : Li C, Efremov RG

EMDB-19466:
Structure of RyR1 in detergent in close state in complex with FKBP and Nb9657.
Method: single particle / : Li C, Efremov RG

EMDB-19467:
Structure of RyR1 in detergent in open state in complex with Ca2+, ATP, caffeine and Nb9657.
Method: single particle / : Li C, Efremov RG

EMDB-19468:
Structure of RyR1 reconstituted into lipid nanodisc in primed state in complex with Ca2+, ATP, caffeine and Nb9657
Method: single particle / : Li C, Efremov RG

EMDB-19472:
Structure of RyR1 solubilised in detergent in primed state in complex with Ca2+, ATP, caffeine and Nb9657
Method: single particle / : Li C, Efremov RG

PDB-8rrs:
Structure of mouse RyR2 solubilised in detergent in open state in complex with Ca2+, ATP, caffeine and Nb9657.
Method: single particle / : Li C, Efremov RG

PDB-8rrt:
Structure of rabbit RyR1 reconstituted into lipid liposomes in open state in complex with FKBP and Nb9657
Method: single particle / : Li C, Efremov RG

PDB-8rru:
Structure of RyR1 reconstituted into lipid liposomes in primed state in complex with FKBP and Nb9657.
Method: single particle / : Li C, Efremov RG

PDB-8rrv:
Structure of RyR1 in detergent in close state in complex with FKBP and Nb9657.
Method: single particle / : Li C, Efremov RG

PDB-8rrw:
Structure of RyR1 in detergent in open state in complex with FKBP and Nb9657.
Method: single particle / : Li C, Efremov RG

PDB-8rrx:
Structure of RyR1 reconstituted into lipid nanodisc in primed state in complex with Ca2+, ATP, caffeine and Nb9657
Method: single particle / : Li C, Efremov RG

PDB-8rs0:
Structure of RyR1 in detergent in primed state in complex with nanobody and FKBP
Method: single particle / : Li C, Efremov RG

EMDB-19716:
Cryo-EM structure of apo human SLC19A3 in outward-open state
Method: single particle / : Gabriel F, Loew C

EMDB-19750:
Cryo-EM structure of thiamine-bound human SLC19A3 in outward-open state
Method: single particle / : Gabriel F, Loew C

EMDB-19752:
Cryo-EM structure of fedratinib-bound human SLC19A3 in inward-open state
Method: single particle / : Gabriel F, Loew C

EMDB-19753:
Cryo-EM structure of hydroxychloroquine-bound human SLC19A3 in inward-open state
Method: single particle / : Gabriel F, Loew C

EMDB-19754:
Cryo-EM structure of thiamine-bound human SLC19A3 in inward-open state
Method: single particle / : Gabriel F, Loew C

EMDB-19755:
Cryo-EM structure of amprolium-bound human SLC19A3 in inward-open state
Method: single particle / : Gabriel F, Loew C

EMDB-51088:
Cryo-EM structure of apo human SLC19A3 in inward-open state
Method: single particle / : Gabriel F, Loew C

PDB-8s4u:
Cryo-EM structure of apo human SLC19A3 in outward-open state
Method: single particle / : Gabriel F, Loew C

PDB-8s5u:
Cryo-EM structure of thiamine-bound human SLC19A3 in outward-open state
Method: single particle / : Gabriel F, Loew C

PDB-8s5w:
Cryo-EM structure of fedratinib-bound human SLC19A3 in inward-open state
Method: single particle / : Gabriel F, Loew C

PDB-8s5z:
Cryo-EM structure of hydroxychloroquine-bound human SLC19A3 in inward-open state
Method: single particle / : Gabriel F, Loew C

PDB-8s61:
Cryo-EM structure of thiamine-bound human SLC19A3 in inward-open state
Method: single particle / : Gabriel F, Loew C

PDB-8s62:
Cryo-EM structure of amprolium-bound human SLC19A3 in inward-open state
Method: single particle / : Gabriel F, Loew C

PDB-9g5k:
Cryo-EM structure of apo human SLC19A3 in inward-open state
Method: single particle / : Gabriel F, Loew C

EMDB-18680:
FZD3 in complex with nanobody 9
Method: single particle / : Zhao Y, Jones EY

PDB-8qw4:
FZD3 in complex with nanobody 9
Method: single particle / : Zhao Y, Jones EY

EMDB-19066:
TREK2 in OGNG/CHS detergent micelle with biparatopic inhibitory nanobody Nb6158
Method: single particle / : Smith KHM, Tucker SJ

EMDB-17189:
Structure of the human neutral amino acid transporter ASCT2 in complex with nanobody 469
Method: single particle / : Canul-Tec J, Reyes N

EMDB-17192:
Complex of human ASCT2 with Syncytin-1
Method: single particle / : Khare S, Reyes N

EMDB-17193:
Complex of ASCT2 with Suppressyn
Method: single particle / : Khare S, Kumar A, Reyes N

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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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