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Showing 1 - 50 of 129 items for (author: nimigean & c)

EMDB-74534:
CNGA1 channel closed state in nanodisc cGMP-free
Method: single particle / : Park T, Nimigean CM

EMDB-74535:
CNGA1 channel intermediate state in nanodisc cGMP-bound
Method: single particle / : Park T, Nimigean CM

EMDB-74536:
CNGA1 channel open state in nanodisc cGMP-bound
Method: single particle / : Park T, Nimigean CM

EMDB-74537:
CNGA1 channel closed state in nanodisc with brain PIP2 cGMP-free
Method: single particle / : Park T, Nimigean CM

EMDB-74538:
CNGA1 channel intermediate state in nanodisc with brain PIP2 cGMP-bound
Method: single particle / : Park T, Nimigean CM

EMDB-74539:
CNGA1 channel closed state in nanodisc with diC8-PIP2 cGMP-free
Method: single particle / : Park T, Nimigean CM

EMDB-74540:
CNGA1 channel intermediate state in nanodisc with diC8-PIP2 cGMP-bound
Method: single particle / : Park T, Nimigean CM

PDB-9zpv:
CNGA1 channel closed state in nanodisc cGMP-free
Method: single particle / : Park T, Nimigean CM

PDB-9zpw:
CNGA1 channel intermediate state in nanodisc cGMP-bound
Method: single particle / : Park T, Nimigean CM

PDB-9zpx:
CNGA1 channel open state in nanodisc cGMP-bound
Method: single particle / : Park T, Nimigean CM

PDB-9zpy:
CNGA1 channel closed state in nanodisc with brain PIP2 cGMP-free
Method: single particle / : Park T, Nimigean CM

PDB-9zpz:
CNGA1 channel intermediate state in nanodisc with brain PIP2 cGMP-bound
Method: single particle / : Park T, Nimigean CM

PDB-9zq0:
CNGA1 channel closed state in nanodisc with diC8-PIP2 cGMP-free
Method: single particle / : Park T, Nimigean CM

PDB-9zq1:
CNGA1 channel intermediate state in nanodisc with diC8-PIP2 cGMP-bound
Method: single particle / : Park T, Nimigean CM

EMDB-46416:
Ca2+ bound intermediate state of hSlo1 + beta2N-beta4 channel in detergent.
Method: single particle / : Agarwal S, Nimigean C

EMDB-46418:
Ca2+ free hSlo1 + beta2N-beta4 channel in detergent.
Method: single particle / : Agarwal S, Nimigean C

EMDB-46419:
Ca2+ free hSlo1 + beta2N-beta4 channel in nanodisc.
Method: single particle / : Agarwal S, Nimigean C

EMDB-46421:
Ca2+ bound open-inactivated hSlo1 + beta2N-beta4 channel in nanodisc.
Method: single particle / : Agarwal S, Nimigean C

EMDB-46423:
Ca2+ bound intermediate state of hSlo1 + beta2N-beta4 channel in nanodisc.
Method: single particle / : Agarwal S, Nimigean C

EMDB-46425:
Ca2+ bound open-inactivated hSlo1 + beta2N-beta4 channel in detergent.
Method: single particle / : Agarwal S, Nimigean C

EMDB-46467:
Ca2+ bound open-inactivated hSlo1 + beta2N-beta4 channel in detergent- Class 2
Method: single particle / : Agarwal S, Nimigean C

EMDB-46468:
Ca2+ bound open-inactivated hSlo1 + beta2N-beta4 channel in detergent-Class 3
Method: single particle / : Agarwal S, Nimigean C

PDB-9czh:
Ca2+ bound intermediate state of hSlo1 + beta2N-beta4 channel in detergent.
Method: single particle / : Agarwal S, Nimigean C

PDB-9czj:
Ca2+ free hSlo1 + beta2N-beta4 channel in detergent.
Method: single particle / : Agarwal S, Nimigean C

PDB-9czk:
Ca2+ free hSlo1 + beta2N-beta4 channel in nanodisc.
Method: single particle / : Agarwal S, Nimigean C

PDB-9czm:
Ca2+ bound open-inactivated hSlo1 + beta2N-beta4 channel in nanodisc.
Method: single particle / : Agarwal S, Nimigean C

PDB-9czo:
Ca2+ bound intermediate state of hSlo1 + beta2N-beta4 channel in nanodisc.
Method: single particle / : Agarwal S, Nimigean C

PDB-9czq:
Ca2+ bound open-inactivated hSlo1 + beta2N-beta4 channel in detergent.
Method: single particle / : Agarwal S, Nimigean C

PDB-9d18:
Ca2+ bound open-inactivated hSlo1 + beta2N-beta4 channel in detergent-conformation 2 of inactivating domain
Method: single particle / : Agarwal S, Nimigean C

PDB-9d19:
Ca2+ bound open-inactivated hSlo1 + beta2N-beta4 channel in detergent-conformation 3 of inactivating domain
Method: single particle / : Agarwal S, Nimigean C

EMDB-43520:
WT SthK in the presence of PIP2 and cAMP
Method: single particle / : Schmidpeter PAM, Thon O, Nimigean CM

EMDB-43521:
SthK R120A in the presence of PIP2 and cAMP
Method: single particle / : Schmidpeter PAM, Thon O, Nimigean CM

EMDB-43522:
SthK R120A R124A in the presence of PIP2 and cAMP
Method: single particle / : Schmidpeter PAM, Thon O, Nimigean CM

PDB-8vt9:
WT SthK in the presence of PIP2 and cAMP
Method: single particle / : Schmidpeter PAM, Thon O, Nimigean CM

PDB-8vta:
SthK R120A in the presence of PIP2 and cAMP
Method: single particle / : Schmidpeter PAM, Thon O, Nimigean CM

PDB-8vtb:
SthK R120A R124A in the presence of PIP2 and cAMP
Method: single particle / : Schmidpeter PAM, Thon O, Nimigean CM

EMDB-42116:
HCN1 complex with propofol
Method: single particle / : Kim ED, Nimigean CM

EMDB-42117:
HCN1 nanodisc
Method: single particle / : Kim ED, Nimigean CM

EMDB-44425:
HCN1 M305L with propofol
Method: single particle / : Kim ED, Nimigean CM

EMDB-44426:
HCN1 M305L holo
Method: single particle / : Kim ED, Nimigean CM

PDB-8uc7:
HCN1 complex with propofol
Method: single particle / : Kim ED, Nimigean CM

PDB-8uc8:
HCN1 nanodisc
Method: single particle / : Kim ED, Nimigean CM

PDB-9bc6:
HCN1 M305L with propofol
Method: single particle / : Kim ED, Nimigean CM

PDB-9bc7:
HCN1 M305L holo
Method: single particle / : Kim ED, Nimigean CM

EMDB-29605:
TpeA bound closed MthK-A88F mutant in nanodisc
Method: single particle / : Agarwal S, Nimigean CM

PDB-8fz7:
TpeA bound closed MthK-A88F mutant in nanodisc
Method: single particle / : Agarwal S, Nimigean CM

EMDB-40181:
Human TRPV3 tetramer structure, closed conformation
Method: single particle / : Lansky S, Betancourt JM, Scheuring S

EMDB-40183:
Human TRPV3 pentamer structure
Method: single particle / : Lansky S, Betancourt JM, Scheuring S

PDB-8gka:
Human TRPV3 tetramer structure, closed conformation
Method: single particle / : Lansky S, Betancourt JM, Scheuring S

PDB-8gkg:
Human TRPV3 pentamer structure
Method: single particle / : Lansky S, Betancourt JM, Scheuring S

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Feb 9, 2022. 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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