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Showing 1 - 50 of 14,010 items for (author: ha & sc)

EMDB-63298:
Structure of transposase-activated RAG target capture complex with symmetric linear target DNA (TCC-LS)
Method: single particle / : Pang J, Zhang Y

EMDB-63299:
Structure of RAG transposon end complex (TEC)
Method: single particle / : Pang J, Zhang Y

EMDB-63300:
Structure of transposase-activated RAG (RAG1 E962N) target capture complex with disordered U-shaped target DNA (TCC-UD)
Method: single particle / : Pang J, Zhang Y

EMDB-63301:
Structure of transposase-activated RAG target capture complex with X-form U-shaped target DNA (TCC-UDX)
Method: single particle / : Pang J, Zhang Y

EMDB-63306:
Structure of transposase-activated RAG strand transfer complex in state 1 (STC-1)
Method: single particle / : Pang J, Zhang Y

EMDB-63311:
Structure of transposase-activated RAG strand transfer complex in state 2 (STC-2)
Method: single particle / : Pang J, Zhang Y

EMDB-48304:
Cryo-EM structure of human NBCn2
Method: single particle / : Yang S, Capper MJ, Zilberg G, Warren AL, Wacker D

EMDB-48318:
Cryo-EM structure of human NBCn2 bound to Carbonate
Method: single particle / : Yang S, Capper MJ, Zilberg G, Warren AL, Wacker D

EMDB-48320:
Cryo-EM structure of human NBCn2 bound to Compound 38J
Method: single particle / : Yang S, Capper MJ, Zilberg G, Warren AL, Wacker D

EMDB-58850:
D0-state of wild type human mitochondrial LONP1 protease bound to endogenous ADP
Method: single particle / : Schenck N, Roesgaard MA, Abrahams JP

PDB-32ff:
D0-state of wild type human mitochondrial LONP1 protease bound to endogenous ADP
Method: single particle / : Schenck N, Roesgaard MA, Abrahams JP

EMDB-73275:
Cryo-EM structure of a preformed dimer of the C. elegans EGFR (LET-23) extracellular region
Method: single particle / : Zuo Y, Han L, Ferguson KM

EMDB-73276:
Cryo-EM structure of an active dimer of the C. elegans EGFR (LET-23) extracellular region bound to LIN-3
Method: single particle / : Zuo Y, Han L, Ferguson KM

EMDB-73277:
Cryo-EM structure of an inactive dimer of the C. elegans EGFR (LET-23) extracellular region bound to LIN-3.
Method: single particle / : Zuo Y, Han L, Ferguson KM

EMDB-73278:
Cryo-EM structure of a weak dimer of the C. elegans EGFR (LET-23) extracellular region with a domain IV loop deletion
Method: single particle / : Zuo Y, Walker K, Han L, Ferguson KM

EMDB-73279:
Cryo-EM structure of an active dimer of the C. elegans EGFR (LET-23) extracellular region with a domain IV loop deletion bound to LIN-3.
Method: single particle / : Zuo Y, Walker K, Han L, Ferguson KM

PDB-9yor:
Cryo-EM structure of a preformed dimer of the C. elegans EGFR (LET-23) extracellular region
Method: single particle / : Zuo Y, Han L, Ferguson KM

PDB-9yos:
Cryo-EM structure of an active dimer of the C. elegans EGFR (LET-23) extracellular region bound to LIN-3
Method: single particle / : Zuo Y, Han L, Ferguson KM

PDB-9yot:
Cryo-EM structure of an inactive dimer of the C. elegans EGFR (LET-23) extracellular region bound to LIN-3.
Method: single particle / : Zuo Y, Han L, Ferguson KM

PDB-9you:
Cryo-EM structure of a weak dimer of the C. elegans EGFR (LET-23) extracellular region with a domain IV loop deletion
Method: single particle / : Zuo Y, Walker K, Han L, Ferguson KM

PDB-9yov:
Cryo-EM structure of an active dimer of the C. elegans EGFR (LET-23) extracellular region with a domain IV loop deletion bound to LIN-3.
Method: single particle / : Zuo Y, Walker K, Han L, Ferguson KM

EMDB-56597:
Tau filament with D252V mutation
Method: helical / : Qi C, Lovestam S, Scheres HWS, Goedert M

EMDB-56599:
Tau filament with G272V mutation
Method: helical / : Qi C, Lovestam S, Scheres HWS, Goedert M

EMDB-56600:
Tau filament with delG389_I392 mutation
Method: helical / : Qi C, Lovestam S, Scheres HWS, Goedert M

EMDB-56601:
Tau filament with S320F mutation
Method: helical / : Qi C, Lovestam S, Scheres HWS, Goedert M

PDB-28lj:
Tau filament with D252V mutation
Method: helical / : Qi C, Lovestam S, Scheres HWS, Goedert M

PDB-28lo:
Tau filament with G272V mutation
Method: helical / : Qi C, Lovestam S, Scheres HWS, Goedert M

PDB-28lp:
Tau filament with delG389_I392 mutation
Method: helical / : Qi C, Lovestam S, Scheres HWS, Goedert M

PDB-28lq:
Tau filament with S320F mutation
Method: helical / : Qi C, Lovestam S, Scheres HWS, Goedert M

EMDB-54904:
Structure of trans-basal conformer of human CBS trapped in PLP-aminoacrylate intermediate state (CBS PLP-AA)- by single particle approach
Method: single particle / : Inayathulla M, Tomas M

EMDB-54905:
Structure of trans-basal conformer of human CBS trapped in PLP-serine external aldemine intermediate (CBS-PLP-Ser)- by single particle approach
Method: single particle / : Inayathulla M, Tomas M

EMDB-54925:
Structure of trans-basal conformer of human CBS trapped in PLP-aminoacrylate intermediate state (CBS PLP-AA)- by Helical processing.
Method: helical / : Inayathulla M, Tomas M

EMDB-55037:
Structure of trans-basal conformer of human CBS trapped in PLP-serine external aldemine intermediate (CBS-PLP-Ser)- by Helical approach
Method: helical / : Inayathulla M, Tomas M

EMDB-55097:
focused structure of regulatory domains of cis-basal conformer of human CBS induced by non-activating allosteric SAO ligand - by Helical approach
Method: helical / : Inayathulla M, Tomas M

EMDB-55099:
Structure of cis-basal conformer of human CBS induced by non-activating allosteric SAO ligand - by single particle approach.
Method: single particle / : Inayathulla M, Tomas M

EMDB-55105:
Structure of trans-basal conformer of wild-type human CBS alone (internal aldemine)- by single particle approach
Method: single particle / : Inayathulla M, Tomas M

EMDB-55115:
Structure of trans-basal conformer of wild-type human CBS enzyme in absence of substrate and allosteric activators- by Helical approach
Method: helical / : Inayathulla M, Tomas M

PDB-9shm:
Structure of trans-basal conformer of human CBS trapped in PLP-aminoacrylate intermediate state (CBS PLP-AA)- by single particle approach
Method: single particle / : Inayathulla M, Tomas M

PDB-9shn:
Structure of trans-basal conformer of human CBS trapped in PLP-serine external aldemine intermediate (CBS-PLP-Ser)- by single particle approach
Method: single particle / : Inayathulla M, Tomas M

PDB-9si8:
Structure of trans-basal conformer of human CBS trapped in PLP-aminoacrylate intermediate state (CBS PLP-AA)- by Helical processing.
Method: helical / : Inayathulla M, Tomas M

PDB-9sml:
Structure of trans-basal conformer of human CBS trapped in PLP-serine external aldemine intermediate (CBS-PLP-Ser)- by Helical approach
Method: helical / : Inayathulla M, Tomas M

PDB-9spv:
focused structure of regulatory domains of cis-basal conformer of human CBS induced by non-activating allosteric SAO ligand - by Helical approach
Method: helical / : Inayathulla M, Tomas M

PDB-9spw:
Structure of cis-basal conformer of human CBS induced by non-activating allosteric SAO ligand - by single particle approach.
Method: single particle / : Inayathulla M, Tomas M

PDB-9sq0:
Structure of trans-basal conformer of wild-type human CBS alone (internal aldemine)- by single particle approach
Method: single particle / : Inayathulla M, Tomas M

PDB-9sqq:
Structure of trans-basal conformer of wild-type human CBS enzyme in absence of substrate and allosteric activators- by Helical approach
Method: helical / : Inayathulla M, Tomas M

EMDB-54890:
Consensus map of ternary PROTAC-mediated complex consisting of Cereblon, DDB1 and BRD4-BD1, non-covalently linked by JQ1-AcN
Method: single particle / : Fischer G, Peter D, Arce-Solano S, Kessler D

EMDB-54891:
Focussed map of ternary PROTAC-mediated complex consisting of Cereblon, DDB1 and BRD4-BD1, non-covalently linked by JQ1-AcN
Method: single particle / : Fischer G, Peter D, Arce-Solano S, Kessler D

EMDB-54488:
CgCdr1 in complex with ATP, ADP-VO4
Method: single particle / : Pata J, Zarkadas E, Schoehn G, Chaptal V, Falson P

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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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  • EM Navigator can help to find cryo-EM structure data by both pioneers.

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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