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Showing 1 - 50 of 180 items for (author: li & tp)

EMDB-52570:
Cryo-EM structure of mouse RNF213 (WB3/WB4 + ATP)
Method: single particle / : Grabarczyk DB, Ahel J, Clausen T

EMDB-52571:
Cryo-EM structure of mouse RNF213:UBE2L3 transthiolation intermediate, chemically stabilized, and ATPgS
Method: single particle / : Grabarczyk DB, Ahel J, Clausen T

PDB-9i1i:
Cryo-EM structure of mouse RNF213 (WB3/WB4 + ATP)
Method: single particle / : Grabarczyk DB, Ahel J, Clausen T

PDB-9i1j:
Cryo-EM structure of mouse RNF213:UBE2L3 transthiolation intermediate, chemically stabilized, and ATPgS
Method: single particle / : Grabarczyk DB, Ahel J, Clausen T

EMDB-62529:
Cryo-EM map of carboxysomal midi-shell: T = 16 shell under C1 symmetry
Method: single particle / : Li JX, Li TP, Wang SM, Zhang YZ, Liu LN, Wang P

EMDB-62530:
Cryo-EM map of carboxysomal midi-shell: T = 9 shell under C1 symmetry
Method: single particle / : Li JX, Li TP, Wang SM, Zhang YZ, Liu LN, Wang P

EMDB-70440:
HCoV-229E S2P bound by three DH1533 Fabs
Method: single particle / : Wrapp D

EMDB-70441:
HCoV-229E S2P bound by two DH1533 Fabs
Method: single particle / : Wrapp D

EMDB-70442:
HCoV-229E S2P bound by one DH1533 Fab
Method: single particle / : Wrapp D

EMDB-43349:
CryoEM structure of human S-OPA1 assembled on lipid membrane containing brominated cardiolipin in membrane-adjacent state
Method: helical / : Zuccaro KE, Aydin H

EMDB-53938:
Structure of the RhGB07 Prefusion, Closed-state trimeric spike protein
Method: single particle / : Lau K, Dong CN, Ekundayo B

PDB-9wd8:
structure of human KCNQ1-KCNE3-CaM complex with two PIP2
Method: single particle / : Cui C, Sun J

EMDB-64997:
structure of human KCNQ1-KCNE1-CaM complex
Method: single particle / : Cui C, Kermani A, Cui J, Sun J

EMDB-65008:
structure of human KCNQ1-KCNE1-CaM complex with PIP2
Method: single particle / : Cui C, Kermani A, Cui J, Sun J

EMDB-65013:
structure of human KCNQ1-CaM-PIP2 complex with bent conformation
Method: single particle / : Cui C, Kermani A, Cui J, Sun J

EMDB-65014:
structure of human KCNQ1-CaM-PIP2 complex with straight conformation
Method: single particle / : Cui C, Kermani A, Cui J, Sun J

PDB-9vec:
structure of human KCNQ1-KCNE1-CaM complex
Method: single particle / : Cui C, Kermani A, Cui J, Sun J

PDB-9vei:
structure of human KCNQ1-KCNE1-CaM complex with PIP2
Method: single particle / : Cui C, Kermani A, Cui J, Sun J

PDB-9ven:
structure of human KCNQ1-CaM-PIP2 complex with bent conformation
Method: single particle / : Cui C, Kermani A, Cui J, Sun J

PDB-9veo:
structure of human KCNQ1-CaM-PIP2 complex with straight conformation
Method: single particle / : Cui C, Kermani A, Cui J, Sun J

EMDB-70103:
Cryo-EM Structure of the Arabidopsis GA3-GID1A-RGA Complex
Method: single particle / : Dahal P, Sharma K, Borgnia M, Zhou P

EMDB-70104:
Cryo-EM Structure of the Arabidopsis GA3-GID1A-RGA-SLY1-ASK1 Complex
Method: single particle / : Dahal P, Sharma K, Borgnia M, Zhou P

EMDB-70105:
Cryo-EM Non-Uniform Refinement Map of the Arabidopsis GA3-GID1A-RGA-SLY1-ASK1 Complex
Method: single particle / : Dahal P, Sharma K, Borgnia M, Zhou P

EMDB-70106:
Cryo-EM Local Refinement Map (GA3-GID1A-RGA) of the Arabidopsis GA3-GID1A-RGA-SLY1-ASK1 Complex
Method: single particle / : Dahal P, Sharma K, Borgnia M, Zhou P

EMDB-70107:
Cryo-EM Local Refinement Map (SLY1-ASK1) of the Arabidopsis GA3-GID1A-RGA-SLY1-ASK1 Complex
Method: single particle / : Dahal P, Sharma K, Borgnia M, Zhou P

EMDB-70510:
Cryo-EM Structure of the Arabidopsis GA3-GID1A-RGA-SLY1-ASK1 Complex (Alternative Conformation)
Method: single particle / : Dahal P, Sharma K, Borgnia M, Zhou P

EMDB-70511:
Cryo-EM Non-Uniform Refinement Map of the Arabidopsis GA3-GID1A-RGA-SLY1-ASK1 Complex (Alternative Conformation)
Method: single particle / : Dahal P, Sharma K, Borgnia M, Zhou P

EMDB-70512:
Cryo-EM Local Refinement Map (GA3-GID1A-RGA) of the Arabidopsis GA3-GID1A-RGA-SLY1-ASK1 Complex (Alternative Conformation)
Method: single particle / : Dahal P, Sharma K, Borgnia M, Zhou P

EMDB-70513:
Cryo-EM Local Refinement Map (SLY1-ASK1) of the Arabidopsis GA3-GID1A-RGA-SLY1-ASK1 Complex (Alternative Conformation)
Method: single particle / : Dahal P, Sharma K, Borgnia M, Zhou P

EMDB-49573:
Cryo-EM structure of a de-novo designed binder NY1-B04 in complex with HLA-A*02:01 and NY-ESO-1-derived peptide SLLMWITQC
Method: single particle / : Gharpure A, Fernandez-Quintero ML, Ward AB

EMDB-70549:
Cryo-landed and laser rehydrated beta-galactosidase
Method: single particle / : Mertz KL, Jordahl D, Hemme CA, Probasco MD, Forbes DS, Ducos PL, Salome AZ, Quarmby ST, Grant T, Coon JJ

EMDB-70551:
Outside of laser spot cryo-landed beta galactosidase
Method: single particle / : Mertz KL, Jordahl D, Hemme CA, Probasco MD, Forbes DS, Ducos PL, Salome AZ, Quarmby ST, Grant T, Coon JJ

EMDB-70552:
Plunge frozen control Beta Galactosidase
Method: single particle / : Mertz KL, Jordahl D, Hemme CA, Probasco MD, Forbes DS, Ducos PL, Salome AZ, Quarmby ST, Grant T, Coon JJ

EMDB-53511:
SpCas9 with computationally designed SpCas9_b10 binder
Method: single particle / : Pacesa M, Nickel L, Correia BE

EMDB-44380:
Prefusion F glycoprotein ectodomain of Nipah virus ectodomain in complex with DS90 nanobody
Method: single particle / : Low YS, Isaacs A, Modhiran N, Watterson D

EMDB-48283:
61-12A01 Fab in complex with HIV-1 GT1.1 v4.1 SOSIP Env trimer and RM20A3 Fab
Method: single particle / : Phulera S, Ozorowski G, Ward AB

EMDB-48286:
206-3G08 Fab in complex with HIV-1 GT1.1 v4.1 SOSIP Env trimer and RM20A3 Fab
Method: single particle / : Phulera S, Ozorowski G, Ward AB

EMDB-48287:
206-9C09 Fab in complex with HIV-1 GT1.1 v4.1 SOSIP Env trimer and RM20A3 Fab
Method: single particle / : Phulera S, Ozorowski G, Ward AB

EMDB-48290:
273-4D01 Fab in complex with HIV-1 BG505 SOSIP Env trimer and RM20A3 Fab
Method: single particle / : Phulera S, Ozorowski G, Ward AB

EMDB-48291:
253-7A03 Fab in complex with HIV-1 BG505 SOSIP Env trimer and RM20A3 Fab
Method: single particle / : Phulera S, Ozorowski G, Ward AB

EMDB-70490:
BG505 GT1.1 SOSIP in complex with gp41-base epitope polyclonal antibodies isolated from a participant in the IAVI C101 clinical trial
Method: single particle / : Ozorowski G, Ward AB

EMDB-70491:
BG505 GT1.1 SOSIP in complex with V1V2V3 epitope polyclonal antibodies isolated from a participant in the IAVI C101 clinical trial
Method: single particle / : Ozorowski G, Ward AB

EMDB-70492:
BG505 GT1.1 SOSIP in complex with C3V5 epitope polyclonal antibodies isolated from a participant in the IAVI C101 clinical trial
Method: single particle / : Ozorowski G, Ward AB

EMDB-70493:
BG505 GT1.1 SOSIP in complex with CD4bs epitope polyclonal antibodies isolated from a participant in the IAVI C101 clinical trial
Method: single particle / : Ozorowski G, Ward AB

EMDB-70494:
BG505 GT1.1 SOSIP in complex with gp41 glycan hole epitope polyclonal antibodies isolated from a participant in the IAVI C101 clinical trial
Method: single particle / : Ozorowski G, Ward AB

EMDB-70495:
BG505 GT1.1 SOSIP in complex with gp41 fusion peptide epitope polyclonal antibodies isolated from a participant in the IAVI C101 clinical trial
Method: single particle / : Ozorowski G, Ward AB

EMDB-53510:
SpCas9 with computationally designed SpCas9_b3 binder
Method: single particle / : Pacesa M, Nickel L, Correia BE

EMDB-43577:
CryoEM Structure of a FtsH Helical Assembly in the Presence of ATP
Method: helical / : Li Y, Zhu J, Zhang Z, Wang F, Egelman EH, Tezcan FA

EMDB-43579:
CryoEM Structure of a FtsH Helical Assembly in the Presence of ATP
Method: helical / : Li Y, Zhu J, Zhang Z, Wang F, Egelman EH, Tezcan FA

EMDB-43580:
CryoEM Structure of a FtsH Helical Assembly in the Aged State
Method: helical / : Li Y, Zhu J, Zhang Z, Wang F, Egelman EH, Tezcan FA

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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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