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Showing 1 - 50 of 12,417 items for (author: lin & f)

EMDB-64627:
In situ cryo-electron tomogram of 4days rpn9 surface mutant nucleus
Method: electron tomography / : Qu L, Tang XM, Baumeister W

EMDB-64628:
In situ cryo-electron tomogram of 18h nucleus
Method: electron tomography / : Qu L, Tang XM, Baumeister W

EMDB-64629:
In situ cryo-electron tomogram of 4days WT cytoplasm 3
Method: electron tomography / : Qu L, Tang XM, Baumeister W

EMDB-64630:
In situ cryo-electron tomogram of 4days glucose 1h WT nucleus
Method: electron tomography / : Qu L, Tang XM, Baumeister W

EMDB-64631:
In situ cryo-electron tomogram of 4days glucose control WT nucleus
Method: electron tomography / : Qu L, Tang XM, Baumeister W

EMDB-64632:
In situ cryo-electron tomogram of SA 1day WT cytoplasm 1
Method: electron tomography / : Qu L, Tang XM, Baumeister W

EMDB-64633:
In situ cryo-electron tomogram of SA 1day WT cytoplasm 2
Method: electron tomography / : Qu L, Tang XM, Baumeister W

EMDB-64634:
In situ cryo-electron tomogram of 4days mlp1delta mlp2delta nucleus
Method: electron tomography / : Qu L, Tang XM, Baumeister W

EMDB-64635:
In vitro cryo-electron tomogram of 4days WT purified
Method: electron tomography / : Qu L, Tang XM, Baumeister W

EMDB-64636:
In situ cryo-electron tomogram of 4days rpn9deltaN nucleus
Method: electron tomography / : Qu L, Tang XM, Baumeister W

EMDB-75660:
Capsid Subtomogram Average From NL4.3:PR(D25N) Immature HIV-1 Virions
Method: subtomogram averaging / : Preece B, Saffarian S

EMDB-53847:
Cryo-EM structure of human ATP citrate lyase in complex with inhibitor EVT0185-CoA
Method: single particle / : Verstraete K, Verschueren K, Savvides SN, Steinberg GR

PDB-9r90:
Cryo-EM structure of human ATP citrate lyase in complex with inhibitor EVT0185-CoA
Method: single particle / : Verstraete K, Verschueren K, Savvides SN, Steinberg GR

EMDB-55621:
2'-fluoro-modified pyrimidine (FY) RNA aptamer binding to the receptor binding domain (RBD) of the SARS-CoV-2 spike protein. (focus map: PXT origami 'pointer')
Method: single particle / : Kristoffersen EL, Andersen ES, Zwergious NH

EMDB-55622:
2'-fluoro-modified pyrimidine (FY) RNA aptamer binding to the receptor binding domain (RBD) of the SARS-CoV-2 spike protein. (focus map: Spike core)
Method: single particle / : Kristoffersen EL, Andersen ES, Zwergious NH

EMDB-55623:
2'-fluoro-modified pyrimidine (FY) RNA aptamer binding to the receptor binding domain (RBD) of the SARS-CoV-2 spike protein (Full map, no symmetry)
Method: single particle / : Kristoffersen EL, Andersen ES, Zwergious NH

EMDB-55624:
2'-fluoro-modified pyrimidine (FY) RNA aptamer binding to the receptor binding domain (RBD) of the SARS-CoV-2 spike protein. (focus map: Spike N-terminal domain (NTD))
Method: single particle / : Kristoffersen EL, Andersen ES, Zwergious NH

EMDB-55625:
2'-fluoro-modified pyrimidine (FY) RNA aptamer binding to the receptor binding domain (RBD) of the SARS-CoV-2 spike protein. (focus map: RBD-aptamer)
Method: single particle / : Kristoffersen EL, Andersen ES, Zwergious NH

EMDB-55626:
3-helix origami tile + Broccoli and Pepper aptamers (3HT-BP) with 2'-Fluoro-modified pyrimidines (FY RNA)
Method: single particle / : Kristoffersen EL, Andersen ES, Zwergius NH

EMDB-65918:
Structure of HCMV UL33 in complex with human Gs protein
Method: single particle / : Tsutsumi N, Suzuki S, Nishikawa K, Fujiyoshi Y

PDB-9wey:
Structure of HCMV UL33 in complex with human Gs protein
Method: single particle / : Tsutsumi N, Suzuki S, Nishikawa K, Fujiyoshi Y

EMDB-48699:
Consensus reconstitution of SLC33A1 in complex with a Fv clasp
Method: single particle / : Gad M, Hite RK

EMDB-71798:
Cryo-EM structure of the human inward-rectifier potassium 7.1 channel (Kir7.1) extended state
Method: single particle / : Niu Q, Vu S, Zhang R, Fu Z, Lishko PV

EMDB-71799:
Cryo-EM structure of the human inward-rectifier potassium 7.1 channel (Kir7.1) docked state
Method: single particle / : Niu Q, Vu S, Zhang R, Fu Z, Lishko PV

EMDB-71800:
Cryo-EM structure of the human inward-rectifier potassium 7.1 channel (Kir7.1) with enantiomer of 17-hydroxyprogesterone caproate
Method: single particle / : Niu Q, Vu S, Zhang R, Fu Z, Lishko PV

PDB-9pr5:
Cryo-EM structure of the human inward-rectifier potassium 7.1 channel (Kir7.1) extended state
Method: single particle / : Niu Q, Vu S, Zhang R, Fu Z, Lishko PV

PDB-9pr6:
Cryo-EM structure of the human inward-rectifier potassium 7.1 channel (Kir7.1) docked state
Method: single particle / : Niu Q, Vu S, Zhang R, Fu Z, Lishko PV

PDB-9pr7:
Cryo-EM structure of the human inward-rectifier potassium 7.1 channel (Kir7.1) with enantiomer of 17-hydroxyprogesterone caproate
Method: single particle / : Niu Q, Vu S, Zhang R, Fu Z, Lishko PV

EMDB-56420:
Structure of the MAP2K MEK1 without bound nucleotide in complex with its substrate MAPK ERK2
Method: single particle / : von Velsen J, Juyoux P, Bowler MW

PDB-9tyi:
Structure of the MAP2K MEK1 without bound nucleotide in complex with its substrate MAPK ERK2
Method: single particle / : von Velsen J, Juyoux P, Bowler MW

EMDB-53787:
Paranemic crossover triangle (PXT) with 2'-Fluoro-modified pyrimidines (FY RNA)
Method: single particle / : Kristoffersen EL, Andersen ES, Zwergius NH

EMDB-53795:
5-Helix Tile - Twist Corrected (5HT-TC) with 2'-Fluoro-modified pyrimidines (FY RNA)
Method: single particle / : Kristoffersen EL, Andersen ES, Zwergius NH

EMDB-53803:
6-Helix Bundle - with a Clasp (6HB-C)-monomer with 2'-Fluoro-modified pyrimidines (FY RNA)
Method: single particle / : Kristoffersen EL, Andersen ES, Zwergius NH

EMDB-54448:
Cryo-EM structure of activated retron Eco2 (Ec67)
Method: single particle / : Skorupskaite A, Jasnauskaite M, Grigaitis R, Malinauskaite L, Pausch P

PDB-9s1f:
Cryo-EM structure of activated retron Eco2 (Ec67)
Method: single particle / : Skorupskaite A, Jasnauskaite M, Grigaitis R, Malinauskaite L, Pausch P

EMDB-64277:
native GluN1/N2B receptor in the fully open state
Method: single particle / : Yu J, Ge JP, Chen JH

EMDB-64278:
native GluN1/N2B receptor in the open state TMD focused map
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64279:
native GluN1/N2A/N2B-s1 consensus map in the closed state
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64280:
native GluN1/N2A/N2B-s1-TMD focused map in the closed state
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64281:
native GluN1/N2A/N2B-subtype2 consensus map in the closed state
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64283:
native GluN1/N2A/N2B-S2-TMD focused map in the closed state
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64284:
native GluN1/N2A-subtype 1-TMD focused
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64285:
native GluN1/N2B-subtype1 in closed state
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64289:
native GluN1/N2A-subtype2-consensus map
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64290:
native GluN1/N2A-subtype2-TMD focused map
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64292:
native GluN1/N2A-S3-consensus map in the closed state
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64294:
native GluN1/N2A-S3 TMD focused map in the closed state
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64295:
native GluN1/N2B receptor consensus map in the closed state
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64296:
native GluN1/N2B-TMD-focused map in the closed state
Method: single particle / : Yu J, Xu RS, Ge JP

EMDB-64297:
native GluN1/N2B/NX-consensus map in the closed state
Method: single particle / : Yu J, Xu RS, Ge JP

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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

  • The Nobel Prize in Physiology or Medicine 2021 was awarded jointly to David Julius and Ardem Patapoutian "for their discoveries of receptors for temperature and touch."
  • 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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