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Showing all 47 items for (author: rice & lm)

EMDB-29930:
T. cruzi topoisomerase II alpha bound to dsDNA and the covalent inhibitor CT1
Method: single particle / : Schenk A, Deniston C, Noeske J

PDB-8gcc:
T. cruzi topoisomerase II alpha bound to dsDNA and the covalent inhibitor CT1
Method: single particle / : Schenk A, Deniston C, Noeske J

EMDB-14421:
Structure of yeast RNA Polymerase III-Ty1 integrase complex at 2.6 A (focus subunit AC40).
Method: single particle / : Nguyen PQ, Huecas S, Plaza-Pegueroles A, Fernandez-Tornero C

EMDB-14468:
Structure of yeast RNA Polymerase III-DNA-Ty1 integrase complex (Pol III-DNA-IN1) at 3.1 A
Method: single particle / : Nguyen PQ, Fernandez-Tornero C

EMDB-14469:
Structure of yeast RNA Polymerase III-Ty1 integrase complex at 2.9 A (focus subunit C11 terminal Zn-ribbon in the funnel pore).
Method: single particle / : Nguyen PQ, Huecas S, Plaza-Pegueroles A, Fernandez-Tornero C

EMDB-14470:
Structure of yeast RNA Polymerase III-Ty1 integrase complex at 2.7 A (focus subunit C11, no C11 C-terminal Zn-ribbon in the funnel pore).
Method: single particle / : Nguyen PQ, Huecas S, Plaza-Pegueroles A, Fernandez-Tornero C

EMDB-16299:
Structure of yeast RNA Polymerase III elongation complex at 3.3 A
Method: single particle / : Nguyen PQ, Fernandez-Tornero C

PDB-7z0h:
Structure of yeast RNA Polymerase III-Ty1 integrase complex at 2.6 A (focus subunit AC40).
Method: single particle / : Nguyen PQ, Huecas S, Plaza-Pegueroles A, Fernandez-Tornero C

PDB-7z2z:
Structure of yeast RNA Polymerase III-DNA-Ty1 integrase complex (Pol III-DNA-IN1) at 3.1 A
Method: single particle / : Nguyen PQ, Fernandez-Tornero C

PDB-7z30:
Structure of yeast RNA Polymerase III-Ty1 integrase complex at 2.9 A (focus subunit C11 terminal Zn-ribbon in the funnel pore).
Method: single particle / : Nguyen PQ, Fernandez-Tornero C

PDB-7z31:
Structure of yeast RNA Polymerase III-Ty1 integrase complex at 2.7 A (focus subunit C11, no C11 C-terminal Zn-ribbon in the funnel pore).
Method: single particle / : Nguyen PQ, Huecas S, Plaza-Pegueroles A, Fernandez-Tornero C

PDB-8bws:
Structure of yeast RNA Polymerase III elongation complex at 3.3 A
Method: single particle / : Nguyen PQ, Fernandez-Tornero C

EMDB-14853:
SARS-CoV-2 Spike in complex with the neutralizing antibody Cv2.1169
Method: single particle / : Guardado-Calvo P, Fernandez I, Rey FA

EMDB-21893:
Cryo-EM structure of VASH1-SVBP bound to microtubules
Method: single particle / : Li F, Li Y

EMDB-7135:
Hemagglutinin on a carbon nanowire grid plunged with Spotiton
Method: electron tomography / : Noble AN, Dandey VP, Wei H, Brasch J, Chase J, Acharya P, Tan Y, Zhang Z, Kim LY, Scapin G, Rapp M, Eng ET, Rice WJ, Cheng A, Negro CJ, Shapiro L, Kwong PD, Jeruzalmi D, des Georges A, Potter CS, Carragher B

EMDB-7138:
Rabbit muscle aldolase on a gold nanowire grid plunged with Spotiton
Method: electron tomography / : Noble AN, Dandey VP, Wei H, Brasch J, Chase J, Acharya P, Tan Y, Zhang Z, Kim LY, Scapin G, Rapp M, Eng ET, Rice WJ, Cheng A, Negro CJ, Shapiro L, Kwong PD, Jeruzalmi D, des Georges A, Potter CS, Carragher B

EMDB-7139:
Rabbit muscle aldolase on a carbon nanowire grid plunged with Spotiton
Method: electron tomography / : Noble AN, Dandey VP, Wei H, Brasch J, Chase J, Acharya P, Tan Y, Zhang Z, Kim LY, Scapin G, Rapp M, Eng ET, Rice WJ, Cheng A, Negro CJ, Shapiro L, Kwong PD, Jeruzalmi D, des Georges A, Potter CS, Carragher B

EMDB-7140:
Protein in nanodisc on a gold nanowire grid plunged with Spotiton
Method: electron tomography / : Noble AN, Dandey VP, Wei H, Brasch J, Chase J, Acharya P, Tan Y, Zhang Z, Kim LY, Scapin G, Rapp M, Eng ET, Rice WJ, Cheng A, Negro CJ, Shapiro L, Kwong PD, Jeruzalmi D, des Georges A, Potter CS, Carragher B

EMDB-7141:
Glutamate dehydrogenase on a holey carbon grid
Method: electron tomography / : Noble AN, Dandey VP, Wei H, Brasch J, Chase J, Acharya P, Tan Y, Zhang Z, Kim LY, Scapin G, Rapp M, Eng ET, Rice WJ, Cheng A, Negro CJ, Shapiro L, Kwong PD, Jeruzalmi D, des Georges A, Potter CS, Carragher B

EMDB-7142:
Glutamate dehydrogenase on a holey carbon grid
Method: electron tomography / : Noble AN, Dandey VP, Wei H, Brasch J, Chase J, Acharya P, Tan Y, Zhang Z, Kim LY, Scapin G, Rapp M, Eng ET, Rice WJ, Cheng A, Negro CJ, Shapiro L, Kwong PD, Jeruzalmi D, des Georges A, Potter CS, Carragher B

EMDB-7143:
GDH + 0.001% DDM on a carbon nanowire grid plunged with Spotiton
Method: electron tomography / : Noble AN, Dandey VP, Wei H, Brasch J, Chase J, Acharya P, Tan Y, Zhang Z, Kim LY, Scapin G, Rapp M, Eng ET, Rice WJ, Cheng A, Negro CJ, Shapiro L, Kwong PD, Jeruzalmi D, des Georges A, Potter CS, Carragher B

EMDB-7144:
DNAB helicase-helicase loader on a gold Quantifoil grid
Method: electron tomography / : Noble AN, Dandey VP, Wei H, Brasch J, Chase J, Acharya P, Tan Y, Zhang Z, Kim LY, Scapin G, Rapp M, Eng ET, Rice WJ, Cheng A, Negro CJ, Shapiro L, Kwong PD, Jeruzalmi D, des Georges A, Potter CS, Carragher B

EMDB-7145:
Apoferritin on a gold nanowire grid plunged with Spotiton
Method: electron tomography / : Noble AN, Dandey VP, Wei H, Brasch J, Chase J, Acharya P, Tan Y, Zhang Z, Kim LY, Scapin G, Rapp M, Eng ET, Rice WJ, Cheng A, Negro CJ, Shapiro L, Kwong PD, Jeruzalmi D, des Georges A, Potter CS, Carragher B

EMDB-7146:
Apoferritin on a gold nanowire grid plunged with Spotiton
Method: electron tomography / : Noble AN, Dandey VP, Wei H, Brasch J, Chase J, Acharya P, Tan Y, Zhang Z, Kim LY, Scapin G, Rapp M, Eng ET, Rice WJ, Cheng A, Negro CJ, Shapiro L, Kwong PD, Jeruzalmi D, des Georges A, Potter CS, Carragher B

EMDB-7147:
Apoferritin on a holey carbon nanowire grid plunged with Spotiton
Method: electron tomography / : Noble AN, Dandey VP, Wei H, Brasch J, Chase J, Acharya P, Tan Y, Zhang Z, Kim LY, Scapin G, Rapp M, Eng ET, Rice WJ, Cheng A, Negro CJ, Shapiro L, Kwong PD, Jeruzalmi D, des Georges A, Potter CS, Carragher B

EMDB-7148:
Apoferritin on a holey carbon nanowire grid plunged with Spotiton
Method: electron tomography / : Noble AN, Dandey VP, Wei H, Brasch J, Chase J, Acharya P, Tan Y, Zhang Z, Kim LY, Scapin G, Rapp M, Eng ET, Rice WJ, Cheng A, Negro CJ, Shapiro L, Kwong PD, Jeruzalmi D, des Georges A, Potter CS, Carragher B

EMDB-7149:
Apoferritin on a holey gold nanowire grid plunged with Spotiton
Method: electron tomography / : Noble AN, Dandey VP, Wei H, Brasch J, Chase J, Acharya P, Tan Y, Zhang Z, Kim LY, Scapin G, Rapp M, Eng ET, Rice WJ, Cheng A, Negro CJ, Shapiro L, Kwong PD, Jeruzalmi D, des Georges A, Potter CS, Carragher B

EMDB-7150:
Apoferritin with 0.5 mM TCEP on a carbon nanowire grid plunged with Spotiton
Method: electron tomography / : Noble AN, Dandey VP, Wei H, Brasch J, Chase J, Acharya P, Tan Y, Zhang Z, Kim LY, Scapin G, Rapp M, Eng ET, Rice WJ, Cheng A, Negro CJ, Shapiro L, Kwong PD, Jeruzalmi D, des Georges A, Potter CS, Carragher B

EMDB-7153:
T20S proteasome on a gold Quantifoil grid
Method: electron tomography / : Noble AN, Dandey VP, Wei H, Brasch J, Chase J, Acharya P, Tan Y, Zhang Z, Kim LY, Scapin G, Rapp M, Eng ET, Rice WJ, Cheng A, Negro CJ, Shapiro L, Kwong PD, Jeruzalmi D, des Georges A, Potter CS, Carragher B

EMDB-7154:
Mtb 20S proteasome on a carbon nanowire grid plunged with Spotiton
Method: electron tomography / : Noble AN, Dandey VP, Wei H, Brasch J, Chase J, Acharya P, Tan Y, Zhang Z, Kim LY, Scapin G, Rapp M, Eng ET, Rice WJ, Cheng A, Negro CJ, Shapiro L, Kwong PD, Jeruzalmi D, des Georges A, Potter CS, Carragher B

EMDB-8755:
Yeast tubulin polymerized with GTP in vitro
Method: helical / : Howes SC, Geyer EA

EMDB-8756:
Yeast microtubule stabilized with epothilone
Method: helical / : Howes SC, Geyer EA

EMDB-8757:
Yeast microtubule stabilized with Taxol assembled from mutated tubulin
Method: helical / : Howes SC, Geyer EA

EMDB-8758:
Yeast microtubule assembled using the slowly hydrolyzable analogue GMPCPP
Method: helical / : Howes SC, Geyer EA, LaFrance B, Zhang R, Kellogg EH, Westermann S, Rice LM, Nogales E

EMDB-8759:
Yeast microtubule assembled using the slowly hydrolyzable analogue GTPgammaS
Method: helical / : Howes SC, Geyer EA, LaFrance B, Zhang R, Kellogg EH, Westermann S, Rice LM, Nogales E

EMDB-8543:
3D negative stain EM structure of Pom152, the major component of the membrane ring of the nuclear pore complex
Method: single particle / : Upla P, Kim SJ, Sampathkumar P, Dutta K, Cahill SM, Chemmama IE, Williams R, Bonanno JB, Rice WJ, Stokes DL, Cowburn D, Almo SC, Sali A, Rout MP, Fernandez-Martinez J

EMDB-5556:
Negative stain electron microscopy structure of Nup192
Method: single particle / : Sampathkumar P, Kim SJ, Upla P, Rice W, Phillips J, Pieper U, Bonanno JB, Fernandez-Martinez J, Ketaren NE, Matsui T, Stokes DL, Sauder JM, Burley SK, Sali A, Rout MP, Almo SC

EMDB-1651:
Cryo-EM structure of the programmed yeast 80 ribosome bound the Ssh1 complex
Method: single particle / : Becker T, Mandon E, Bhushan S, Jarasch A, Armache JP, Funes S, Jossinet F, Gumbart J, Mielke T, Berninghausen O, Schulten K, Westhof E, Gilmore R, Beckmann R

EMDB-1667:
Cryo-EM structure of the active yeast Ssh1 complex bound to the programmed yeast 80S ribosome bearing a P-site tRNA
Method: single particle / : Becker T, Mandon E, Bhushan S, Jarasch A, Armache JP, Funes S, Jossinet F, Gumbart J, Mielke T, Berninghausen O, Schulten K, Westhof E, Gilmore R, Beckmann R

EMDB-1668:
Cryo-EM structure of the active yeast 80S ribosome bearing a P-site tRNA and with the rRNA expansion segment ES27 in the exit conformation
Method: single particle / : Becker T, Mandon E, Bhushan S, Jarasch A, Armache JP, Funes S, Jossinet F, Gumbart J, Mielke T, Berninghausen O, Schulten K, Westhof E, Gilmore R, Beckmann R

EMDB-1669:
Cryo-EM structures of the idle yeast Ssh1 complex bound to the yeast 80S ribosome
Method: single particle / : Becker T, Mandon E, Bhushan S, Jarasch A, Armache JP, Funes S, Jossinet F, Gumbart J, Mielke T, Berninghausen O, Schulten K, Westhof E, Gilmore R, Beckmann R

EMDB-1652:
Cryo-EM structure of the mammalian Sec61 complex bound to the actively translating wheat germ 80S ribosome
Method: single particle / : Becker T, Mandon E, Bhushan S, Jarasch A, Armache JP, Funes S, Jossinet F, Gumbart J, Mielke T, Berninghausen O, Schulten K, Westhof E, Gilmore R, Beckmann R

PDB-2ww9:
Cryo-EM structure of the active yeast Ssh1 complex bound to the yeast 80S ribosome
Method: single particle / : Becker T, Mandon E, Bhushan S, Jarasch A, Armache JP, Funes S, Jossinet F, Gumbart J, Mielke T, Berninghausen O, Schulten K, Westhof E, Gilmore R, Beckmann R

PDB-2wwa:
Cryo-EM structure of idle yeast Ssh1 complex bound to the yeast 80S ribosome
Method: single particle / : Becker T, Mandon E, Bhushan S, Jarasch A, Armache JP, Funes S, Jossinet F, Gumbart J, Mielke T, Berninghausen O, Schulten K, Westhof E, Gilmore R, Beckmann R

PDB-2wwb:
CRYO-EM STRUCTURE OF THE MAMMALIAN SEC61 COMPLEX BOUND TO THE ACTIVELY TRANSLATING WHEAT GERM 80S RIBOSOME
Method: single particle / : Becker T, Mandon E, Bhushan S, Jarasch A, Armache JP, Funes S, Jossinet F, Gumbart J, Mielke T, Berninghausen O, Schulten K, Westhof E, Gilmore R, Beckmann R

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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

  • Version 3 of the EMDB header file is now the official format.
  • The previous official version 1.9 will be removed from the archive.

Related info.:EMDB header

External links:wwPDB to switch to version 3 of the EMDB data model

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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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New page: Covid-19 featured information page in EM Navigator.

Related info.:Covid-19 info / Mar 5, 2020. Novel coronavirus structure data

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