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Showing all 48 items for (author: felix & mb)

EMDB-55210:
In situ cryo-ET tomogram of HeLa TMEM192-3xHA Control cell showcasing an endolysosomal structure.
Method: electron tomography / : Kraus F, Li D, Wilfling F, Harper JW

EMDB-55211:
In situ cryo-ET tomogram of HeLa TMEM192-3xHA ASAH1-/- cell showcasing an endolysosomal structure
Method: electron tomography / : Kraus F, Li D, Wilfling F, Harper JW

EMDB-49363:
Cryo-EM map of the inactive conformation of a glycoside hydrolase (CapGH2b) from the GH2 family
Method: single particle / : Martins MP, Dolce LG, Santos CR, Murakami MT

EMDB-49364:
Active conformation of a redox-regulated glycoside hydrolase (CapGH2b) from the GH2 family
Method: single particle / : Martins MP, Santos CR, Dolce LG, Murakami MT

PDB-9nfe:
Active conformation of a redox-regulated glycoside hydrolase (CapGH2b) from the GH2 family
Method: single particle / : Martins MP, Santos CR, Dolce LG, Murakami MT

EMDB-19111:
CryoEM structure of mouse GARP-lTGFbeta1 in complex with a Fab fragment derived from an activating antibody.
Method: single particle / : Felix J, Lambert F, Marien L, van der Woning B, Savvides SN, Lucas S

PDB-8rex:
CryoEM structure of mouse GARP-lTGFbeta1 in complex with a Fab fragment derived from an activating antibody.
Method: single particle / : Felix J, Lambert F, Marien L, van der Woning B, Savvides SN, Lucas S

EMDB-19110:
CryoEM structure of human GARP-lTGFbeta1 in complex with a Fab fragment derived from an activating antibody.
Method: single particle / : Felix J, Lambert F, Marien L, van der Woning B, Savvides SN, Lucas S

PDB-8rew:
CryoEM structure of human GARP-lTGFbeta1 in complex with a Fab fragment derived from an activating antibody.
Method: single particle / : Felix J, Lambert F, Marien L, van der Woning B, Savvides SN, Lucas S

EMDB-44299:
Cryo-EM structure of the desensitised ATP-bound human P2X1 receptor
Method: single particle / : Felix MB, Alisa G, Hariprasad V, Jesse IM, David MT

EMDB-44370:
Cryo-EM structure of the closed NF449-bound human P2X1 receptor
Method: single particle / : Felix MB, Alisa G, Hariprasad V, Jesse IM, David MT

EMDB-16820:
Cryo-EM structure of a pre-dimerized murine IL-12 complete extracellular signaling complex (Class 1).
Method: single particle / : Felix J, Bloch Y, Savvides SN

EMDB-16821:
Cryo-EM structure of a pre-dimerized murine IL-12 complete extracellular signaling complex (Class 2).
Method: single particle / : Felix J, Bloch Y, Savvides SN

EMDB-16822:
Cryo-EM structure of the murine IL-12 complete extracellular signaling complex (Class 1).
Method: single particle / : Felix J, Bloch Y, Savvides SN

EMDB-16823:
Cryo-EM structure of the murine IL-12 complete extracellular signaling complex (Class 2).
Method: single particle / : Felix J, Bloch Y, Savvides SN

EMDB-16824:
Cryo-EM structure of a pre-dimerized human IL-23 complete extracellular signaling complex.
Method: single particle / : Bloch Y, Felix J, Savvides SN

EMDB-17580:
Cryo-EM structure of a pre-dimerized murine IL-12 complete extracellular signaling complex (Class 1), obtained after local refinement.
Method: single particle / : Felix J, Bloch Y, Savvides SN

PDB-8odz:
Cryo-EM structure of a pre-dimerized murine IL-12 complete extracellular signaling complex (Class 1).
Method: single particle / : Felix J, Bloch Y, Savvides SN

PDB-8oe0:
Cryo-EM structure of a pre-dimerized murine IL-12 complete extracellular signaling complex (Class 2).
Method: single particle / : Felix J, Bloch Y, Savvides SN

PDB-8oe4:
Cryo-EM structure of a pre-dimerized human IL-23 complete extracellular signaling complex.
Method: single particle / : Bloch Y, Felix J, Savvides SN

PDB-8pb1:
Cryo-EM structure of a pre-dimerized murine IL-12 complete extracellular signaling complex (Class 1), obtained after local refinement.
Method: single particle / : Felix J, Bloch Y, Savvides SN

EMDB-13594:
Cryo-EM structure of Saccharomyces cerevisiae TOROID (TORC1 Organized in Inhibited Domains).
Method: single particle / : Felix J, Prouteau M, Bourgoint C, Bonadei L, Desfosses A, Gabus C, Sadian Y, Savvides SN, Gutsche I, Loewith R

EMDB-13595:
Helical reconstruction of TOROID (TORC1 Organized in Inhibited Domains) filaments.
Method: helical / : Felix J, Prouteau M, Bourgoint C, Bonnadei L, Desfosses A, Gabus C, Sadian Y, Savvides SN, Gutsche I, Loewith R

PDB-7pqh:
Cryo-EM structure of Saccharomyces cerevisiae TOROID (TORC1 Organized in Inhibited Domains).
Method: single particle / : Felix J, Prouteau M, Bourgoint C, Bonadei L, Desfosses A, Gabus C, Sadian Y, Savvides SN, Gutsche I, Loewith R

EMDB-10849:
Inducible lysine decarboxylase LdcI decamer, pH 7.0
Method: single particle / : Jessop M, Felix J

EMDB-10850:
Inducible lysine decarboxylase LdcI stacks, pH 5.7
Method: single particle / : Felix J, Jessop M

PDB-6yn5:
Inducible lysine decarboxylase LdcI decamer, pH 7.0
Method: single particle / : Jessop M, Felix J, Desfosses A, Effantin G, Gutsche I

PDB-6yn6:
Inducible lysine decarboxylase LdcI stacks, pH 5.7
Method: single particle / : Felix J, Jessop M, Desfosses A, Effantin G, Gutsche I

EMDB-4800:
Cryo-EM structure of the anti-feeding prophage (AFP) baseplate in extended state, 3-fold symmetrised
Method: single particle / : Desfosses A

EMDB-4802:
Cryo-EM structure of the anti-feeding prophage (AFP) helical sheath-tube complex in extended state
Method: helical / : Desfosses A

EMDB-4859:
Cryo-EM structure of the anti-feeding prophage (AFP) sheath-tube in contracted state, C6 symmetrized
Method: single particle / : Desfosses A

EMDB-4871:
Cryo-EM structure of the anti-feeding prophage (AFP) needle from signal-subtracted particles
Method: single particle / : Desfosses A

EMDB-4876:
Cryo-EM structure of the anti-feeding prophage (AFP) baseplate in contracted state
Method: single particle / : Desfosses A

PDB-6rbk:
Cryo-EM structure of the anti-feeding prophage (AFP) baseplate in extended state, 3-fold symmetrised
Method: single particle / : Desfosses A

PDB-6rbn:
Cryo-EM structure of the anti-feeding prophage (AFP) helical sheath-tube complex in extended state
Method: helical / : Desfosses A

PDB-6rgl:
Cryo-EM structure of the anti-feeding prophage (AFP) baseplate in contracted state
Method: single particle / : Desfosses A

EMDB-4782:
Cryo-EM structure of the anti-feeding prophage (AFP) baseplate, 6-fold symmetrised
Method: single particle / : Desfosses A

EMDB-4783:
Composite map of an entire contractile injection device : the anti-feeding prophage (AFP)
Method: single particle / : Desfosses A

EMDB-4784:
Cryo-EM structure of the anti-feeding prophage cap (AFP tube terminating cap)
Method: single particle / : Desfosses A

EMDB-4801:
Cryo-EM structure of the anti-feeding prophage cap (AFP tube terminating cap), ending with Afp3
Method: single particle / : Desfosses A

EMDB-4803:
Cryo-EM structure of the anti-feeding prophage (AFP) helical sheath in contracted state
Method: helical / : Desfosses A

PDB-6rao:
Cryo-EM structure of the anti-feeding prophage (AFP) baseplate, 6-fold symmetrised
Method: single particle / : Desfosses A

PDB-6rap:
Cryo-EM structure of the anti-feeding prophage cap (AFP tube terminating cap)
Method: single particle / : Desfosses A

PDB-6rc8:
Cryo-EM structure of the anti-feeding prophage (AFP) helical sheath in contracted state
Method: helical / : Desfosses A

EMDB-0246:
Leucine-zippered human insulin receptor ectodomain with single bound insulin - "lower" membrane-proximal part
Method: single particle / : Weis F, Menting JG

EMDB-0247:
Leucine-zippered human insulin receptor ectodomain with single bound insulin - "upper" membrane-distal part
Method: single particle / : Weis F, Menting JG

EMDB-4146:
Human 26S proteasome in complex with Oprozomib
Method: single particle / : Haselbach D, Schrader J

PDB-5m32:
Human 26S proteasome in complex with Oprozomib
Method: single particle / : Haselbach D, Schrader J, Lambrecht F, Henneberg F, Chari A, Stark H

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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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  • The previous official version 1.9 will be removed from the archive.

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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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