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Showing 1 - 50 of 119 items for (author: lamp & j)

EMDB-57728:
TnsAB-focused cryo-EM volume of the PseCascade-TniQ-TnsC-TnsAB holocomplex
Method: single particle / : Finocchio G, Oberli S, Schmitz M, Jinek M

EMDB-57729:
TnsC-focused cryo-EM volume of the PseCascade-TniQ-TnsC-TnsAB holocomplex
Method: single particle / : Finocchio G, Oberli S, Schmitz M, Jinek M

EMDB-57730:
Cascade-TniQ-TnsC-focused cryo-EM volume of the PseCascade-TniQ-TnsC-TnsAB holocomplex
Method: single particle / : Finocchio G, Oberli S, Schmitz M, Jinek M

EMDB-57731:
Consensus cryo-EM volume of the PseCascade-TniQ-TnsC-TnsAB holocomplex
Method: single particle / : Finocchio G, Oberli S, Schmitz M, Jinek M

EMDB-57736:
Cryo-EM structure of the PseCascade-TniQ-TnsC-TnsAB holocomplex
Method: single particle / : Finocchio G, Oberli S, Schmitz M, Jinek M

EMDB-57737:
TnsC-focused cryo-EM volume of the PseCascade-TniQ-TnsC complex bound to TnsB-hook motifs
Method: single particle / : Finocchio G, Oberli S, Schmitz M, Jinek M

EMDB-57738:
Consensus cryo-EM volume of the PseCascade-TniQ-TnsC complex bound to TnsB-hook motifs
Method: single particle / : Finocchio G, Oberli S, Schmitz M, Jinek M

EMDB-57739:
Cryo-EM structure of the PseCascade-TniQ-TnsC complex bound to PseTnsB-hook motifs
Method: single particle / : Finocchio G, Oberli S, Schmitz M, Jinek M

EMDB-57750:
TnsC-focused cryo-EM volume of the PseCascade-TniQ-TnsC complex
Method: single particle / : Finocchio G, Oberli S, Schmitz M, Jinek M

EMDB-57751:
Consensus cryo-EM volume of the PseCascade-TniQ-TnsC complex
Method: single particle / : Finocchio G, Oberli S, Schmitz M, Jinek M

EMDB-57757:
Cryo-EM volume of the PseCascade-TniQ complex
Method: single particle / : Finocchio G, Oberli S, Schmitz M, Jinek M

EMDB-57758:
Cryo-EM volume of the PseCascade complex
Method: single particle / : Finocchio G, Oberli S, Schmitz M, Jinek M

EMDB-57765:
Cryo-EM structure of the PseCascade-TniQ-TnsC complex
Method: single particle / : Finocchio G, Oberli S, Schmitz M, Jinek M

PDB-30ga:
Cryo-EM structure of the PseCascade-TniQ-TnsC-TnsAB holocomplex
Method: single particle / : Finocchio G, Oberli S, Schmitz M, Jinek M

PDB-30gb:
Cryo-EM structure of the PseCascade-TniQ-TnsC complex bound to PseTnsB-hook motifs
Method: single particle / : Finocchio G, Oberli S, Schmitz M, Jinek M

PDB-30gt:
Cryo-EM structure of the PseCascade-TniQ-TnsC complex
Method: single particle / : Finocchio G, Oberli S, Schmitz M, Jinek M

EMDB-55638:
Cryo-EM structure of the PseTnsAB paired-end complex (right end) in the presence of Mg
Method: single particle / : Finocchio G, Oberli S, Jinek M

EMDB-57833:
Cryo-EM structure of the PseTnsAB paired-end complex (right end) in the presence of Mn
Method: single particle / : Finocchio G, Oberli S, Jinek M

EMDB-57834:
Cryo-EM structure of the PseTnsAB paired-end complex (left end) in the presence of Mg
Method: single particle / : Finocchio G, Oberli S, Jinek M

PDB-30jv:
Cryo-EM structure of the PseTnsAB paired-end complex (right end) in the presence of Mn
Method: single particle / : Finocchio G, Oberli S, Jinek M

PDB-30jw:
Cryo-EM structure of the PseTnsAB paired-end complex (left end) in the presence of Mg
Method: single particle / : Finocchio G, Oberli S, Jinek M

PDB-9t7l:
Cryo-EM structure of the PseTnsAB paired-end complex (right end) in the presence of Mg
Method: single particle / : Finocchio G, Oberli S, Jinek M

EMDB-70595:
Structure of wild-type human TRPC3
Method: single particle / : Bell B, Baker ML, Cordero-Morales JF

EMDB-70596:
Structure of human TRPC3 T573A mutant
Method: single particle / : Bell B, Baker ML, Cordero-Morales JF

EMDB-70597:
Structure of human TRPC3 cerebellar splice variant (isoform c)
Method: single particle / : Bell B, Baker ML, Cordero-Morales JF

EMDB-70601:
Structure of a constitutively open human TRPC3 mutant in the inhibited state
Method: single particle / : Bell B, Baker ML, Cordero-Morales JF

EMDB-70724:
Structure of a constitutively open human TRPC3 mutant
Method: single particle / : Bell B, Baker ML, Cordero-Morales JF

PDB-9olk:
Structure of wild-type human TRPC3
Method: single particle / : Bell B, Baker ML, Cordero-Morales JF

PDB-9oll:
Structure of human TRPC3 T573A mutant
Method: single particle / : Bell B, Baker ML, Cordero-Morales JF

PDB-9olm:
Structure of human TRPC3 cerebellar splice variant (isoform c)
Method: single particle / : Bell B, Baker ML, Cordero-Morales JF

PDB-9olx:
Structure of a constitutively open human TRPC3 mutant in the inhibited state
Method: single particle / : Bell B, Baker ML, Cordero-Morales JF

PDB-9opu:
Structure of a constitutively open human TRPC3 mutant
Method: single particle / : Bell B, Baker ML, Cordero-Morales JF

EMDB-75514:
Structure of amplified aSyn filament by using seed amplification assay (SAA) from MSA patient CSF.
Method: helical / : Banerjee V, Wang F, Baker ML, Serysheva II, Soto C

PDB-10xu:
Structure of amplified aSyn filament by using seed amplification assay (SAA) from MSA patient CSF.
Method: helical / : Banerjee V, Wang F, Baker ML, Serysheva II, Soto C

EMDB-55036:
Human TRPM4 ion channel in MSP2N2 lipid nanodisc in a calcium-bound state
Method: single particle / : Pugh CF, Feilen LP, Zivkovic D, Praestegaard KF, Sideris C, Borthwick NJ, de Lichtenberg C, Bolla JR, Autzen AAA, Autzen HE

PDB-9smk:
Human TRPM4 ion channel in MSP2N2 lipid nanodisc in a calcium-bound state
Method: single particle / : Pugh CF, Feilen LP, Zivkovic D, Praestegaard KF, Sideris C, Borthwick NJ, de Lichtenberg C, Bolla JR, Autzen AAA, Autzen HE

EMDB-52611:
Human TRPM4 ion channel in MAASTY copolymer lipid nanodisc in a calcium-bound state
Method: single particle / : Pugh CF, Feilen LP, Zivkovic D, Praestegaard KF, Sideris C, Borthwick NJ, De Lichtenberg C, Bolla JR, Autzen AAA, Autzen HE

PDB-9i3r:
Human TRPM4 ion channel in MAASTY copolymer lipid nanodisc in a calcium-bound state
Method: single particle / : Pugh CF, Feilen LP, Zivkovic D, Praestegaard KF, Sideris C, Borthwick NJ, De Lichtenberg C, Bolla JR, Autzen AAA, Autzen HE

EMDB-47203:
Hetero-hexameric Hsp70-Hsp40-DafA complex
Method: single particle / : Ibrahim Z, Kalodimos C

PDB-9dvi:
Hetero-hexameric Hsp70-Hsp40-DafA complex
Method: single particle / : Ibrahim Z, Kalodimos C

EMDB-51248:
NME1 94-Phosphoserine
Method: single particle / : Roderer D, Schoepf F, Fiedler D, Celik A

EMDB-51250:
NME1 94-Diphosphoserine
Method: single particle / : Roderer D, Schoepf F, Fiedler D, Celik A

EMDB-51251:
NME1 94-Oligophosphoserine
Method: single particle / : Roderer D, Schoepf F, Fiedler D, Celik A

PDB-9gd6:
NME1 94-Phosphoserine
Method: single particle / : Roderer D, Schoepf F, Fiedler D, Celik A

PDB-9gd8:
NME1 94-Diphosphoserine
Method: single particle / : Roderer D, Schoepf F, Fiedler D, Celik A

PDB-9gd9:
NME1 94-Oligophosphoserine
Method: single particle / : Roderer D, Schoepf F, Fiedler D, Celik A

EMDB-49523:
Cryo-EM structure of hexameric SenDRT9 RT-ncRNA complex
Method: single particle / : Burman N, Pandey S, Wiedenheft B, Sternberg SH

EMDB-49525:
Cryo-EM structure of the trimeric SenDRT9 RT-ncRNA complex (GST fusion)
Method: single particle / : Burman N, Pandey S, Wiedenheft B, Sternberg SH

PDB-9nlv:
Cryo-EM structure of hexameric SenDRT9 RT-ncRNA complex
Method: single particle / : Burman N, Pandey S, Wiedenheft B, Sternberg SH

PDB-9nlx:
Cryo-EM structure of the trimeric SenDRT9 RT-ncRNA complex (GST fusion)
Method: single particle / : Burman N, Pandey S, Wiedenheft B, Sternberg SH

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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.

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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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