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Showing all 49 items for (author: tars & k)

EMDB-18518:
Asymmetric structure of the Borrelia bacteriophage BB1 procapsid, 3D class 2
Method: single particle / : Rumnieks J, Fuzik T, Tars K

EMDB-18519:
Asymmetric structure of the Borrelia bacteriophage BB1 procapsid, 3D class 3
Method: single particle / : Rumnieks J, Fuzik T, Tars K

PDB-8qo0:
Asymmetric structure of the Borrelia bacteriophage BB1 procapsid, 3D class 2
Method: single particle / : Rumnieks J, Fuzik T, Tars K

PDB-8qo1:
Asymmetric structure of the Borrelia bacteriophage BB1 procapsid, 3D class 3
Method: single particle / : Rumnieks J, Fuzik T, Tars K

EMDB-41109:
Catalytic and non-catalytic mechanisms of histone H4 lysine 20 methyltransferase SUV420H1
Method: single particle / : Abini-Agbomson S, Armache KJ

EMDB-41113:
Catalytic and non-catalytic mechanisms of histone H4 lysine 20 methyltransferase SUV420H1
Method: single particle / : Abini-Agbomson S, Armache KJ

EMDB-41259:
Catalytic and non-catalytic mechanisms of histone H4 lysine 20 methyltransferase SUV420H1
Method: single particle / : Abini-Agbomson S, Armache KJ

EMDB-41272:
Catalytic and non-catalytic mechanisms of histone H4 lysine 20 methyltransferase SUV420H1
Method: single particle / : Abini-Agbomson S, Armache KJ

PDB-8t9f:
Catalytic and non-catalytic mechanisms of histone H4 lysine 20 methyltransferase SUV420H1
Method: single particle / : Abini-Agbomson S, Armache KJ

PDB-8thu:
Catalytic and non-catalytic mechanisms of histone H4 lysine 20 methyltransferase SUV420H1
Method: single particle / : Abini-Agbomson S, Armache KJ

EMDB-40789:
BAP1/ASXL1 bound to the H2AK119Ub Nucleosome
Method: single particle / : Thomas JF, Valencia-Sanchez MI, Armache KJ

EMDB-40790:
Map focused on acidic patch BAP1/ASXL1 bound to the H2AK119Ub Nucleosome
Method: single particle / : Thomas JF, Valencia-Sanchez MI

EMDB-40791:
Overall map of BAP1/ASXL1 bound to the H2AK119Ub Nucleosome
Method: single particle / : Thomas JF, Valencia-Sanchez MI

PDB-8svf:
BAP1/ASXL1 bound to the H2AK119Ub Nucleosome
Method: single particle / : Thomas JF, Valencia-Sanchez MI, Armache KJ

EMDB-17670:
Portal from the Borrelia bacteriophage BB1 procapsid with bound scaffold protein
Method: single particle / : Rumnieks J, Fuzik T, Tars K

EMDB-17671:
Top cap of the Borrelia bacteriophage BB1 procapsid, fivefold-symmetrized outer shell
Method: single particle / : Rumnieks J, Fuzik T, Tars K

EMDB-17672:
Middle part of the Borrelia bacteriophage BB1 procapsid, tenfold-symmetrized outer shell
Method: single particle / : Rumnieks J, Fuzik T, Tars K

EMDB-17673:
Bottom cap of the Borrelia bacteriophage BB1 procapsid, fivefold-symmetrized outer shell
Method: single particle / : Rumnieks J, Fuzik T, Tars K

EMDB-17675:
Asymmetric structure of the portal-containing cap of the Borrelia bacteriophage BB1 procapsid
Method: single particle / : Rumnieks J, Fuzik T, Tars K

PDB-8php:
Portal from the Borrelia bacteriophage BB1 procapsid with bound scaffold protein
Method: single particle / : Rumnieks J, Fuzik T, Tars K

PDB-8phq:
Top cap of the Borrelia bacteriophage BB1 procapsid, fivefold-symmetrized outer shell
Method: single particle / : Rumnieks J, Fuzik T, Tars K

PDB-8phr:
Middle part of the Borrelia bacteriophage BB1 procapsid, tenfold-symmetrized outer shell
Method: single particle / : Rumnieks J, Fuzik T, Tars K

PDB-8phs:
Bottom cap of the Borrelia bacteriophage BB1 procapsid, fivefold-symmetrized outer shell
Method: single particle / : Rumnieks J, Fuzik T, Tars K

PDB-8phu:
Asymmetric structure of the portal-containing cap of the Borrelia bacteriophage BB1 procapsid
Method: single particle / : Rumnieks J, Fuzik T, Tars K

EMDB-17669:
Portal from the Borrelia bacteriophage BB1 procapsid
Method: single particle / : Rumnieks J, Fuzik T, Tars K

EMDB-17674:
Scaffold rings inside the Borrelia bacteriophage BB1 procapsid
Method: single particle / : Rumnieks J, Fuzik T, Tars K

EMDB-17739:
Borrelia bacteriophage BB1 procapsid, fivefold-symmetrized outer shell
Method: single particle / : Rumnieks J, Fuzik T, Tars K

PDB-8pho:
Portal from the Borrelia bacteriophage BB1 procapsid
Method: single particle / : Rumnieks J, Fuzik T, Tars K

PDB-8pht:
Scaffold rings inside the Borrelia bacteriophage BB1 procapsid
Method: single particle / : Rumnieks J, Fuzik T, Tars K

PDB-8pkh:
Borrelia bacteriophage BB1 procapsid, fivefold-symmetrized outer shell
Method: single particle / : Rumnieks J, Fuzik T, Tars K

EMDB-12252:
pT=7 laevo quasi-symmetric bacterial microcompartment particle
Method: single particle / : Kalnins G, Cesle EE

EMDB-12253:
D3 fusion of pT=4 quasi-symmetric bacterial microcompartment particles
Method: single particle / : Kalnins G, Cesle EE

EMDB-12254:
T=4, Q=8 quasi-symmetric bacterial microcompartment particle
Method: single particle / : Kalnins G, Cesle EE

EMDB-12255:
pT=4, Q=10 quasi-symmetric bacterial microcompartment particle
Method: single particle / : Kalnins G, Cesle EE

EMDB-4595:
T=4 quasi-symmetric bacterial microcompartment particle
Method: single particle / : Kalnins G

EMDB-4596:
T=4, Q=6 quasi-symmetric bacterial microcompartment particle
Method: single particle / : Kalnins G

EMDB-4597:
T=4 quasi symmetric bacterial microcompartment particle with one missing pentameric EutN unit
Method: single particle / : Kalnins G

PDB-6qn1:
T=4 quasi-symmetric bacterial microcompartment particle
Method: single particle / : Kalnins G

EMDB-3540:
Asymmetric reconstruction of MS2 virion
Method: single particle / : Koning RI, Gomez Blanco J, Akopjana I, Vargas J, Kazaks A, Tars K, Carazo JM, Koster AJ

EMDB-4098:
Cryo-EM reconstruction of bacteriophage AP205 virus-like particles.
Method: single particle / : Diebolder CA, Rumnieks J, Tars K, Koning RI

PDB-5lqp:
Cryo-EM reconstruction of bacteriophage AP205 virus-like particles.
Method: single particle / : Diebolder CA, Rumnieks J, Tars K, Koning RI

EMDB-8171:
Structure of shut state rabbit ryanodine receptor 1 activated by calcium ion
Method: single particle / : Wang X, Wei R, Yin C, Sun F

EMDB-8172:
Core region of shut state rabbit ryanodine receptor 1 activated by calcium ion
Method: single particle / : Wang X, Wei R, Yin C, Sun F

EMDB-3402:
Asymmetric cryo-EM reconstruction of phage MS2 reveals genome structure in situ
Method: single particle / : Koning RI, Gomez-Blanco J, Akopjana I, Vargas J, Kazaks A, Tars K, Carazo JM, Koster AJ

EMDB-3403:
Asymmetric cryo-EM reconstruction of phage MS2 reveals genome structure in situ
Method: single particle / : Koning RI, Gomez-Blanco J, Akopjana I, Vargas J, Kazaks A, Tars K, Carazo JM, Koster AJ

EMDB-3404:
Asymmetric cryo-EM reconstruction of phage MS2 reveals genome structure in situ
Method: single particle / : Koning RI, Gomez-Blanco J, Akopjana I, Vargas J, Kazaks A, Tars K, Carazo JM, Koster AJ

EMDB-8073:
Structure of open state rabbit ryanodine receptor 1 activated by calcium ion
Method: single particle / : Wang X, Wei R, Yin C, Sun F

EMDB-8074:
Core region of open state rabbit ryanodine receptor 1 activated by calcium ion
Method: single particle / : Wang X, Wei R, Yin C, Sun F

PDB-5j8v:
Structure of rabbit ryanodine receptor RyR1 open state activated by calcium ion
Method: single particle / : Wang X, Wei R, Yin C, Sun F

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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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