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Showing all 37 items for (author: neselu & k)

EMDB-43085:
Symmetry expanded map of 2 gamma-tubulins bound to 2 alpha tubulins in gamma tubulin ring complex capped microtubule end.
Method: single particle / : Aher A, Urnavicius L, Kapoor TM

EMDB-43481:
Density map for free recombinant gamma tubulin ring complex
Method: single particle / : Aher A, Urnavicius L, Kapoor TM

EMDB-43482:
Density map for gamma tubulin ring complex capped microtubule
Method: single particle / : Aher A, Urnavicius L, Kapoor TM

EMDB-43483:
Refined density map of gamma tubulin ring complex capped microtubule
Method: single particle / : Aher A, Urnavicius L, Kapoor TM

EMDB-43519:
Structure of the gamma tubulin ring complex nucleated microtubule protofilament.
Method: single particle / : Aher A, Urnavicius L, Kapoor TM

PDB-8va2:
Symmetry expanded map of 2 gamma-tubulins bound to 2 alpha tubulins in gamma tubulin ring complex capped microtubule end.
Method: single particle / : Aher A, Urnavicius L, Kapoor TM

PDB-8vrd:
Rigid body fitted model for free recombinant gamma tubulin ring complex.
Method: single particle / : Aher A, Urnavicius L, Kapoor TM

PDB-8vrj:
Rigid body fitted model for gamma tubulin ring complex capped microtubule
Method: single particle / : Aher A, Urnavicius L, Kapoor TM

PDB-8vrk:
Rigid body fitted model for refined density map of gamma tubulin ring complex capped microtubule
Method: single particle / : Aher A, Urnavicius L, Kapoor TM

PDB-8vt7:
Structure of the gamma tubulin ring complex nucleated microtubule protofilament.
Method: single particle / : Aher A, Urnavicius L, Kapoor TM

EMDB-29280:
Cas1-Cas2/3 integrase and IHF bound to CRISPR leader, repeat and foreign DNA
Method: single particle / : Santiago-Frangos A, Henriques WS, Wiegand T, Gauvin C, Buyukyoruk M, Neselu K, Eng ET, Lander GC, Wiedenheft B

PDB-8flj:
Cas1-Cas2/3 integrase and IHF bound to CRISPR leader, repeat and foreign DNA
Method: single particle / : Santiago-Frangos A, Henriques WS, Wiegand T, Gauvin C, Buyukyoruk M, Neselu K, Eng ET, Lander GC, Wiedenheft B

EMDB-29589:
Mouse apoferritin from data collected on Talos Arctica microscope equipped with a K3 camera operating in super resolution mode, in 0-50 nm ice thickness
Method: single particle / : Neselu K, Wang B, Rice WJ, Potter CS, Carragher B, Chua EYD

EMDB-29591:
Mouse apoferritin from data collected on Talos Arctica microscope equipped with a K3 camera operating in super resolution mode, in 50-100 nm ice thickness
Method: single particle / : Neselu K, Wang B, Rice WJ, Potter CS, Carragher B, Chua EYD

EMDB-29592:
Mouse apoferritin from data collected on Talos Arctica microscope equipped with a K3 camera operating in super resolution mode, in 100-150 nm ice thickness
Method: single particle / : Neselu K, Wang B, Rice WJ, Potter CS, Carragher B, Chua EYD

EMDB-29593:
Mouse apoferritin from data collected on Talos Arctica microscope equipped with a K3 camera operating in super resolution mode, in 150-200 nm ice thickness
Method: single particle / : Neselu K, Wang B, Rice WJ, Potter CS, Carragher B, Chua EYD

EMDB-29594:
Mouse apoferritin from data collected on Talos Arctica microscope equipped with a K3 camera operating in super resolution mode, in 200-500 nm ice thickness
Method: single particle / : Neselu K, Wang B, Rice WJ, Potter CS, Carragher B, Chua EYD

EMDB-29393:
Mouse apoferritin from data collected on Titan Krios with K3 camera in counting mode with a 20 eV energy filter slit, in 200-500 nm Ice thickness
Method: single particle / : Neselu K, Wang B, Rice WJ, Potter CS, Carragher B, Chua EYD

EMDB-29513:
Mouse apoferritin from data collected on Titan Krios with K3 camera in counting mode with a 20 eV energy filter slit, in 150-200 nm ice thickness
Method: single particle / : Neselu K, Wang B, Rice WJ, Potter CS, Carragher B, Chua EYD

EMDB-29535:
Mouse apoferritin from data collected on Titan Krios with K3 camera in counting mode with a 20 eV energy filter slit, in 50-100 nm ice thickness
Method: single particle / : Neselu K, Wang B, Rice WJ, Potter CS, Carragher B, Chua EYD

EMDB-29536:
Mouse apoferritin from data collected on Titan Krios with K3 camera in counting mode with a 20 eV energy filter slit, in 0-50 nm ice thickness
Method: single particle / : Neselu K, Wang B, Rice WJ, Potter CS, Carragher B, Chua EYD

EMDB-29554:
Mouse apoferritin from data collected on Titan Krios with K3 camera in counting mode without energy filter, in 0-50 nm ice thickness
Method: single particle / : Neselu K, Wang B, Rice WJ, Potter CS, Carragher B, Chua EYD

EMDB-29555:
Mouse apoferritin from data collected on Titan Krios with K3 camera in counting mode without energy filter, in 50-100 nm ice thickness
Method: single particle / : Neselu K, Wang B, Rice WJ, Potter CS, Carragher B, Chua EYD

EMDB-29556:
Mouse apoferritin from data collected on Titan Krios with K3 camera in counting mode without energy filter, in 100-150 nm ice thickness
Method: single particle / : Neselu K, Wang B, Rice WJ, Potter CS, Carragher B, Chua EYD

EMDB-29557:
Mouse apoferritin from data collected on Titan Krios with K3 camera in counting mode without energy filter, in 150-200 nm ice thickness
Method: single particle / : Neselu K, Wang B, Rice WJ, Potter CS, Carragher B, Chua EYD

EMDB-29558:
Mouse apoferritin from data collected on Titan Krios with K3 camera in counting mode without energy filter, in 200-500 nm ice thickness
Method: single particle / : Neselu K, Wang B, Rice WJ, Potter CS, Carragher B, Chua EYD

EMDB-29559:
Mouse apoferritin from data collected on Titan Krios with K3 camera in counting mode with a 20 eV energy filter slit, in 100-150 nm Ice thickness
Method: single particle / : Neselu K, Wang B, Rice WJ, Potter CS, Carragher B, Chua EYD

EMDB-29566:
Mouse apoferritin from data collected on Glacios microscope equipped with a Falcon 3 camera operating in integrating mode, in 0-50 nm ice thickness
Method: single particle / : Neselu K, Wang B, Rice WJ, Potter CS, Carragher B, Chua EYD

EMDB-29567:
Mouse apoferritin from data collected on Glacios microscope equipped with a Falcon 3 camera operating in integrating mode, in 50-100 nm ice thickness
Method: single particle / : Neselu K, Wang B, Rice WJ, Potter CS, Carragher B, Chua EYD

EMDB-29568:
Mouse apoferritin from data collected on Glacios microscope equipped with a Falcon 3 camera operating in integrating mode, in 100-150 nm ice thickness
Method: single particle / : Neselu K, Wang B, Rice WJ, Potter CS, Carragher B, Chua EYD

EMDB-29569:
Mouse apoferritin from data collected on Glacios microscope equipped with a Falcon 3 camera operating in integrating mode, in 150-200 nm ice thickness
Method: single particle / : Neselu K, Wang B, Rice WJ, Potter CS, Carragher B, Chua EYD

EMDB-29570:
Mouse apoferritin from data collected on Glacios microscope equipped with a Falcon 3 camera operating in integrating mode, in 200-500 nm ice thickness
Method: single particle / : Neselu K, Wang B, Rice WJ, Potter CS, Carragher B, Chua EYD

EMDB-29573:
Mouse apoferritin from data collected on Talos Arctica microscope equipped with a K3 camera operating in counting mode, in 0-50 nm ice thickness
Method: single particle / : Neselu K, Wang B, Rice WJ, Potter CS, Carragher B, Chua EYD

EMDB-29574:
Mouse apoferritin from data collected on Talos Arctica microscope equipped with a K3 camera operating in counting mode, in 50-100 nm ice thickness
Method: single particle / : Neselu K, Wang B, Rice WJ, Potter CS, Carragher B, Chua EYD

EMDB-29575:
Mouse apoferritin from data collected on Talos Arctica microscope equipped with a K3 camera operating in counting mode, in 100-150 nm ice thickness
Method: single particle / : Neselu K, Wang B, Rice WJ, Potter CS, Carragher B, Chua EYD

EMDB-29576:
Mouse apoferritin from data collected on Talos Arctica microscope equipped with a K3 camera operating in counting mode, in 150-200 nm ice thickness
Method: single particle / : Neselu K, Wang B, Rice WJ, Potter CS, Carragher B, Chua EYD

EMDB-29577:
Mouse apoferritin from data collected on Talos Arctica microscope equipped with a K3 camera operating in counting mode, in 200-500 nm ice thickness
Method: single particle / : Neselu K, Wang B, Rice WJ, Potter CS, Carragher B, Chua EYD

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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

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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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