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Showing 1 - 50 of 331 items for (author: potter & cs)

EMDB-28022:
Adeno-associated virus type 2 VLP displaying M2 peptide
Method: single particle / : Hernandez C, Kopylov M

EMDB-28040:
Adeno-associated virus type 2 VLP displaying Linker peptide
Method: single particle / : Hernandez C, Kopylov M

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

EMDB-24757:
Insulin Degrading Enzyme pO/pC
Method: single particle / : Mancl JM, Liang WG, Tang WJ

EMDB-24758:
Insulin Degrading Enzyme O/pC
Method: single particle / : Mancl JM, Liang WG, Tang WJ

EMDB-24759:
Insulin Degrading Enzyme O/pO
Method: single particle / : Mancl JM, Liang WG, Tang WJ

EMDB-24760:
Insulin Degrading Enzyme O/O
Method: single particle / : Mancl JM, Liang WG, Tang WJ

EMDB-24761:
Insulin Degrading Enzyme pC/pC
Method: single particle / : Mancl JM, Liang WG, Tang WJ

EMDB-26396:
CryoET of E. coli prepared with the Waffle Method
Method: electron tomography / : Kelley K, Raczkowski AM, Klykov O, Jaroenlak P, Bobe D, Kopylov M, Eng ET, Bhabha G, Potter CS, Carragher B, Noble AJ

EMDB-25921:
CryoET of presequence protease single particle
Method: electron tomography / : Noble AJ, Liang W, Tang WJ

EMDB-25143:
Structure of positive allosteric modulator-bound active human calcium-sensing receptor
Method: single particle / : Park J, Zuo H, Frangaj A, Fu Z, Yen LY, Zhang Z, Mosyak L, Slavkovich VN, Liu J, Ray KM, Cao B, Vallese F, Geng Y, Chen S, Grassucci R, Dandey VP, Tan YZ, Eng E, Lee Y, Kloss B, Liu Z, Hendrickson WA, Potter CS, Carragher B, Graziano J, Conigrave AD, Frank J, Clarke OB, Fan QR

EMDB-25144:
Structure of positive allosteric modulator-free active human calcium-sensing receptor
Method: single particle / : Park J, Zuo H, Frangaj A, Fu Z, Yen LY, Zhang Z, Mosyak L, Slavkovich VN, Liu J, Ray KM, Cao B, Vallese F, Geng Y, Chen S, Grassucci R, Dandey VP, Tan YZ, Eng E, Lee Y, Kloss B, Liu Z, Hendrickson WA, Potter CS, Carragher B, Graziano J, Conigrave AD, Frank J, Clarke OB, Fan QR

EMDB-25145:
Structure of negative allosteric modulator-bound inactive human calcium-sensing receptor
Method: single particle / : Park J, Zuo H, Frangaj A, Fu Z, Yen LY, Zhang Z, Mosyak L, Slavkovich VN, Liu J, Ray KM, Cao B, Vallese F, Geng Y, Chen S, Grassucci R, Dandey VP, Tan YZ, Eng E, Lee Y, Kloss B, Liu Z, Hendrickson WA, Potter CS, Carragher B, Graziano J, Conigrave AD, Frank J, Clarke OB, Fan QR

EMDB-22278:
CryoEM structure of human presequence protease in partial open state 1
Method: single particle / : Liang WG, Zhao M, Tang W

EMDB-22279:
CryoEM structure of human presequence protease in partial open state 2
Method: single particle / : Liang WG, Zhao M, Tang W

EMDB-22280:
CryoEM structure of human presequence protease in open state
Method: single particle / : Liang WG, Zhao M, Tang W

EMDB-22281:
CryoEM structure of human presequence protease in partial closed state 1
Method: single particle / : Liang WG, Zhao M, Tang W

EMDB-21983:
Single-Particle Cryo-EM Structure of Arabinosyltransferase EmbB from Mycobacterium smegmatis
Method: single particle / : Tan YZ, Rodrigues J

EMDB-21580:
Single-Particle Cryo-EM Structure of Arabinofuranosyltransferase AftD from Mycobacteria
Method: single particle / : Tan YZ, Zhang L, Rodrigues J, Zheng RB, Giacometti SI, Rosario AL, Kloss B, Dandey VP, Wei H, Brunton R, Raczkowski AM, Athayde D, Catalao MJ, Pimentel M, Clarke OB, Lowary TL, Archer M, Niederweis M, Potter CS, Carragher B, Mancia F

EMDB-21600:
Single-Particle Cryo-EM Structure of Arabinofuranosyltransferase AftD from Mycobacteria, Mutant R1389S Class 1
Method: single particle / : Tan YZ, Zhang L, Rodrigues J, Zheng RB, Giacometti SI, Rosario AL, Kloss B, Dandey VP, Wei H, Brunton R, Raczkowski AM, Athayde D, Catalao MJ, Pimentel M, Clarke OB, Lowary TL, Archer M, Niederweis M, Potter CS, Carragher B, Mancia F

EMDB-21601:
Single-Particle Cryo-EM Structure of Arabinofuranosyltransferase AftD from Mycobacteria, Mutant R1389S Class 2
Method: single particle / : Tan YZ, Zhang L, Rodrigues J, Zheng RB, Giacometti SI, Rosario AL, Kloss B, Dandey VP, Wei H, Brunton R, Raczkowski AM, Athayde D, Catalao MJ, Pimentel M, Clarke OB, Lowary TL, Archer M, Niederweis M, Potter CS, Carragher B, Mancia F

EMDB-21188:
human delta protocadherin 1 full ectodomains on membranes of liposomes tomogram 1
Method: electron tomography / : Brasch J, Harrisson OJ, Noble AJ, Carragher B, Potter CS, Shapiro LS

EMDB-21189:
human delta protocadherin 1 full ectodomains on membranes tomogram 2
Method: electron tomography / : Brasch J, Harrisson OJ, Noble AJ, Carragher B, Potter CS, Shapiro LS

EMDB-21190:
human delta protocadherin 1 full ectodomains on membranes tomogram 3
Method: electron tomography / : Brasch J, Harrisson OJ, Noble AJ, Carragher B, Potter CS, Shapiro LS

EMDB-21191:
human non-clustered delta protocadherin 10 on membranes tomogram 1
Method: electron tomography / : Brasch J, Harrisson OJ, Noble AJ, Carragher B, Potter CS, Shapiro LS

EMDB-21192:
human non-clustered delta protocadherin 10 on membranes tomogram 2
Method: electron tomography / : Brasch J, Harrison OJ, Noble AJ, Carragher B, Potter CS

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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."
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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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