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Showing 1 - 50 of 1,695 items for (author: beck & f)

EMDB-54755:
80S ribosome of aged S. cerevisiae cells (day 3) - polysome fraction
Method: single particle / : Khusainov I, Beck M

EMDB-54753:
80S ribosome of young S. cerevisiae cells (day 0) - polysome fraction
Method: single particle / : Khusainov I, Beck M

EMDB-54754:
80S ribosome of young S. cerevisiae cells (day 0) - polysome fraction digested with RNAse I
Method: single particle / : Khusainov I, Beck M

EMDB-55111:
Structure of a disulfide-bridged complex between HLA-A*02:01-K127N/Y84C and ERp57/tapasin-K16C - State 4
Method: single particle / : Mitlehner A, Loll B, Hilal T

EMDB-55112:
Structure of a disulfide-bridged complex between HLA-A*02:01-K127N/Y84C and ERp57/tapasin-K16C - State 1
Method: single particle / : Mitlehner A, Loll B, Hilal T

EMDB-55113:
Structure of a disulfide-bridged complex between HLA-A*02:01-K127N/Y84C and ERp57/tapasin-K16C - State 2
Method: single particle / : Mitlehner A, Loll B, Hilal T

EMDB-55114:
Structure of a disulfide-bridged complex between HLA-A*02:01-K127N/Y84C and ERp57/tapasin-K16C - State 3
Method: single particle / : Mitlehner A, Loll B, Hilal T

EMDB-54113:
Human alpha3 Na+,K+-ATPase in the Na+-bound E1-ATP state
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

EMDB-54114:
Human alpha3 Na+,K+-ATPase in the Na+-occluded E1P-ADP state
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

EMDB-54115:
Human alpha3 Na+,K+-ATPase in the Na+-occluded E2P state
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

EMDB-54116:
Human alpha3 Na+,K+-ATPase in the outward open E2P state
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

EMDB-54117:
Human alpha3 Na+,K+-ATPase in the Na+-bound E1-ATP state obtained under turnover conditions
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

EMDB-54118:
Human alpha3 Na+,K+-ATPase in the Na+-occluded E1P-ADP state obtained under turnover conditions
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

EMDB-54119:
Human alpha3 Na+,K+-ATPase in the Na+-occluded E2P state obtained under turnover conditions
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

EMDB-54120:
Human alpha3 Na+,K+-ATPase in the K+-occluded E2P state obtained under turnover conditions
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

EMDB-54121:
Human alpha3 Q140L Na+,K+-ATPase in the Na+-bound E1 state
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

EMDB-54122:
Human alpha3 Q140L Na+,K+-ATPase in the Na+-occluded E1P-ADP state
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

EMDB-54123:
Human alpha3 Q140L Na+,K+-ATPase in the Na+-occluded E2P state
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

EMDB-54124:
Human alpha3 Q140L Na+,K+-ATPase in the outward open E2P state
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

EMDB-54125:
Human alpha1 Na+,K+-ATPase in the Na+-bound E1 state
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

EMDB-54126:
Human alpha1 Na+,K+-ATPase in the Na+-occluded E1P-ADP state
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

EMDB-54127:
Human alpha1 Na+,K+-ATPase in the Na+-occluded E2P state
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

EMDB-54128:
Human alpha1 Na+,K+-ATPase in the outward open E2P state
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

PDB-9ro9:
Human alpha3 Na+,K+-ATPase in the Na+-bound E1-ATP state
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

PDB-9roa:
Human alpha3 Na+,K+-ATPase in the Na+-occluded E1P-ADP state
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

PDB-9rod:
Human alpha3 Na+,K+-ATPase in the Na+-occluded E2P state
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

PDB-9roe:
Human alpha3 Na+,K+-ATPase in the outward open E2P state
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

PDB-9rof:
Human alpha3 Na+,K+-ATPase in the Na+-bound E1-ATP state obtained under turnover conditions
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

PDB-9rog:
Human alpha3 Na+,K+-ATPase in the Na+-occluded E1P-ADP state obtained under turnover conditions
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

PDB-9roh:
Human alpha3 Na+,K+-ATPase in the Na+-occluded E2P state obtained under turnover conditions
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

PDB-9roi:
Human alpha3 Na+,K+-ATPase in the K+-occluded E2P state obtained under turnover conditions
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

PDB-9roj:
Human alpha3 Q140L Na+,K+-ATPase in the Na+-bound E1 state
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

PDB-9rok:
Human alpha3 Q140L Na+,K+-ATPase in the Na+-occluded E1P-ADP state
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

PDB-9rol:
Human alpha3 Q140L Na+,K+-ATPase in the Na+-occluded E2P state
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

PDB-9rom:
Human alpha3 Q140L Na+,K+-ATPase in the outward open E2P state
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

PDB-9ron:
Human alpha1 Na+,K+-ATPase in the Na+-bound E1 state
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

PDB-9roo:
Human alpha1 Na+,K+-ATPase in the Na+-occluded E1P-ADP state
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

PDB-9rop:
Human alpha1 Na+,K+-ATPase in the Na+-occluded E2P state
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

PDB-9roq:
Human alpha1 Na+,K+-ATPase in the outward open E2P state
Method: single particle / : Christensen ME, Habeck M, Katz A, Fruergaard MU, Karlish SJD, Nissen P

EMDB-65226:
Cryo-EM Structure of GPR158 in Complex with RGS7-Gbeta5 and Nanobody Nb20
Method: single particle / : Laboute T, Zucca S, Sial M, Sharma M, Brunori G, Singh S, Singh A, Martemyanov K

PDB-9vos:
Cryo-EM Structure of GPR158 in Complex with RGS7-Gbeta5 and Nanobody Nb20
Method: single particle / : Laboute T, Zucca S, Sial M, Sharma M, Brunori G, Singh S, Singh A, Martemyanov K

EMDB-66677:
Cryo-EM structure of the 90S pre-ribosome (Enp1-Rrp12 WT) from Chaetomium thermophilum, state A
Method: single particle / : Lau B, Li Y, Zhu J, Fischer P, Hong X, Yuan R, Beckmann R, Hurt E, Cheng J

EMDB-66678:
Cryo-EM structure of the 90S pre-ribosome (Enp1-Rrp12 WT) from Chaetomium thermophilum, state B1
Method: single particle / : Lau B, Li Y, Zhu J, Fischer P, Hong X, Yuan R, Beckmann R, Hurt E, Cheng J

EMDB-66679:
Cryo-EM structure of the pre-40S ribosome (Enp1-Rrp12 WT) from Chaetomium thermophilum, state Tsr1-1
Method: single particle / : Lau B, Li Y, Zhu J, Fischer P, Hong X, Yuan R, Beckmann R, Hurt E, Cheng J

EMDB-66680:
Cryo-EM structure of the pre-40S ribosome (Enp1-Rrp12 WT) from Chaetomium thermophilum, state Tsr1-2
Method: single particle / : Lau B, Li Y, Zhu J, Fischer P, Hong X, Yuan R, Beckmann R, Hurt E, Cheng J

EMDB-66681:
Cryo-EM structure of the pre-40S ribosome (Enp1-Rrp12 WT) from Chaetomium thermophilum, state Tsr1-3
Method: single particle / : Lau B, Li Y, Zhu J, Fischer P, Hong X, Yuan R, Beckmann R, Hurt E, Cheng J

EMDB-66682:
Cryo-EM structure of the pre-40S ribosome (Enp1-Rrp12 WT) from Chaetomium thermophilum, state Rrp12-A1
Method: single particle / : Lau B, Li Y, Zhu J, Fischer P, Hong X, Yuan R, Beckmann R, Hurt E, Cheng J

EMDB-66683:
Cryo-EM structure of the pre-40S ribosome (Enp1-Rrp12 WT) from Chaetomium thermophilum, state Rrp12-A2
Method: single particle / : Lau B, Li Y, Zhu J, Fischer P, Hong X, Yuan R, Beckmann R, Hurt E, Cheng J

EMDB-66684:
Cryo-EM structure of the pre-40S ribosome (Enp1-Rrp12 WT) from Chaetomium thermophilum, state Rio2-C
Method: single particle / : Lau B, Li Y, Zhu J, Fischer P, Hong X, Yuan R, Beckmann R, Hurt E, Cheng J

EMDB-66685:
Cryo-EM structure of the 90S pre-ribosome (Enp1-Rrp12 Mut) from Chaetomium thermophilum, state a
Method: single particle / : Lau B, Li Y, Zhu J, Fischer P, Hong X, Yuan R, Beckmann R, Hurt E, Cheng J

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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

  • 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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