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8UQ2
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BU of 8uq2 by Molmil
Structure of human RyR2-S2808D in the subprimed state
Descriptor: ADENOSINE-5'-TRIPHOSPHATE, Peptidyl-prolyl cis-trans isomerase FKBP1B, Ryanodine receptor 2, ...
Authors:Miotto, M.C, Marks, A.R.
Deposit date:2023-10-23
Release date:2023-11-15
Method:ELECTRON MICROSCOPY (2.98 Å)
Cite:Structural basis for ryanodine receptor type 2 leak in heart failure and arrhythmogenic disorders
To Be Published
8UQ5
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BU of 8uq5 by Molmil
Structure of human RyR2-S2808D in the primed state in the presence of Rapamycin
Descriptor: ADENOSINE-5'-TRIPHOSPHATE, Ryanodine receptor 2, ZINC ION
Authors:Miotto, M.C, Marks, A.R.
Deposit date:2023-10-23
Release date:2023-11-15
Method:ELECTRON MICROSCOPY (3.96 Å)
Cite:Structural basis for ryanodine receptor type 2 leak in heart failure and arrhythmogenic disorders
To Be Published
8UQ4
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BU of 8uq4 by Molmil
Structure of human RyR2-S2808D in the subprimed state in the presence of H2O2/NOC-12/GSH
Descriptor: ADENOSINE-5'-TRIPHOSPHATE, Peptidyl-prolyl cis-trans isomerase FKBP1B, Ryanodine receptor 2, ...
Authors:Miotto, M.C, Marks, A.R.
Deposit date:2023-10-23
Release date:2023-11-15
Method:ELECTRON MICROSCOPY (3.64 Å)
Cite:Structural basis for ryanodine receptor type 2 leak in heart failure and arrhythmogenic disorders
To Be Published
8UXI
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BU of 8uxi by Molmil
Structure of PKA phosphorylated human RyR2-R420W in the open state in the presence of calcium
Descriptor: ADENOSINE-5'-TRIPHOSPHATE, CALCIUM ION, Peptidyl-prolyl cis-trans isomerase FKBP1B, ...
Authors:Miotto, M.C, Marks, A.R.
Deposit date:2023-11-09
Release date:2023-11-22
Method:ELECTRON MICROSCOPY (3.29 Å)
Cite:Structural basis for ryanodine receptor type 2 leak in heart failure and arrhythmogenic disorders
To Be Published
8UQ3
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BU of 8uq3 by Molmil
Structure of human RyR2-S2808D in the closed state in the presence of ARM210
Descriptor: 4-[(7-methoxy-2,3-dihydro-1,4-benzothiazepin-4(5H)-yl)methyl]benzoic acid, ADENOSINE-5'-TRIPHOSPHATE, Peptidyl-prolyl cis-trans isomerase FKBP1B, ...
Authors:Miotto, M.C, Marks, A.R.
Deposit date:2023-10-23
Release date:2023-11-15
Method:ELECTRON MICROSCOPY (3.18 Å)
Cite:Structural basis for ryanodine receptor type 2 leak in heart failure and arrhythmogenic disorders
To Be Published
8UXL
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BU of 8uxl by Molmil
Structure of PKA phosphorylated human RyR2-R420W in the primed state in the presence of calcium and calmodulin
Descriptor: ADENOSINE-5'-TRIPHOSPHATE, CALCIUM ION, Calmodulin-1, ...
Authors:Miotto, M.C, Marks, A.R.
Deposit date:2023-11-09
Release date:2023-11-22
Method:ELECTRON MICROSCOPY (3.12 Å)
Cite:Structural basis for ryanodine receptor type 2 leak in heart failure and arrhythmogenic disorders
To Be Published
8UXG
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BU of 8uxg by Molmil
Structure of PKA phosphorylated human RyR2-R420W in the closed state in the presence of ARM210
Descriptor: 4-[(7-methoxy-2,3-dihydro-1,4-benzothiazepin-4(5H)-yl)methyl]benzoic acid, ADENOSINE-5'-TRIPHOSPHATE, Peptidyl-prolyl cis-trans isomerase FKBP1B, ...
Authors:Miotto, M.C, Marks, A.R.
Deposit date:2023-11-09
Release date:2023-11-22
Method:ELECTRON MICROSCOPY (3.08 Å)
Cite:Structural basis for ryanodine receptor type 2 leak in heart failure and arrhythmogenic disorders
To Be Published
8UXC
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BU of 8uxc by Molmil
Structure of PKA phosphorylated human RyR2-R420Q in the primed state
Descriptor: ADENOSINE-5'-TRIPHOSPHATE, Peptidyl-prolyl cis-trans isomerase FKBP1B, Ryanodine receptor 2, ...
Authors:Miotto, M.C, Marks, A.R.
Deposit date:2023-11-09
Release date:2023-11-22
Method:ELECTRON MICROSCOPY (2.86 Å)
Cite:Structural basis for ryanodine receptor type 2 leak in heart failure and arrhythmogenic disorders
To Be Published
8UXH
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BU of 8uxh by Molmil
Structure of PKA phosphorylated human RyR2-R420W in the primed state in the presence of calcium
Descriptor: ADENOSINE-5'-TRIPHOSPHATE, CALCIUM ION, Peptidyl-prolyl cis-trans isomerase FKBP1B, ...
Authors:Miotto, M.C, Marks, A.R.
Deposit date:2023-11-09
Release date:2023-11-22
Method:ELECTRON MICROSCOPY (3.52 Å)
Cite:Structural basis for ryanodine receptor type 2 leak in heart failure and arrhythmogenic disorders
To Be Published
8UXM
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BU of 8uxm by Molmil
Structure of PKA phosphorylated human RyR2-R420W in the open state in the presence of calcium and calmodulin
Descriptor: ADENOSINE-5'-TRIPHOSPHATE, CALCIUM ION, Calmodulin-1, ...
Authors:Miotto, M.C, Marks, A.R.
Deposit date:2023-11-09
Release date:2023-11-22
Method:ELECTRON MICROSCOPY (3.56 Å)
Cite:Structural basis for ryanodine receptor type 2 leak in heart failure and arrhythmogenic disorders
To Be Published
8UXE
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BU of 8uxe by Molmil
Structure of PKA phosphorylated human RyR2-R420Q in the closed state in the presence of ARM210
Descriptor: 4-[(7-methoxy-2,3-dihydro-1,4-benzothiazepin-4(5H)-yl)methyl]benzoic acid, ADENOSINE-5'-TRIPHOSPHATE, Peptidyl-prolyl cis-trans isomerase FKBP1B, ...
Authors:Miotto, M.C, Marks, A.R.
Deposit date:2023-11-09
Release date:2023-11-22
Method:ELECTRON MICROSCOPY (3.53 Å)
Cite:Structural basis for ryanodine receptor type 2 leak in heart failure and arrhythmogenic disorders
To Be Published
8UXF
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BU of 8uxf by Molmil
Structure of PKA phosphorylated human RyR2-R420W in the primed state
Descriptor: ADENOSINE-5'-TRIPHOSPHATE, Peptidyl-prolyl cis-trans isomerase FKBP1B, Ryanodine receptor 2, ...
Authors:Miotto, M.C, Marks, A.R.
Deposit date:2023-11-09
Release date:2023-11-22
Method:ELECTRON MICROSCOPY (3.13 Å)
Cite:Structural basis for ryanodine receptor type 2 leak in heart failure and arrhythmogenic disorders
To Be Published
7UA1
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BU of 7ua1 by Molmil
Structure of PKA phosphorylated human RyR2-R2474S in the closed state in the presence of ARM210
Descriptor: 4-[(7-methoxy-2,3-dihydro-1,4-benzothiazepin-4(5H)-yl)methyl]benzoic acid, ADENOSINE-5'-TRIPHOSPHATE, Peptidyl-prolyl cis-trans isomerase FKBP1B, ...
Authors:Miotto, M.C, Marks, A.R.
Deposit date:2022-03-11
Release date:2022-08-03
Method:ELECTRON MICROSCOPY (2.99 Å)
Cite:Structural analyses of human ryanodine receptor type 2 channels reveal the mechanisms for sudden cardiac death and treatment.
Sci Adv, 8, 2022
7U9T
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BU of 7u9t by Molmil
Structure of PKA phosphorylated human RyR2 in the closed state in the presence of Calmodulin
Descriptor: ADENOSINE-5'-TRIPHOSPHATE, Calmodulin-1, Peptidyl-prolyl cis-trans isomerase FKBP1B, ...
Authors:Miotto, M.C, Marks, A.R.
Deposit date:2022-03-11
Release date:2022-08-03
Method:ELECTRON MICROSCOPY (2.68 Å)
Cite:Structural analyses of human ryanodine receptor type 2 channels reveal the mechanisms for sudden cardiac death and treatment.
Sci Adv, 8, 2022
7U9Q
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BU of 7u9q by Molmil
Structure of PKA phosphorylated human RyR2 in the closed state
Descriptor: ADENOSINE-5'-TRIPHOSPHATE, Peptidyl-prolyl cis-trans isomerase FKBP1B, Ryanodine receptor 2, ...
Authors:Miotto, M.C, Marks, A.R.
Deposit date:2022-03-11
Release date:2022-08-03
Method:ELECTRON MICROSCOPY (3.11 Å)
Cite:Structural analyses of human ryanodine receptor type 2 channels reveal the mechanisms for sudden cardiac death and treatment.
Sci Adv, 8, 2022
7U9X
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BU of 7u9x by Molmil
Structure of PKA phosphorylated human RyR2-R2474S in the closed state
Descriptor: ADENOSINE-5'-TRIPHOSPHATE, Peptidyl-prolyl cis-trans isomerase FKBP1B, Ryanodine receptor 2, ...
Authors:Miotto, M.C, Marks, A.R.
Deposit date:2022-03-11
Release date:2022-08-03
Method:ELECTRON MICROSCOPY (2.58 Å)
Cite:Structural analyses of human ryanodine receptor type 2 channels reveal the mechanisms for sudden cardiac death and treatment.
Sci Adv, 8, 2022
7UA3
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BU of 7ua3 by Molmil
Structure of PKA phosphorylated human RyR2-R2474S in the closed state in the presence of Calmodulin
Descriptor: ADENOSINE-5'-TRIPHOSPHATE, Calmodulin-1, Peptidyl-prolyl cis-trans isomerase FKBP1B, ...
Authors:Miotto, M.C, Marks, A.R.
Deposit date:2022-03-11
Release date:2022-08-03
Method:ELECTRON MICROSCOPY (2.97 Å)
Cite:Structural analyses of human ryanodine receptor type 2 channels reveal the mechanisms for sudden cardiac death and treatment.
Sci Adv, 8, 2022
7U9Z
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BU of 7u9z by Molmil
Structure of PKA phosphorylated human RyR2-R2474S in the open state
Descriptor: ADENOSINE-5'-TRIPHOSPHATE, CALCIUM ION, Peptidyl-prolyl cis-trans isomerase FKBP1B, ...
Authors:Miotto, M.C, Marks, A.R.
Deposit date:2022-03-11
Release date:2022-08-03
Method:ELECTRON MICROSCOPY (3.29 Å)
Cite:Structural analyses of human ryanodine receptor type 2 channels reveal the mechanisms for sudden cardiac death and treatment.
Sci Adv, 8, 2022
7UA4
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BU of 7ua4 by Molmil
Structure of PKA phosphorylated human RyR2-R2474S in the open state in the presence of Calmodulin
Descriptor: ADENOSINE-5'-TRIPHOSPHATE, CALCIUM ION, Calmodulin-1, ...
Authors:Miotto, M.C, Marks, A.R.
Deposit date:2022-03-11
Release date:2022-08-03
Method:ELECTRON MICROSCOPY (2.93 Å)
Cite:Structural analyses of human ryanodine receptor type 2 channels reveal the mechanisms for sudden cardiac death and treatment.
Sci Adv, 8, 2022
7U9R
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BU of 7u9r by Molmil
Structure of PKA phosphorylated human RyR2 in the open state
Descriptor: ADENOSINE-5'-TRIPHOSPHATE, CALCIUM ION, Peptidyl-prolyl cis-trans isomerase FKBP1B, ...
Authors:Miotto, M.C, Marks, A.R.
Deposit date:2022-03-11
Release date:2022-08-03
Method:ELECTRON MICROSCOPY (3.69 Å)
Cite:Structural analyses of human ryanodine receptor type 2 channels reveal the mechanisms for sudden cardiac death and treatment.
Sci Adv, 8, 2022
7UA5
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BU of 7ua5 by Molmil
Structure of dephosphorylated human RyR2 in the closed state
Descriptor: ADENOSINE-5'-TRIPHOSPHATE, Peptidyl-prolyl cis-trans isomerase FKBP1B, Ryanodine receptor 2, ...
Authors:Miotto, M.C, Marks, A.R.
Deposit date:2022-03-11
Release date:2022-08-03
Method:ELECTRON MICROSCOPY (2.83 Å)
Cite:Structural analyses of human ryanodine receptor type 2 channels reveal the mechanisms for sudden cardiac death and treatment.
Sci Adv, 8, 2022
7UA9
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BU of 7ua9 by Molmil
Structure of dephosphorylated human RyR2 in the open state
Descriptor: ADENOSINE-5'-TRIPHOSPHATE, CALCIUM ION, Peptidyl-prolyl cis-trans isomerase FKBP1B, ...
Authors:Miotto, M.C, Marks, A.R.
Deposit date:2022-03-11
Release date:2022-08-03
Method:ELECTRON MICROSCOPY (3.59 Å)
Cite:Structural analyses of human ryanodine receptor type 2 channels reveal the mechanisms for sudden cardiac death and treatment.
Sci Adv, 8, 2022

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