7TR6
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![BU of 7tr6 by Molmil](/molmil-images/mine/7tr6) | Cascade complex from type I-A CRISPR-Cas system | Descriptor: | Cas11a, Cas5a, Cas7a, ... | Authors: | Hu, C, Ni, D, Nam, K.H, Majumdar, S, McLean, J, Stahlberg, H, Terns, M, Ke, A. | Deposit date: | 2022-01-28 | Release date: | 2022-08-10 | Last modified: | 2022-08-17 | Method: | ELECTRON MICROSCOPY (3.4 Å) | Cite: | Allosteric control of type I-A CRISPR-Cas3 complexes and establishment as effective nucleic acid detection and human genome editing tools. Mol.Cell, 82, 2022
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7TR8
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![BU of 7tr8 by Molmil](/molmil-images/mine/7tr8) | Cascade complex from type I-A CRISPR-Cas system | Descriptor: | CRISPR-associated endonuclease Cas3-HD, CRISPR-associated helicase Cas3, Cas11a, ... | Authors: | Hu, C, Ni, D, Nam, K.H, Majumdar, S, McLean, J, Stahlberg, H, Terns, M, Ke, A. | Deposit date: | 2022-01-28 | Release date: | 2022-08-10 | Last modified: | 2022-08-17 | Method: | ELECTRON MICROSCOPY (3.6 Å) | Cite: | Allosteric control of type I-A CRISPR-Cas3 complexes and establishment as effective nucleic acid detection and human genome editing tools. Mol.Cell, 82, 2022
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7TR9
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![BU of 7tr9 by Molmil](/molmil-images/mine/7tr9) | Cascade complex from type I-A CRISPR-Cas system | Descriptor: | CRISPR-associated endonuclease Cas3-HD, CRISPR-associated helicase Cas3, Cas11a, ... | Authors: | Hu, C, Ni, D, Nam, K.H, Majumdar, S, McLean, J, Stahlberg, H, Terns, M, Ke, A. | Deposit date: | 2022-01-28 | Release date: | 2022-08-10 | Last modified: | 2022-08-24 | Method: | ELECTRON MICROSCOPY (3.9 Å) | Cite: | Allosteric control of type I-A CRISPR-Cas3 complexes and establishment as effective nucleic acid detection and human genome editing tools. Mol.Cell, 82, 2022
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7TRA
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![BU of 7tra by Molmil](/molmil-images/mine/7tra) | Cascade complex from type I-A CRISPR-Cas system | Descriptor: | CRISPR-associated endonuclease Cas3-HD, CRISPR-associated helicase Cas3, Cas11a, ... | Authors: | Hu, C, Ni, D, Nam, K.H, Majumdar, S, McLean, J, Stahlberg, H, Terns, M, Ke, A. | Deposit date: | 2022-01-28 | Release date: | 2022-08-10 | Last modified: | 2022-08-17 | Method: | ELECTRON MICROSCOPY (3.3 Å) | Cite: | Allosteric control of type I-A CRISPR-Cas3 complexes and establishment as effective nucleic acid detection and human genome editing tools. Mol.Cell, 82, 2022
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7TUT
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![BU of 7tut by Molmil](/molmil-images/mine/7tut) | Structure of the rabbit 80S ribosome stalled on a 4-TMD Rhodopsin intermediate in complex with the multipass translocon | Descriptor: | 28S ribosomal RNA, 5.8S ribosomal RNA, 5S ribosomal RNA, ... | Authors: | Kim, M.K, Lewis, A.J.O, Keenan, R.J, Hegde, R.S. | Deposit date: | 2022-02-03 | Release date: | 2022-10-19 | Last modified: | 2024-06-12 | Method: | ELECTRON MICROSCOPY (3.88 Å) | Cite: | Mechanism of an intramembrane chaperone for multipass membrane proteins. Nature, 611, 2022
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7TW2
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![BU of 7tw2 by Molmil](/molmil-images/mine/7tw2) | |
7TZC
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![BU of 7tzc by Molmil](/molmil-images/mine/7tzc) | A drug and ATP binding site in type 1 ryanodine receptor | Descriptor: | (2S)-3-(octadecanoyloxy)-2-[(9Z)-octadec-9-enoyloxy]propyl 2-(trimethylammonio)ethyl phosphate, 4-[(7-methoxy-2,3-dihydro-1,4-benzothiazepin-4(5H)-yl)methyl]benzoic acid, ADENOSINE-5'-TRIPHOSPHATE, ... | Authors: | Melville, Z, Dridi, H, Yuan, Q, Reiken, S, Anetta, W, Liu, Y, Clarke, O.B, Marks, A.R. | Deposit date: | 2022-02-15 | Release date: | 2022-05-18 | Last modified: | 2022-07-20 | Method: | ELECTRON MICROSCOPY (2.45 Å) | Cite: | A drug and ATP binding site in type 1 ryanodine receptor. Structure, 30, 2022
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7U05
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![BU of 7u05 by Molmil](/molmil-images/mine/7u05) | |
7U06
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![BU of 7u06 by Molmil](/molmil-images/mine/7u06) | |
7U0H
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![BU of 7u0h by Molmil](/molmil-images/mine/7u0h) | State NE1 nucleolar 60S ribosome biogenesis intermediate - Overall model | Descriptor: | 25S rRNA, 27S pre-rRNA (guanosine(2922)-2'-O)-methyltransferase, 5.8S rRNA, ... | Authors: | Cruz, V.E, Sekulski, K, Peddada, N, Erzberger, J.P. | Deposit date: | 2022-02-18 | Release date: | 2022-12-14 | Last modified: | 2024-06-12 | Method: | ELECTRON MICROSCOPY (2.76 Å) | Cite: | Sequence-specific remodeling of a topologically complex RNP substrate by Spb4. Nat.Struct.Mol.Biol., 29, 2022
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7U0L
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![BU of 7u0l by Molmil](/molmil-images/mine/7u0l) | Crystal structure of the CCoV-HuPn-2018 RBD (domain B) in complex with canine APN | Descriptor: | 2-acetamido-2-deoxy-beta-D-glucopyranose, 2-acetamido-2-deoxy-beta-D-glucopyranose-(1-4)-2-acetamido-2-deoxy-beta-D-glucopyranose, Aminopeptidase N, ... | Authors: | Tortorici, M.A, Veesler, D, Seattle Structural Genomics Center for Infectious Disease (SSGCID) | Deposit date: | 2022-02-18 | Release date: | 2022-08-24 | Last modified: | 2023-10-18 | Method: | X-RAY DIFFRACTION (3.3 Å) | Cite: | Structure, receptor recognition, and antigenicity of the human coronavirus CCoV-HuPn-2018 spike glycoprotein. Cell, 185, 2022
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7U0P
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![BU of 7u0p by Molmil](/molmil-images/mine/7u0p) | SARS-Cov2 S protein structure in complex with neutralizing monoclonal antibody 002-S21F2 | Descriptor: | 2-acetamido-2-deoxy-beta-D-glucopyranose, 2-acetamido-2-deoxy-beta-D-glucopyranose-(1-4)-2-acetamido-2-deoxy-beta-D-glucopyranose, Spike glycoprotein, ... | Authors: | Patel, A, Ortlund, E. | Deposit date: | 2022-02-18 | Release date: | 2022-08-10 | Last modified: | 2023-02-22 | Method: | ELECTRON MICROSCOPY (3.76 Å) | Cite: | Structural insights for neutralization of Omicron variants BA.1, BA.2, BA.4, and BA.5 by a broadly neutralizing SARS-CoV-2 antibody. Sci Adv, 8, 2022
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7U0Q
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![BU of 7u0q by Molmil](/molmil-images/mine/7u0q) | |
7U1I
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![BU of 7u1i by Molmil](/molmil-images/mine/7u1i) | |
7U1J
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![BU of 7u1j by Molmil](/molmil-images/mine/7u1j) | |
7U2H
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![BU of 7u2h by Molmil](/molmil-images/mine/7u2h) | Crystal structure of the Thermus thermophilus 70S ribosome in complex with mRNA, aminoacylated A-site Gly-NH-tRNAgly, aminoacylated P-site fMet-NH-tRNAmet, and deacylated E-site tRNAgly at 2.55A resolution | Descriptor: | 16S Ribosomal RNA, 23S Ribosomal RNA, 30S ribosomal protein S10, ... | Authors: | Syroegin, E.A, Aleksandrova, E.V, Polikanov, Y.S. | Deposit date: | 2022-02-24 | Release date: | 2022-07-13 | Last modified: | 2023-11-15 | Method: | X-RAY DIFFRACTION (2.55 Å) | Cite: | Structural basis for the inability of chloramphenicol to inhibit peptide bond formation in the presence of A-site glycine. Nucleic Acids Res., 50, 2022
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7U2I
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![BU of 7u2i by Molmil](/molmil-images/mine/7u2i) | Crystal structure of the Thermus thermophilus 70S ribosome in complex with mRNA, aminoacylated A-site Gly-NH-tRNAgly, aminoacylated P-site fMet-NH-tRNAmet, deacylated E-site tRNAgly, and chloramphenicol at 2.55A resolution | Descriptor: | 16S Ribosomal RNA, 23S Ribosomal RNA, 30S ribosomal protein S10, ... | Authors: | Syroegin, E.A, Aleksandrova, E.V, Polikanov, Y.S. | Deposit date: | 2022-02-24 | Release date: | 2022-07-13 | Last modified: | 2023-11-15 | Method: | X-RAY DIFFRACTION (2.55 Å) | Cite: | Structural basis for the inability of chloramphenicol to inhibit peptide bond formation in the presence of A-site glycine. Nucleic Acids Res., 50, 2022
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7U2J
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![BU of 7u2j by Molmil](/molmil-images/mine/7u2j) | Crystal structure of the Thermus thermophilus 70S ribosome in complex with mRNA, aminoacylated A-site Gly-NH-tRNAgly, peptidyl P-site fMAC-NH-tRNAmet, deacylated E-site tRNAgly, and chloramphenicol at 2.55A resolution | Descriptor: | 16S Ribosomal RNA, 23S Ribosomal RNA, 30S ribosomal protein S10, ... | Authors: | Syroegin, E.A, Aleksandrova, E.V, Polikanov, Y.S. | Deposit date: | 2022-02-24 | Release date: | 2022-07-13 | Last modified: | 2023-11-15 | Method: | X-RAY DIFFRACTION (2.55 Å) | Cite: | Structural basis for the inability of chloramphenicol to inhibit peptide bond formation in the presence of A-site glycine. Nucleic Acids Res., 50, 2022
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7U3Q
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![BU of 7u3q by Molmil](/molmil-images/mine/7u3q) | [4T7] Self-assembling tensegrity triangle with four turns of DNA per axis with R3 symmetry | Descriptor: | DNA (29-MER), DNA (42-MER), DNA (5'-D(P*AP*CP*A)-3'), ... | Authors: | Woloszyn, K, Vecchioni, S, Lu, B, Ma, Y, Seeman, N.C, Sha, R, Ohayon, Y.P, Huang, Q. | Deposit date: | 2022-02-28 | Release date: | 2022-09-28 | Last modified: | 2023-10-25 | Method: | X-RAY DIFFRACTION (9.32 Å) | Cite: | Augmented DNA Nanoarchitectures: A Structural Library of 3D Self-Assembling Tensegrity Triangle Variants. Adv Mater, 34, 2022
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7U3V
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![BU of 7u3v by Molmil](/molmil-images/mine/7u3v) | [F224] Self-assembling tensegrity triangle with two turns, two turns and four turns of DNA per axis by extension with P1 symmetry | Descriptor: | DNA (35-MER), DNA (42-MER), DNA (5'-D(*CP*AP*CP*GP*AP*GP*CP*CP*TP*GP*AP*TP*CP*GP*GP*AP*CP*AP*AP*GP*A)-3'), ... | Authors: | Woloszyn, K, Vecchioni, S, Seeman, N.C, Sha, R, Ohayon, Y.P. | Deposit date: | 2022-02-28 | Release date: | 2022-09-28 | Last modified: | 2023-10-25 | Method: | X-RAY DIFFRACTION (5.14 Å) | Cite: | Augmented DNA Nanoarchitectures: A Structural Library of 3D Self-Assembling Tensegrity Triangle Variants. Adv Mater, 34, 2022
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7U3W
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![BU of 7u3w by Molmil](/molmil-images/mine/7u3w) | [L224] Self-assembling tensegrity triangle with two turns, two turns and four turns of DNA per axis by linker addition with P1 symmetry | Descriptor: | DNA (5'-D(*AP*AP*CP*CP*TP*AP*CP*CP*TP*GP*GP*CP*AP*GP*GP*AP*CP*GP*AP*CP*T)-3'), DNA (5'-D(*AP*GP*AP*GP*TP*CP*GP*TP*GP*GP*CP*TP*CP*G)-3'), DNA (5'-D(*CP*AP*CP*GP*AP*GP*CP*CP*TP*GP*AP*TP*CP*GP*GP*AP*CP*AP*AP*GP*A)-3'), ... | Authors: | Woloszyn, K, Vecchioni, S, Seeman, N.C, Sha, R, Ohayon, Y.P. | Deposit date: | 2022-02-28 | Release date: | 2022-09-28 | Last modified: | 2023-10-25 | Method: | X-RAY DIFFRACTION (6.33 Å) | Cite: | Augmented DNA Nanoarchitectures: A Structural Library of 3D Self-Assembling Tensegrity Triangle Variants. Adv Mater, 34, 2022
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7U3Z
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![BU of 7u3z by Molmil](/molmil-images/mine/7u3z) | [F244] Self-assembling tensegrity triangle with two turns, four turns and four turns of DNA per axis by extension with P1 symmetry | Descriptor: | DNA (35-MER), DNA (42-MER), DNA (5'-D(*AP*AP*CP*CP*TP*AP*CP*CP*TP*GP*GP*CP*AP*GP*GP*AP*CP*GP*AP*CP*T)-3'), ... | Authors: | Woloszyn, K, Vecchioni, S, Seeman, N.C, Sha, R, Ohayon, Y.P. | Deposit date: | 2022-02-28 | Release date: | 2022-09-28 | Last modified: | 2023-10-25 | Method: | X-RAY DIFFRACTION (7.55 Å) | Cite: | Augmented DNA Nanoarchitectures: A Structural Library of 3D Self-Assembling Tensegrity Triangle Variants. Adv Mater, 34, 2022
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7U40
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![BU of 7u40 by Molmil](/molmil-images/mine/7u40) | [L244] Self-assembling tensegrity triangle with two turns, four turns and four turns of DNA per axis by linker addition with P1 symmetry | Descriptor: | DNA (5'-D(*AP*AP*CP*CP*TP*AP*CP*CP*TP*GP*GP*CP*AP*GP*GP*AP*CP*GP*AP*CP*T)-3'), DNA (5'-D(*TP*TP*AP*GP*TP*CP*GP*TP*GP*GP*CP*TP*CP*G)-3'), DNA (5'-D(P*AP*CP*TP*GP*AP*TP*GP*TP*GP*GP*TP*AP*GP*G)-3'), ... | Authors: | Woloszyn, K, Vecchioni, S, Seeman, N.C, Sha, R, Ohayon, Y.P. | Deposit date: | 2022-02-28 | Release date: | 2022-09-28 | Last modified: | 2023-10-25 | Method: | X-RAY DIFFRACTION (7.55 Å) | Cite: | Augmented DNA Nanoarchitectures: A Structural Library of 3D Self-Assembling Tensegrity Triangle Variants. Adv Mater, 34, 2022
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7U41
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![BU of 7u41 by Molmil](/molmil-images/mine/7u41) | [F234] Self-assembling tensegrity triangle with two turns, three turns and four turns of DNA per axis by extension with P1 symmetry | Descriptor: | DNA (31-MER), DNA (35-MER), DNA (42-MER), ... | Authors: | Woloszyn, K, Vecchioni, S, Seeman, N.C, Sha, R, Ohayon, Y.P. | Deposit date: | 2022-02-28 | Release date: | 2022-09-28 | Last modified: | 2023-10-25 | Method: | X-RAY DIFFRACTION (7.24 Å) | Cite: | Augmented DNA Nanoarchitectures: A Structural Library of 3D Self-Assembling Tensegrity Triangle Variants. Adv Mater, 34, 2022
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7U42
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![BU of 7u42 by Molmil](/molmil-images/mine/7u42) | [F334] Self-assembling tensegrity triangle with three turns, three turns and four turns of DNA per axis by extension with P1 symmetry | Descriptor: | DNA (31-MER), DNA (35-MER), DNA (42-MER), ... | Authors: | Woloszyn, K, Vecchioni, S, Seeman, N.C, Sha, R, Ohayon, Y.P. | Deposit date: | 2022-02-28 | Release date: | 2022-09-28 | Last modified: | 2023-10-25 | Method: | X-RAY DIFFRACTION (7.71 Å) | Cite: | Augmented DNA Nanoarchitectures: A Structural Library of 3D Self-Assembling Tensegrity Triangle Variants. Adv Mater, 34, 2022
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