#IFEStandardized nameMoleculeOrganismSourceRfamTitleMethodRes. Å#NTsDate
18QYX|1|B2 (rep)5S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001Human 60S ribosomal subunitElectron microscopy1.781192024-12-11
28GLP|1|L75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001mRNA decoding in human is kinetically and structurally distinct from bacteria (Consensus LSU focused refined structure)Electron microscopy1.671202023-04-19
39C3H|1|L95S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001Structure of the CNOT3-bound human 80S ribosome with tRNA-ARG in the P-site.Electron microscopy21202024-12-04
48A3D|1|B5S ribosomal RNA5S ribosomal RNAHomo sapiensEukaryaRF00001Human mature large subunit of the ribosome with eIF6 and homoharringtonine boundElectron microscopy1.671202023-03-08
58QFD|1|75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001UFL1 E3 ligase bound 60S ribosomeElectron microscopy2.21192024-02-21
68YOO|1|L75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001Cryo-EM structure of the human 80S ribosome with 100 um TigecyclineElectron microscopy21202024-07-10
78QOI|1|L75S ribosomal RNA5S rRNA (120-MER)Homo sapiensEukaryaRF00001Structure of the human 80S ribosome at 1.9 A resolution - the molecular role of chemical modifications and ions in RNAElectron microscopy1.91202024-06-12
88JDK|1|E5S ribosomal RNA5S ribosomal RNAHomo sapiensEukaryaRF00001Structure of the Human cytoplasmic Ribosome with human tRNA Asp(ManQ34) and mRNA(GAU)Electron microscopy2.261202023-12-06
98G5Y|1|L75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001mRNA decoding in human is kinetically and structurally distinct from bacteria (IC state)Electron microscopy2.291202023-04-19
108YOP|1|L75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001Cryo-EM structure of the human 80S ribosome with 4 um TigecyclineElectron microscopy2.21202024-07-10
118JDJ|1|E5S ribosomal RNA5S ribosomal RNAHomo sapiensEukaryaRF00001Structure of the Human cytoplasmic Ribosome with human tRNA Asp(Q34) and mRNA(GAU)Electron microscopy2.51202023-12-06
128JDL|1|E5S ribosomal RNA5S ribosomal RNAHomo sapiensEukaryaRF00001Structure of the Human cytoplasmic Ribosome with human tRNA Tyr(GalQ34) and mRNA(UAU) (non-rotated state)Electron microscopy2.421202023-12-06
138K2C|1|L75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001Cryo-EM structure of the human 80S ribosome with TigecyclineElectron microscopy2.41202024-07-10
149GUL|1|L75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001Structure of FLuc-XBP1u+ stalled human 60S ribosome nascent chain complexElectron microscopy2.21202025-09-24
158XSX|1|L75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001Cryo-EM structure of the human 80S ribosome with Tigecycline, E-tRNA, SERBP1 and eEF2Electron microscopy2.41202024-07-10
167XNY|1|L25S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001High resolution cry-EM structure of the human 80S ribosome from SNORD127+/- Kasumi-1 cellsElectron microscopy2.51202023-04-05
178G60|1|L75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001mRNA decoding in human is kinetically and structurally distinct from bacteria (CR state)Electron microscopy2.541202023-04-19
186ZMI|1|L75S ribosomal RNA5S ribosomal RNAHomo sapiensEukaryaRF00001SARS-CoV-2 Nsp1 bound to the human LYAR-80S ribosome complexElectron microscopy2.61202020-08-19
198FLE|1|L45S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001Human nuclear pre-60S ribosomal subunit (State L2)Electron microscopy2.481202023-07-12
208JDM|1|E5S ribosomal RNA5S ribosomal RNAHomo sapiensEukaryaRF00001Structure of the Human cytoplasmic Ribosome with human tRNA Tyr(GalQ34) and mRNA(UAU) (rotated state)Electron microscopy2.671202023-12-06
217OW7|1|B5S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001EIF6-bound large subunit of the human ribosomeElectron microscopy2.21202022-10-05
227XNX|1|L25S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001High resolution cry-EM structure of the human 80S ribosome from SNORD127+/+ Kasumi-1 cellsElectron microscopy2.71202023-04-05
238G5Z|1|L75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001mRNA decoding in human is kinetically and structurally distinct from bacteria (GA state)Electron microscopy2.641202023-04-19
249B0H|1|L75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001In situ human Hibernating class5 80S ribosomeElectron microscopy2.591202025-03-19
259B0G|1|L75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001In situ human Hibernating class4 80S ribosomeElectron microscopy2.571202025-03-19
268FLB|1|L45S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001Human nuclear pre-60S ribosomal subunit (State K2)Electron microscopy2.551202023-07-12
278IFD|1|1B5S ribosomal RNA5S ribosomal RNAHomo sapiensEukaryaRF00001Dibekacin-added human 80S ribosomeElectron microscopy2.591202024-02-14
288FL7|1|L45S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001Human nuclear pre-60S ribosomal subunit (State J2)Electron microscopy2.551202023-07-12
298FLD|1|L45S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001Human nuclear pre-60S ribosomal subunit (State L1)Electron microscopy2.581202023-07-12
308UJB|1|L75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001In situ human 80S ribosome with EBP1 (consensus map)Electron microscopy2.671202025-04-30
319B0W|1|L75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001In situ human eEF2-A/P-P/E state 80S ribosomeElectron microscopy2.661202025-04-30
328FLF|1|L45S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001Human nuclear pre-60S ribosomal subunit (State L3)Electron microscopy2.651202023-07-12
336ZM7|1|L75S ribosomal RNA5S ribosomal RNAHomo sapiensEukaryaRF00001SARS-CoV-2 Nsp1 bound to the human CCDC124-80S-EBP1 ribosome complexElectron microscopy2.71202020-07-29
348FL6|1|L45S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001Human nuclear pre-60S ribosomal subunit (State J1)Electron microscopy2.621202023-07-12
358FLA|1|L45S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001Human nuclear pre-60S ribosomal subunit (State K1)Electron microscopy2.631202023-07-12
368IFE|1|1B5S ribosomal RNA5S ribosomal RNAHomo sapiensEukaryaRF00001Arbekacin-added human 80S ribosomeElectron microscopy2.571202024-02-14
378OJ5|1|75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF0000160S ribosomal subunit bound to the E3-UFM1 complex - state 3 (in-vitro reconstitution)Electron microscopy2.91202024-02-21
387F5S|1|L75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001human delta-METTL18 60S ribosomeElectron microscopy2.721202022-06-22
399B11|1|L75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001In situ human unrotated hibernating without CCDC124 state 80S ribosomeElectron microscopy2.771202025-04-30
406Y6X|1|L75S ribosomal RNA5S ribosomal RNAHomo sapiensEukaryaRF00001Tetracenomycin X bound to the human ribosomeElectron microscopy2.81202020-07-08
418UJC|1|L75S ribosomal RNA5S rRNA [Homo sapiens]Homo sapiensEukaryaRF00001In situ human 60S ribosomeElectron microscopy2.871202025-04-16
429AZS|1|L75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001In situ human Post-eEF1A-AT-P-E state 80S ribosomeElectron microscopy2.81202025-04-30
438FLC|1|L45S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001Human nuclear pre-60S ribosomal subunit (State K3)Electron microscopy2.761202023-07-12
448FL9|1|L45S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001Human nuclear pre-60S ribosomal subunit (State J3)Electron microscopy2.751202023-07-12
459B0F|1|L75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001In situ human Hibernating class3 80S ribosomeElectron microscopy2.781202025-03-19
468G6J|1|L75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001mRNA decoding in human is kinetically and structurally distinct from bacteria (GA state 2)Electron microscopy2.81202023-04-19
479B0J|1|L75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001In situ human unrotated hibernating with CCDC124 state 80S ribosomeElectron microscopy2.841202025-04-30
489B0O|1|L75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001In situ human Post-eEF1A-A/T-P-Z state 80S ribosomeElectron microscopy2.831202025-04-30
499B0R|1|L75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001In situ human hibernating class2 80S ribosomeElectron microscopy2.811202025-03-19
508FL3|1|L45S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001Human nuclear pre-60S ribosomal subunit (State I2)Electron microscopy2.531172023-07-12
519B0P|1|L75S ribosomal RNA5S rRNA [Homo sapiens]Homo sapiensEukaryaRF00001In situ human Hibernating class1 80S ribosomeElectron microscopy2.821202025-03-19
528G61|1|L75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001mRNA decoding in human is kinetically and structurally distinct from bacteria (AC state)Electron microscopy2.941202023-04-19
536QZP|1|L75S ribosomal RNA5S rRNA (120-MER)Homo sapiensEukaryaRF00001High-resolution cryo-EM structure of the human 80S ribosomeElectron microscopy2.91202019-04-24
548FL2|1|L45S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001Human nuclear pre-60S ribosomal subunit (State I1)Electron microscopy2.671172023-07-12
559GMO|1|B5S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001eIF6-bound pre-60S large ribosomal subunit incorporating mutant uL16Electron microscopy2.591182024-10-02
566ZME|1|L75S ribosomal RNA5S ribosomal RNAHomo sapiensEukaryaRF00001SARS-CoV-2 Nsp1 bound to the human CCDC124-80S-eERF1 ribosome complexElectron microscopy31202020-08-12
578XSY|1|L75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001Cryo-EM structure of the human 80S ribosome with Tigecycline, e-tRNA and CCDC124 (40S head Swivelled)Electron microscopy31202024-07-10
589B0N|1|L75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001In situ human Post-eEF1A-AT-P state 80S ribosomeElectron microscopy2.921202025-04-30
598UJD|1|L75S ribosomal RNA5S rRNA [Homo sapiens]Homo sapiensEukaryaRF00001In situ human 60S ribosome with eIF6Electron microscopy2.961202025-04-16
609GY4|1|75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF0000160S ribosomal subunit in complex with E3-UFM1 ligase and RQC machinery components NEMF and LTN1 (Composite map)Electron microscopy31202025-05-14
619AZN|1|L75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001In situ human A/P-P/E state 80S ribosomeElectron microscopy2.981202025-04-30
626Y2L|1|L75S ribosomal RNA5S ribosomal RNAHomo sapiensEukaryaRF00001Structure of human ribosome in POST stateElectron microscopy31202020-04-15
638UIK|1|L75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001In situ HHT and CHX treated human 80S ribosome with EBP1 (consensus map)Electron microscopy2.961202025-04-30
646XA1|1|L75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001Structure of a drug-like compound stalled human translation termination complexElectron microscopy2.81202020-10-07
658IDT|1|55S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001human nuclear pre-60S ribosomal particle - State GElectron microscopy2.81202023-08-09
667QVP|1|L75S ribosomal RNA5S ribosomal RNAHomo sapiensEukaryaRF00001Human collided disome (di-ribosome) stalled on XBP1 mRNAElectron microscopy31202022-10-12
678FL4|1|L45S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001Human nuclear pre-60S ribosomal subunit (State I3)Electron microscopy2.891172023-07-12
689KZU|1|L75S ribosomal RNA5S_ribosomal_RNAHomo sapiensEukaryaRF00001Cryo-EM structure of the HCV IRES-dependently initiated CMV-stalled 80S ribosome (non-rotated state) in complexed with eIF3Electron microscopy31202025-12-03
697QVP|1|L95S ribosomal RNA5S ribosomal RNAHomo sapiensEukaryaRF00001Human collided disome (di-ribosome) stalled on XBP1 mRNAElectron microscopy31202022-10-12
708INF|1|55S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001human nuclear pre-60S ribosomal particle - State F'Electron microscopy31202023-08-09
718IDY|1|55S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001human nuclear pre-60S ribosomal particle - State FElectron microscopy31202023-08-09
728RL2|1|L75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001Human pre-60S - State 5Electron microscopy2.841202025-01-15
738FL0|1|L45S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001Human nucleolar pre-60S ribosomal subunit (State H)Electron microscopy2.911202023-07-12
749AZC|1|L75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001In situ human 80S ribosome (Consensus map)Electron microscopy2.191202025-04-30
756Z6N|1|L75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001Cryo-EM structure of human EBP1-80S ribosomes (focus on EBP1)Electron microscopy2.91202020-07-29
766Z6L|1|L75S ribosomal RNA5S rRNAHomo sapiensEukaryaRF00001Cryo-EM structure of human CCDC124 bound to 80S ribosomesElectron microscopy31202020-07-29

Release history

Release4.16
Date2025-12-03

Parents

This classParent classesRelease idIntersectionAdded to this classOnly in parent

Children

This class Descendant classesRelease idIntersectionOnly in this classAdded to child

Instances are ordered to put similar structures near each other. Select one instance to see its 3D structure. Selecting two or more instances will show their superposition, but only chains with identical numbers of observed nucleotides will superpose well. Large structures are slow to display; this tool is not designed for that.

#SViewPDBTitleMethodResolution#NTs
18INF|1|5human nuclear pre-60S ribosomal particle - State F'ELECTRON MICROSCOPY3120
28IDY|1|5human nuclear pre-60S ribosomal particle - State FELECTRON MICROSCOPY3120
38IDT|1|5human nuclear pre-60S ribosomal particle - State GELECTRON MICROSCOPY2.8120
48FLA|1|L4Human nuclear pre-60S ribosomal subunit (State K1)ELECTRON MICROSCOPY2.63120
58FLB|1|L4Human nuclear pre-60S ribosomal subunit (State K2)ELECTRON MICROSCOPY2.55120
68FLC|1|L4Human nuclear pre-60S ribosomal subunit (State K3)ELECTRON MICROSCOPY2.76120
78FL7|1|L4Human nuclear pre-60S ribosomal subunit (State J2)ELECTRON MICROSCOPY2.55120
88FL6|1|L4Human nuclear pre-60S ribosomal subunit (State J1)ELECTRON MICROSCOPY2.62120
98FL9|1|L4Human nuclear pre-60S ribosomal subunit (State J3)ELECTRON MICROSCOPY2.75120
108FLD|1|L4Human nuclear pre-60S ribosomal subunit (State L1)ELECTRON MICROSCOPY2.58120
118FLE|1|L4Human nuclear pre-60S ribosomal subunit (State L2)ELECTRON MICROSCOPY2.48120
128FLF|1|L4Human nuclear pre-60S ribosomal subunit (State L3)ELECTRON MICROSCOPY2.65120
139GUL|1|L7Structure of FLuc-XBP1u+ stalled human 60S ribosome nascent chain complexELECTRON MICROSCOPY2.2120
148QFD|1|7UFL1 E3 ligase bound 60S ribosomeELECTRON MICROSCOPY2.2119
158JDJ|1|EStructure of the Human cytoplasmic Ribosome with human tRNA Asp(Q34) and mRNA(GAU)ELECTRON MICROSCOPY2.5120
168JDK|1|EStructure of the Human cytoplasmic Ribosome with human tRNA Asp(ManQ34) and mRNA(GAU)ELECTRON MICROSCOPY2.26120
178JDL|1|EStructure of the Human cytoplasmic Ribosome with human tRNA Tyr(GalQ34) and mRNA(UAU) (non-rotated state)ELECTRON MICROSCOPY2.42120
188JDM|1|EStructure of the Human cytoplasmic Ribosome with human tRNA Tyr(GalQ34) and mRNA(UAU) (rotated state)ELECTRON MICROSCOPY2.67120
198OJ5|1|760S ribosomal subunit bound to the E3-UFM1 complex - state 3 (in-vitro reconstitution)ELECTRON MICROSCOPY2.9120
207XNX|1|L2High resolution cry-EM structure of the human 80S ribosome from SNORD127+/+ Kasumi-1 cellsELECTRON MICROSCOPY2.7120
217XNY|1|L2High resolution cry-EM structure of the human 80S ribosome from SNORD127+/- Kasumi-1 cellsELECTRON MICROSCOPY2.5120
226ZME|1|L7SARS-CoV-2 Nsp1 bound to the human CCDC124-80S-eERF1 ribosome complexELECTRON MICROSCOPY3120
236ZM7|1|L7SARS-CoV-2 Nsp1 bound to the human CCDC124-80S-EBP1 ribosome complexELECTRON MICROSCOPY2.7120
246ZMI|1|L7SARS-CoV-2 Nsp1 bound to the human LYAR-80S ribosome complexELECTRON MICROSCOPY2.6120
256Z6N|1|L7Cryo-EM structure of human EBP1-80S ribosomes (focus on EBP1)ELECTRON MICROSCOPY2.9120
266Z6L|1|L7Cryo-EM structure of human CCDC124 bound to 80S ribosomesELECTRON MICROSCOPY3120
276XA1|1|L7Structure of a drug-like compound stalled human translation termination complexELECTRON MICROSCOPY2.8120
286QZP|1|L7High-resolution cryo-EM structure of the human 80S ribosomeELECTRON MICROSCOPY2.9120
296Y6X|1|L7Tetracenomycin X bound to the human ribosomeELECTRON MICROSCOPY2.8120
308XSX|1|L7Cryo-EM structure of the human 80S ribosome with Tigecycline, E-tRNA, SERBP1 and eEF2ELECTRON MICROSCOPY2.4120
318YOP|1|L7Cryo-EM structure of the human 80S ribosome with 4 um TigecyclineELECTRON MICROSCOPY2.2120
328YOO|1|L7Cryo-EM structure of the human 80S ribosome with 100 um TigecyclineELECTRON MICROSCOPY2120
338K2C|1|L7Cryo-EM structure of the human 80S ribosome with TigecyclineELECTRON MICROSCOPY2.4120
348XSY|1|L7Cryo-EM structure of the human 80S ribosome with Tigecycline, e-tRNA and CCDC124 (40S head Swivelled)ELECTRON MICROSCOPY3120
358QYX|1|B2Human 60S ribosomal subunitELECTRON MICROSCOPY1.78119
368A3D|1|BHuman mature large subunit of the ribosome with eIF6 and homoharringtonine boundELECTRON MICROSCOPY1.67120
377F5S|1|L7human delta-METTL18 60S ribosomeELECTRON MICROSCOPY2.72120
388QOI|1|L7Structure of the human 80S ribosome at 1.9 A resolution - the molecular role of chemical modifications and ions in RNAELECTRON MICROSCOPY1.9120
399AZC|1|L7In situ human 80S ribosome (Consensus map)ELECTRON MICROSCOPY2.19120
409AZS|1|L7In situ human Post-eEF1A-AT-P-E state 80S ribosomeELECTRON MICROSCOPY2.8120
419B11|1|L7In situ human unrotated hibernating without CCDC124 state 80S ribosomeELECTRON MICROSCOPY2.77120
429B0J|1|L7In situ human unrotated hibernating with CCDC124 state 80S ribosomeELECTRON MICROSCOPY2.84120
438UJB|1|L7In situ human 80S ribosome with EBP1 (consensus map)ELECTRON MICROSCOPY2.67120
448UJC|1|L7In situ human 60S ribosomeELECTRON MICROSCOPY2.87120
458UJD|1|L7In situ human 60S ribosome with eIF6ELECTRON MICROSCOPY2.96120
468UIK|1|L7In situ HHT and CHX treated human 80S ribosome with EBP1 (consensus map)ELECTRON MICROSCOPY2.96120
479B0N|1|L7In situ human Post-eEF1A-AT-P state 80S ribosomeELECTRON MICROSCOPY2.92120
489B0O|1|L7In situ human Post-eEF1A-A/T-P-Z state 80S ribosomeELECTRON MICROSCOPY2.83120
499B0F|1|L7In situ human Hibernating class3 80S ribosomeELECTRON MICROSCOPY2.78120
509B0H|1|L7In situ human Hibernating class5 80S ribosomeELECTRON MICROSCOPY2.59120
519B0R|1|L7In situ human hibernating class2 80S ribosomeELECTRON MICROSCOPY2.81120
529B0P|1|L7In situ human Hibernating class1 80S ribosomeELECTRON MICROSCOPY2.82120
539B0G|1|L7In situ human Hibernating class4 80S ribosomeELECTRON MICROSCOPY2.57120
549B0W|1|L7In situ human eEF2-A/P-P/E state 80S ribosomeELECTRON MICROSCOPY2.66120
559AZN|1|L7In situ human A/P-P/E state 80S ribosomeELECTRON MICROSCOPY2.98120
569GMO|1|BeIF6-bound pre-60S large ribosomal subunit incorporating mutant uL16ELECTRON MICROSCOPY2.59118
579GY4|1|760S ribosomal subunit in complex with E3-UFM1 ligase and RQC machinery components NEMF and LTN1 (Composite map)ELECTRON MICROSCOPY3120
588G61|1|L7mRNA decoding in human is kinetically and structurally distinct from bacteria (AC state)ELECTRON MICROSCOPY2.94120
598G5Z|1|L7mRNA decoding in human is kinetically and structurally distinct from bacteria (GA state)ELECTRON MICROSCOPY2.64120
608G6J|1|L7mRNA decoding in human is kinetically and structurally distinct from bacteria (GA state 2)ELECTRON MICROSCOPY2.8120
618GLP|1|L7mRNA decoding in human is kinetically and structurally distinct from bacteria (Consensus LSU focused refined structure)ELECTRON MICROSCOPY1.67120
628G5Y|1|L7mRNA decoding in human is kinetically and structurally distinct from bacteria (IC state)ELECTRON MICROSCOPY2.29120
638G60|1|L7mRNA decoding in human is kinetically and structurally distinct from bacteria (CR state)ELECTRON MICROSCOPY2.54120
649C3H|1|L9Structure of the CNOT3-bound human 80S ribosome with tRNA-ARG in the P-site.ELECTRON MICROSCOPY2120
657OW7|1|BEIF6-bound large subunit of the human ribosomeELECTRON MICROSCOPY2.2120
666Y2L|1|L7Structure of human ribosome in POST stateELECTRON MICROSCOPY3120
677QVP|1|L7Human collided disome (di-ribosome) stalled on XBP1 mRNAELECTRON MICROSCOPY3120
687QVP|1|L9Human collided disome (di-ribosome) stalled on XBP1 mRNAELECTRON MICROSCOPY3120
698IFD|1|1BDibekacin-added human 80S ribosomeELECTRON MICROSCOPY2.59120
708IFE|1|1BArbekacin-added human 80S ribosomeELECTRON MICROSCOPY2.57120
719KZU|1|L7Cryo-EM structure of the HCV IRES-dependently initiated CMV-stalled 80S ribosome (non-rotated state) in complexed with eIF3ELECTRON MICROSCOPY3120
728FL2|1|L4Human nuclear pre-60S ribosomal subunit (State I1)ELECTRON MICROSCOPY2.67117
738FL3|1|L4Human nuclear pre-60S ribosomal subunit (State I2)ELECTRON MICROSCOPY2.53117
748FL4|1|L4Human nuclear pre-60S ribosomal subunit (State I3)ELECTRON MICROSCOPY2.89117
758RL2|1|L7Human pre-60S - State 5ELECTRON MICROSCOPY2.84120
768FL0|1|L4Human nucleolar pre-60S ribosomal subunit (State H)ELECTRON MICROSCOPY2.91120

Heat map of mutual geometric discrepancy, in Angstroms per nucleotide. The ordering in the heat map is the same as in the table. The colorbar ranges from 0 to the maximum observed discrepancy. Click above the diagonal to select a range of structures, below the diagonal to select two structures.


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