#IFEStandardized nameMoleculeOrganismSourceRfamTitleMethodRes. ÅDate
16TPQ|1|V (rep)5S ribosomal RNApre-5S rRNABacillus subtilisBacteriaRF00001RNase M5 bound to 50S ribosome with precursor 5S rRNAElectron microscopy3.072020-09-30
27AQC|1|B5S ribosomal RNA5S ribosomal RNABacillus subtilis subsp. subtilis str. 168BacteriaRF00001Structure of the bacterial RQC complex (Decoding State)Electron microscopy2.992020-11-25
37AS8|1|B5S ribosomal RNA5s rRNABacillus subtilis subsp. subtilis str. 168BacteriaRF00001Bacillus subtilis ribosome quality control complex state B. Ribosomal 50S subunit with P-tRNA, RqcH, and RqcP/YabOElectron microscopy2.92020-12-09
47AQD|1|B5S ribosomal RNA5S ribosomal RNABacillus subtilis subsp. subtilis str. 168BacteriaRF00001Structure of the bacterial RQC complex (Translocating State)Electron microscopy3.12020-11-25
56TNN|1|V5S ribosomal RNA5S rRNABacillus subtilisBacteriaRF00001Mini-RNase III (Mini-III) bound to 50S ribosome with precursor 23S rRNAElectron microscopy3.072020-09-30
66HA1|1|B5S ribosomal RNA5S ribosomal RNABacillus subtilisBacteriaRF00001Cryo-EM structure of a 70S Bacillus subtilis ribosome translating the ErmD leader peptide in complex with telithromycinElectron microscopy3.12018-08-29
77OPE|1|B5S ribosomal RNA5S rRNABacillus subtilis subsp. subtilis str. 168BacteriaRF00001RqcH DR variant bound to 50S-peptidyl-tRNA-RqcP RQC complex (rigid body refinement)Electron microscopy3.22021-07-21
87AS9|1|B5S ribosomal RNA5S rRNABacillus subtilis subsp. subtilis str. 168BacteriaRF00001Bacillus subtilis ribosome-associated quality control complex state A. Ribosomal 50S subunit with peptidyl tRNA in the A/P position and RqcH.Electron microscopy3.52020-12-23
96HA8|1|B5S ribosomal RNA5S rRNABacillus subtilisBacteriaRF00001Cryo-EM structure of the ABCF protein VmlR bound to the Bacillus subtilis ribosomeElectron microscopy3.52018-08-29
106PPF|1|B5S ribosomal RNA5S rRNABacillus subtilisBacteriaRF00001Bacterial 45SRbgA ribosomal particle class BElectron microscopy3.42019-09-18
115NJT|1|V5S ribosomal RNA5S ribosomal RNABacillus subtilisBacteriaRF00001Structure of the Bacillus subtilis hibernating 100S ribosome reveals the basis for 70S dimerization.Electron microscopy3.82017-06-14
123J9W|1|BB5S ribosomal RNA5S ribosomal RNABacillus subtilisBacteriaRF00001Cryo-EM structure of the Bacillus subtilis MifM-stalled ribosome complexElectron microscopy3.92015-04-29
136HTQ|1|B5S ribosomal RNA5S ribosomal RNABacillus subtilisBacteriaRF00001Stringent response control by a bifunctional RelA enzyme in the presence and absence of the ribosomeElectron microscopy4.52019-10-23
146PPK|1|B5S ribosomal RNA5S rRNABacillus subtilisBacteriaRF00001RbgA+45SRbgA complexElectron microscopy4.42019-09-18
153J3V|1|B5S ribosomal RNAribosome RNA 5SBacillus subtilisBacteriaRF00001Atomic model of the immature 50S subunit from Bacillus subtilis (state I-a)Electron microscopy13.32013-06-12

Release history

Release3.1883.1893.1903.1913.1923.1933.1943.1953.1963.1973.1983.1993.2003.2013.2023.2033.2043.2053.2063.2073.2083.2093.2103.2113.2123.2133.2143.215
Date2021-07-212021-07-282021-08-042021-08-112021-08-182021-08-252021-09-012021-09-082021-09-152021-09-222021-09-292021-10-062021-10-132021-10-202021-10-272021-11-032021-11-102021-11-172021-11-242021-12-012021-12-082021-12-152021-12-222021-12-292022-01-052022-01-122022-01-192022-01-26

Parents

This classParent classesRelease idIntersectionAdded to this classOnly in parent
NR_20.0_97435.8NR_20.0_97435.73.188(14) 3J3V|1|B, 3J9W|1|BB, 5NJT|1|V, 6HA1|1|B, 6HA8|1|B, 6HTQ|1|B, 6PPF|1|B, 6PPK|1|B, 6TNN|1|V, 6TPQ|1|V, 7AQC|1|B, 7AQD|1|B, 7AS8|1|B, 7AS9|1|B(1) 7OPE|1|B(0)

Children

This class Descendant classesRelease idIntersectionOnly in this classAdded to child
NR_20.0_97435.8NR_20.0_97435.93.216(15) 3J3V|1|B, 3J9W|1|BB, 5NJT|1|V, 6HA1|1|B, 6HA8|1|B, 6HTQ|1|B, 6PPF|1|B, 6PPK|1|B, 6TNN|1|V, 6TPQ|1|V, 7AQC|1|B, 7AQD|1|B, 7AS8|1|B, 7AS9|1|B, 7OPE|1|B(0) (1) 7O5B|1|Y

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.

#SViewPDBTitleMethodResolutionLength
16PPK|1|BRbgA+45SRbgA complexELECTRON MICROSCOPY4.4112
26PPF|1|BBacterial 45SRbgA ribosomal particle class BELECTRON MICROSCOPY3.4112
36TNN|1|VMini-RNase III (Mini-III) bound to 50S ribosome with precursor 23S rRNAELECTRON MICROSCOPY3.07116
46TPQ|1|VRNase M5 bound to 50S ribosome with precursor 5S rRNAELECTRON MICROSCOPY3.07123
57AQD|1|BStructure of the bacterial RQC complex (Translocating State)ELECTRON MICROSCOPY3.1112
67AQC|1|BStructure of the bacterial RQC complex (Decoding State)ELECTRON MICROSCOPY2.99112
73J9W|1|BBCryo-EM structure of the Bacillus subtilis MifM-stalled ribosome complexELECTRON MICROSCOPY3.9112
85NJT|1|VStructure of the Bacillus subtilis hibernating 100S ribosome reveals the basis for 70S dimerization.ELECTRON MICROSCOPY3.8112
96HTQ|1|BStringent response control by a bifunctional RelA enzyme in the presence and absence of the ribosomeELECTRON MICROSCOPY4.5112
106HA1|1|BCryo-EM structure of a 70S Bacillus subtilis ribosome translating the ErmD leader peptide in complex with telithromycinELECTRON MICROSCOPY3.1112
116HA8|1|BCryo-EM structure of the ABCF protein VmlR bound to the Bacillus subtilis ribosomeELECTRON MICROSCOPY3.5112
127OPE|1|BRqcH DR variant bound to 50S-peptidyl-tRNA-RqcP RQC complex (rigid body refinement)ELECTRON MICROSCOPY3.2112
137AS8|1|BBacillus subtilis ribosome quality control complex state B. Ribosomal 50S subunit with P-tRNA, RqcH, and RqcP/YabOELECTRON MICROSCOPY2.9112
147AS9|1|BBacillus subtilis ribosome-associated quality control complex state A. Ribosomal 50S subunit with peptidyl tRNA in the A/P position and RqcH.ELECTRON MICROSCOPY3.5112
153J3V|1|BAtomic model of the immature 50S subunit from Bacillus subtilis (state I-a)ELECTRON MICROSCOPY13.3119

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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