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7BL4

in vitro reconstituted 50S-ObgE-GMPPNP-RsfS particle

Summary for 7BL4
Entry DOI10.2210/pdb7bl4/pdb
EMDB information12217
Descriptor50S ribosomal protein L36, 50S ribosomal protein L18, 50S ribosomal protein L20, ... (37 entities in total)
Functional Keywordsribosome, pre-50s, ribosome biogenesis, ribosome assembly
Biological sourceEscherichia coli (strain K12)
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Total number of polymer chains33
Total formula weight1405977.39
Authors
Hilal, T.,Nikolay, R.,Spahn, C.M.T. (deposition date: 2021-01-18, release date: 2021-05-12, Last modification date: 2024-05-01)
Primary citationNikolay, R.,Hilal, T.,Schmidt, S.,Qin, B.,Schwefel, D.,Vieira-Vieira, C.H.,Mielke, T.,Burger, J.,Loerke, J.,Amikura, K.,Flugel, T.,Ueda, T.,Selbach, M.,Deuerling, E.,Spahn, C.M.T.
Snapshots of native pre-50S ribosomes reveal a biogenesis factor network and evolutionary specialization.
Mol.Cell, 81:1200-1215.e9, 2021
Cited by
PubMed Abstract: Ribosome biogenesis is a fundamental multi-step cellular process that culminates in the formation of ribosomal subunits, whose production and modification are regulated by numerous biogenesis factors. In this study, we analyze physiologic prokaryotic ribosome biogenesis by isolating bona fide pre-50S subunits from an Escherichia coli strain with the biogenesis factor ObgE, affinity tagged at its native gene locus. Our integrative structural approach reveals a network of interacting biogenesis factors consisting of YjgA, RluD, RsfS, and ObgE on the immature pre-50S subunit. In addition, our study provides mechanistic insight into how the GTPase ObgE, in concert with other biogenesis factors, facilitates the maturation of the 50S functional core and reveals both conserved and divergent evolutionary features of ribosome biogenesis between prokaryotes and eukaryotes.
PubMed: 33639093
DOI: 10.1016/j.molcel.2021.02.006
PDB entries with the same primary citation
Experimental method
ELECTRON MICROSCOPY (2.4 Å)
Structure validation

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