Abstract
Protein biosynthesis on the ribosome requires repeated cycles of ratcheting, which couples rotation of the two ribosomal subunits with respect to each other, and swiveling of the head domain of the small subunit. However, the molecular basis for how the two ribosomal subunits rearrange contacts with each other during ratcheting while remaining stably associated is not known. Here, we describe x-ray crystal structures of the intact Escherichia coli ribosome, either in the apo-form (3.5 angstrom resolution) or with one (4.0 angstrom resolution) or two (4.0 angstrom resolution) anticodon stem-loop tRNA mimics bound, that reveal intermediate states of intersubunit rotation. In the structures, the interface between the small and large ribosomal subunits rearranges in discrete steps along the ratcheting pathway. Positioning of the head domain of the small subunit is controlled by interactions with the large subunit and with the tRNA bound in the peptidyl-tRNA site. The intermediates observed here provide insight into how tRNAs move into the hybrid state of binding that precedes the final steps of mRNA and tRNA translocation.
MeSH Terms
Anticodon/chemistry,metabolism
Crystallography, X-Ray
Escherichia coli/chemistry,metabolism,ultrastructure
Escherichia coli Proteins/biosynthesis,chemistry,metabolism
Nucleic Acid Conformation
Protein Biosynthesis
Protein Conformation
RNA, Bacterial/chemistry,metabolism
RNA, Messenger/chemistry,metabolism
RNA, Transfer, Met/chemistry,metabolism
RNA, Transfer, Phe/chemistry,metabolism
Ribosomal Proteins/chemistry,metabolism
Ribosome Subunits, Large, Bacterial/chemistry,metabolism,ultrastructure
Ribosome Subunits, Small, Bacterial/chemistry,metabolism,ultrastructure
Ribosomes/chemistry,metabolism,ultrastructure
Chemicals
Anticodon
Escherichia coli Proteins
RNA, Bacterial
RNA, Messenger
RNA, Transfer, Met
RNA, Transfer, Phe
Ribosomal Proteins
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Zhang Wen
Department of Molecular and Cell Biology, University of California at Berkeley, Berkeley, CA 94720, USA.
Dunkle Jack A
Cate Jamie H D
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