30S Ribosomal proteins associated with the 3′‐terminus of 16S RNA

@article{Czernilofsky197530SRP,
  title={30S Ribosomal proteins associated with the 3′‐terminus of 16S RNA},
  author={A. P. Czernilofsky and Charles G. Kurland and Georg Stöffler},
  journal={FEBS Letters},
  year={1975},
  volume={58}
}
Visualization of protein S1 within the 30S ribosomal subunit and its interaction with messenger RNA
TLDR
The S1 protein mass is identified in the cryo-electron microscopic map of the Escherichia coli ribosome by comparing the map with a recent x-ray crystallographic structure of the 30S subunit, which lacks S1.
Localization of the 3′ End of 16S rRNA in Escherichia coli 30S ribosomal subunits by Immuno electron microscopy
TLDR
The location of the 3′ end of 16S rRNA in E. coli 30S ribosomal subunits has been determined by immuno electron microscopy and provides information as to the topography of the binding domain of natural mRNA on 30S subunits.
Altered topography of 16S RNA in the inactive form of Escherichia coli 30S ribosomal subunits.
TLDR
A reversible increase in accessibility of specific 16S RNA sites parallels the reversible loss of protein synthesis activity of 30S subunits.
Specific binding site of E. coli initiation factor 3 (IF3) at a 3′-terminal region of MS2 RNA
TLDR
Whether the binding of IF3 to MS2 RNA (which is very closely related to R17 RNA) is sequence specific is investigated and it is reported here that IF3 binds specifically and reproducibly to MS 2 RNA at a sequence in the untranslated region near to the 3′-terminus of the molecule.
The structure of ribosomal RNA and its organization relative to ribosomal protein.
Characterization of 16 S rRNA 3 ’ Termini Using RNA-Seq Data
TLDR
Results reveal considerable heterogeneity in the termini of 3’ TAILs among closely related species and that sites downstream of the canonical CCUCC aSD motif are more important to initiation than previously believed.
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