Summary information and primary citation
- PDB-id
-
1ry1;
DSSR-derived features in text and
JSON formats; DNAproDB
- Class
- translation
- Method
- cryo-EM (12.0 Å)
- Summary
- Structure of the signal recognition particle
interacting with the elongation-arrested ribosome
- Reference
-
Halic M, Becker T, Pool MR, Spahn CM, Grassucci RA, Frank
J, Beckmann R (2004): "Structure
of the signal recognition particle interacting with the
elongation-arrested ribosome." Nature,
427, 808-814. doi: 10.1038/nature02342.
- Abstract
- Cotranslational translocation of proteins across or
into membranes is a vital process in all kingdoms of life.
It requires that the translating ribosome be targeted to
the membrane by the signal recognition particle (SRP), an
evolutionarily conserved ribonucleoprotein particle. SRP
recognizes signal sequences of nascent protein chains
emerging from the ribosome. Subsequent binding of SRP leads
to a pause in peptide elongation and to the ribosome
docking to the membrane-bound SRP receptor. Here we present
the structure of a targeting complex consisting of
mammalian SRP bound to an active 80S ribosome carrying a
signal sequence. This structure, solved to 12 A by
cryo-electron microscopy, enables us to generate a
molecular model of SRP in its functional conformation. The
model shows how the S domain of SRP contacts the large
ribosomal subunit at the nascent chain exit site to bind
the signal sequence, and that the Alu domain reaches into
the elongation-factor-binding site of the ribosome,
explaining its elongation arrest activity.