Direct probing of the interaction between the signal sequence of nascent preprolactin and the signal recognition particle by specific cross-linking.
Open Access
- 1 February 1987
- journal article
- research article
- Published by Rockefeller University Press in The Journal of cell biology
- Vol. 104 (2) , 201-208
- https://doi.org/10.1083/jcb.104.2.201
Abstract
We have studied the interaction between the signal sequence of nascent preprolactin and the signal recognition particle (SRP) during the initial events in protein translocation across the endoplasmic reticulum membrane. A new method of affinity labeling was used, whereby lysine residues, carrying the photoreactive group 4-(3-trifluoromethyldiazirino) benzoic acid in their side chains, are incorporated into a protein by means of modified lysyl-tRNA, and cross-linking to the interacting component is induced by irradiation. SRP interacts through its Mr 54,000 polypeptide component with the signal sequences of nascent preprolactin chains containing about 70 residues, and with decreasing affinity with longer chains as well; it causes inhibition of elongation. Binding of SRP is reversible and requires the nascent chain to be bound to a functional ribosome. SRP cross-linked to the signal sequence still inhibits elongation but does not prevent it completely. We conclude that SRP does not block the exit site of the polypeptide chain on the ribosome. The SRP receptor of the endoplasmic reticulum membrane displaces the signal sequence from SRP and, even if SRP is cross-linked, releases elongation arrest.Keywords
This publication has 26 references indexed in Scilit:
- The signal sequence of nascent preprolactin interacts with the 54K polypeptide of the signal recognition particleNature, 1986
- Translocation of secretory proteins across the microsomal membrane occurs through an environment accessible to aqueous perturbantsCell, 1985
- Extensions of the signal hypothesis ‐ sequential insertion model versus amphipathic tunnel hypothesisFEBS Letters, 1985
- Elongation arrest is not a prerequisite for secretory protein translocation across the microsomal membrane.The Journal of cell biology, 1985
- In Vivo Function and Membrane Binding Properties Are Correlated for Escherichia coli lamB Signal PeptidesScience, 1985
- Transient involvement of signal recognition particle and its receptor in the microsomal membrane prior to protein translocationCell, 1983
- Subcellular distribution of signal recognition particle and 7SL-RNA determined with polypeptide-specific antibodies and complementary DNA probe.The Journal of cell biology, 1983
- Protein translocation across the endoplasmic reticulum. I. Detection in the microsomal membrane of a receptor for the signal recognition particle.The Journal of cell biology, 1982
- Translocation of proteins across the endoplasmic reticulum. I. Signal recognition protein (SRP) binds to in-vitro-assembled polysomes synthesizing secretory protein.The Journal of cell biology, 1981
- Cleavage of Structural Proteins during the Assembly of the Head of Bacteriophage T4Nature, 1970