Journal of Biological Chemistry
Volume 274, Issue 47, 19 November 1999, Pages 33227-33234
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MEMBRANES AND BIOENERGETICS
A Site-specific, Membrane-dependent Cleavage Event Defines the Membrane Binding Domain of FtsY*

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Targeting of many polytopic proteins to the inner membrane of prokaryotes occurs via an essential signal recognition particle-like pathway. Unlike the general secretory pathway, the proteins involved in this pathway and their activities appear in many respects to mirror closely those of their eukaryotic homologues. However, the Escherichia coli signal recognition particle receptor, FtsY, differs significantly at the amino terminus from the eukaryote homologue α-subunit of the signal recognition particle receptor. In addition, there is no prokaryote homologue of the transmembrane β-subunit of the receptor. Therefore, FtsY must assemble on the membrane in a unique manner. Using assays designed to accurately discriminate membrane-bound proteins from aggregated material, we found that in contrast to a previous report, only amino acids 1–284 of FtsY are necessary and sufficient for membrane assembly. These amino acids together constitute a bona fidemembrane binding domain that includes both the regions originally designated A and N based on sequence comparisons. Furthermore, we found that a membrane-bound factor mediates specific cleavage of some membrane-bound FtsY molecules between the N and G regions previously believed to be functionally linked to generate a novel membrane-bound isoform composed of only the AN domain.

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*

This work was supported by Grant MT-10490 and a scientist award from the Medical Research Council, Canada (to D. W. A.) and by a studentship from the National Sciences and Engineering Research Council of Canada (to J. S. M.).The costs of publication of this article were defrayed in part by the payment of page charges. The article must therefore be hereby marked “advertisement” in accordance with 18 U.S.C. Section 1734 solely to indicate this fact.