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Structure of the integral membrane protein CAAX protease Ste24p

  • Edward E. Pryor
  • , Peter S. Horanyi
  • , Kathleen M. Clark
  • , Nadia Fedoriw
  • , Sara M. Connelly
  • , Mary Koszelak-Rosenblum
  • , Guangyu Zhu
  • , Michael G. Malkowski
  • , Michael C. Wiener
  • , Mark E. Dumont
  • Membrane Protein Structural Biology Consortium
  • University of Virginia
  • University of Rochester
  • Hauptman-Woodward Medical Research Institute, Inc.

Research output: Contribution to journalArticlepeer-review

77 Scopus citations

Abstract

Posttranslational lipidation provides critical modulation of the functions of some proteins. Isoprenoids (i.e., farnesyl or geranylgeranyl groups) are attached to cysteine residues in proteins containing C-terminal CAAX sequence motifs (where A is an aliphatic residue and X is any residue). Isoprenylation is followed by cleavage of the AAX amino acid residues and, in some cases, by additional proteolytic cuts. We determined the crystal structure of the CAAX protease Ste24p, a zinc metalloprotease catalyzing two proteolytic steps in the maturation of yeast mating pheromone a-factor. The Ste24p core structure is a ring of seven transmembrane helices enclosing a voluminous cavity containing the active site and substrate-binding groove. The cavity is accessible to the external milieu by means of gaps between splayed transmembrane helices. We hypothesize that cleavage proceeds by means of a processive mechanism of substrate insertion, translocation, and ejection.

Original languageEnglish
Pages (from-to)1600-1604
Number of pages5
JournalScience
Volume340
Issue number6127
DOIs
StatePublished - Mar 29 2013

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