Article

  • The EMBO Journal (1999) 18, 2982 - 2990
  • doi:10.1093/emboj/18.11.2982

Competition between Sec- and TAT-dependent protein translocation in Escherichia coli

Susana Cristóbal1, Jan-Willem de Gier1, Henrik Nielsen2 and Gunnar von Heijne1

  1. Department of Biochemistry, Stockholm University, S-106 91 Stockholm, Sweden
  2. Center for Biological Sequence Analysis, Department of Biotechnology, Technical University of Denmark, DK-2800 Lyngby, Denmark

Correspondence to:

Gunnar von Heijne, E-mail: gunnar@biokemi.su.se

Received 1 February 1999; Accepted 8 April 1999; Revised 18 March 1999


Recently, a new protein translocation pathway, the twin-arginine translocation (TAT) pathway, has been identified in both bacteria and chloroplasts. To study the possible competition between the TAT- and the well-characterized Sec translocon-dependent pathways in Escherichia coli, we have fused the TorA TAT-targeting signal peptide to the Sec-dependent inner membrane protein leader peptidase (Lep). We find that the soluble, periplasmic P2 domain from Lep is re-routed by the TorA signal peptide into the TAT pathway. In contrast, the full-length TorA–Lep fusion protein is not re-routed into the TAT pathway, suggesting that Sec-targeting signals in Lep can override TAT-targeting information in the TorA signal peptide. We also show that the TorA signal peptide can be converted into a Sec-targeting signal peptide by increasing the hydrophobicity of its h-region. Thus, beyond the twin-arginine motif, the overall hydrophobicity of the signal peptide plays an important role in TAT versus Sec targeting. This is consistent with statistical data showing that TAT-targeting signal peptides in general have less hydrophobic h-regions than Sec-targeting signal peptides.

  • Keywords:

    • membrane protein,
    • protein secretion,
    • Sec pathway,
    • TAT pathway