Distinct Pores for Peroxisomal Import of PTS1 and PTS2 Proteins

Autor(en): Montilla-Martinez, Malayko
Beck, Sabrina
Kluemper, Jessica
Meinecke, Michael
Schliebs, Wolfgang
Wagner, Richard 
Erdmann, Ralf
Stichwörter: 3-KETOACYL-COA THIOLASE; Cell Biology; CHANNEL; MEMBRANE; OMPF PORIN; PEX18P; RECEPTOR PEX5P; SACCHAROMYCES-CEREVISIAE; TARGETING SIGNAL; UBIQUITINATION; YEAST
Erscheinungsdatum: 2015
Herausgeber: CELL PRESS
Journal: CELL REPORTS
Volumen: 13
Ausgabe: 10
Startseite: 2126
Seitenende: 2134
Zusammenfassung: 
Two peroxisomal targeting signals, PTS1 and PTS2, recognized by cytosolic receptors Pex5 and cooperating Pex7/Pex18, direct folded proteins to the peroxisomal matrix. A pore consisting of the PTS1 receptor Pex5 and the docking protein Pex14 imports PTS1 proteins. We identified a distinct PTS2-specific pore, which contains the PTS2 co-receptor Pex18 and the Pex14/Pex17-dockingcomplex as major constituents. The estimated maximal pore size of similar to 4.7 nm is large enough to allow import of folded PTS2 proteins. PTS2 cargo proteins modulate complex gating, open probability, and subconductance states of the pore. While the PTS1 channel is transiently activated by arriving receptor-cargo complexes, the reconstituted PTS2 channel is constitutively present in an open state. However, the cargo-loaded PTS2 channel is largely impermeable to solutes and ions. Our results demonstrate that import of PTS1 and PTS2 proteins does not converge at the peroxisomal membrane as previously anticipated but is performed by distinct pores.
ISSN: 22111247
DOI: 10.1016/j.celrep.2015.11.016

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