Premium
A Subtle Interplay Between Three Pex11 Proteins Shapes De Novo Formation and Fission of Peroxisomes
Author(s) -
Huber Anja,
Koch Johannes,
Kragler Friedrich,
Brocard Cécile,
Hartig Andreas
Publication year - 2012
Publication title -
traffic
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.677
H-Index - 130
eISSN - 1600-0854
pISSN - 1398-9219
DOI - 10.1111/j.1600-0854.2011.01290.x
Subject(s) - peroxisome , biology , endoplasmic reticulum , microbiology and biotechnology , organelle , biogenesis , organelle biogenesis , membrane protein , saccharomyces cerevisiae , function (biology) , biochemistry , yeast , gene , membrane
The organization of eukaryotic cells into membrane‐bound compartments must be faithfully sustained for survival of the cell. A subtle equilibrium exists between the degradation and the proliferation of organelles. Commonly, proliferation is initiated by a membrane remodeling process. Here, we dissect the function of proteins driving organelle proliferation in the particular case of peroxisomes. These organelles are formed either through a growth and division process from existing peroxisomes or de novo from the endoplasmic reticulum (ER). Among the proteins involved in the biogenesis of peroxisomes, peroxins, members of the Pex11 protein family participate in peroxisomal membrane alterations. In the yeast Saccharomyces cerevisiae , the Pex11 family consists of three proteins, Pex11p, Pex25p and Pex27p. Here we demonstrate that yeast mutants lacking peroxisomes require the presence of Pex25p to regenerate this organelle de novo . We also provide evidence showing that Pex27p inhibits peroxisomal function and illustrate that Pex25p initiates elongation of the peroxisomal membrane. Our data establish that although structurally conserved each of the three Pex11 protein family members plays a distinct role. While Sc Pex11p promotes the proliferation of peroxisomes already present in the cell, Sc Pex25p initiates remodeling at the peroxisomal membrane and Sc Pex27p acts to counter this activity. In addition, we reveal that Sc Pex25p acts in concert with Pex3p in the initiation of de novo peroxisome biogenesis from the ER.