TY - JOUR
T1 - Peroxisomal Proteostasis Involves a Lon Family Protein That Functions as Protease and Chaperone
AU - Bartoszewska, Magdalena
AU - Williams, Chris
AU - Kikhney, Alexey
AU - Opalinski, Lukasz
AU - van Roermund, Carlo W. T.
AU - de Boer, Rinse
AU - Veenhuis, Marten
AU - van der Klei, Ida J.
PY - 2012/8/10
Y1 - 2012/8/10
N2 - Proteins are subject to continuous quality control for optimal proteostasis. The knowledge of peroxisome quality control systems is still in its infancy. Here we show that peroxisomes contain a member of the Lon family of proteases (Pln). We show that Pln is a heptameric protein and acts as an ATP-fueled protease and chaperone. Hence, Pln is the first chaperone identified in fungal peroxisomes. In cells of a PLN deletion strain peroxisomes contain protein aggregates, a major component of which is catalase-peroxidase. We show that this enzyme is sensitive to oxidative damage. The oxidatively damaged, but not the native protein, is a substrate of the Pln protease. Cells of the pln strain contain enhanced levels of catalase-peroxidase protein but reduced catalase-peroxidase enzyme activities. Together with the observation that Pln has chaperone activity in vitro, our data suggest that catalase-peroxidase aggregates accumulate in peroxisomes of pln cells due to the combined absence of Pln protease and chaperone activities.
AB - Proteins are subject to continuous quality control for optimal proteostasis. The knowledge of peroxisome quality control systems is still in its infancy. Here we show that peroxisomes contain a member of the Lon family of proteases (Pln). We show that Pln is a heptameric protein and acts as an ATP-fueled protease and chaperone. Hence, Pln is the first chaperone identified in fungal peroxisomes. In cells of a PLN deletion strain peroxisomes contain protein aggregates, a major component of which is catalase-peroxidase. We show that this enzyme is sensitive to oxidative damage. The oxidatively damaged, but not the native protein, is a substrate of the Pln protease. Cells of the pln strain contain enhanced levels of catalase-peroxidase protein but reduced catalase-peroxidase enzyme activities. Together with the observation that Pln has chaperone activity in vitro, our data suggest that catalase-peroxidase aggregates accumulate in peroxisomes of pln cells due to the combined absence of Pln protease and chaperone activities.
KW - RAY SOLUTION SCATTERING
KW - SMALL-ANGLE SCATTERING
KW - PENICILLIUM-CHRYSOGENUM
KW - HANSENULA-POLYMORPHA
KW - SACCHAROMYCES-CEREVISIAE
KW - MOLECULAR CHAPERONES
KW - CITRATE SYNTHASE
KW - HIGH-RESOLUTION
KW - MATRIX PROTEIN
KW - IN-VITRO
U2 - 10.1074/jbc.M112.381566
DO - 10.1074/jbc.M112.381566
M3 - Article
SN - 0021-9258
VL - 287
SP - 27380
EP - 27395
JO - The Journal of Biological Chemistry
JF - The Journal of Biological Chemistry
IS - 33
ER -