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1.
Plant Mol Biol ; 77(1-2): 1-15, 2011 Sep.
Article in English | MEDLINE | ID: mdl-21553312

ABSTRACT

Mutations in peroxisome biogenesis proteins (peroxins) can lead to developmental deficiencies in various eukaryotes. PEX14 and PEX13 are peroxins involved in docking cargo-receptor complexes at the peroxisomal membrane, thus aiding in the transport of the cargo into the peroxisomal matrix. Genetic screens have revealed numerous Arabidopsis thaliana peroxins acting in peroxisomal matrix protein import; the viable alleles isolated through these screens are generally partial loss-of-function alleles, whereas null mutations that disrupt delivery of matrix proteins to peroxisomes can confer embryonic lethality. In this study, we used forward and reverse genetics in Arabidopsis to isolate four pex14 alleles. We found that all four alleles conferred reduced PEX14 mRNA levels and displayed physiological and molecular defects suggesting reduced but not abolished peroxisomal matrix protein import. The least severe pex14 allele, pex14-3, accumulated low levels of a C-terminally truncated PEX14 product that retained partial function. Surprisingly, even the severe pex14-2 allele, which lacked detectable PEX14 mRNA and PEX14 protein, was viable, fertile, and displayed residual peroxisome matrix protein import. As pex14 plants matured, import improved. Together, our data indicate that PEX14 facilitates, but is not essential for peroxisomal matrix protein import in plants.


Subject(s)
Arabidopsis Proteins/physiology , Arabidopsis/metabolism , Membrane Proteins/physiology , Peroxisomes/metabolism , Repressor Proteins/physiology , Alleles , Arabidopsis/genetics , Arabidopsis Proteins/genetics , Arabidopsis Proteins/metabolism , Membrane Proteins/genetics , Membrane Proteins/metabolism , Mutation , Peroxisomes/genetics , Protein Transport/genetics , RNA, Messenger/metabolism , Repressor Proteins/genetics , Repressor Proteins/metabolism
2.
Mol Biol Cell ; 21(7): 1263-71, 2010 Apr 01.
Article in English | MEDLINE | ID: mdl-20130089

ABSTRACT

Peroxisomes compartmentalize certain metabolic reactions critical to plant and animal development. The import of proteins from the cytosol into the organelle matrix depends on more than a dozen peroxin (PEX) proteins, with PEX5 and PEX7 serving as receptors that shuttle proteins bearing one of two peroxisome-targeting signals (PTSs) into the organelle. PEX5 is the PTS1 receptor; PEX7 is the PTS2 receptor. In plants and mammals, PEX7 depends on PEX5 binding to deliver PTS2 cargo into the peroxisome. In this study, we characterized a pex7 missense mutation, pex7-2, that disrupts both PEX7 cargo binding and PEX7-PEX5 interactions in yeast, as well as PEX7 protein accumulation in plants. We examined localization of peroxisomally targeted green fluorescent protein derivatives in light-grown pex7 mutants and observed not only the expected defects in PTS2 protein import but also defects in PTS1 import. These PTS1 import defects were accompanied by reduced PEX5 accumulation in light-grown pex7 seedlings. Our data suggest that PEX5 and PTS1 import depend on the PTS2 receptor PEX7 in Arabidopsis and that the environment may influence this dependence. These data advance our understanding of the biogenesis of these essential organelles and provide a possible rationale for the retention of the PTS2 pathway in some organisms.


Subject(s)
Arabidopsis/metabolism , Gene Expression Regulation, Plant , Peroxisomes/metabolism , Receptors, Cytoplasmic and Nuclear/metabolism , Arabidopsis Proteins/metabolism , Cloning, Molecular , Green Fluorescent Proteins/metabolism , Light , Models, Biological , Mutation, Missense , Peroxisomal Targeting Signal 2 Receptor , Peroxisome-Targeting Signal 1 Receptor , Plant Physiological Phenomena , Two-Hybrid System Techniques
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