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Redox-sensitive homodimerization of Pex11p: a proposed mechanism to regulate peroxisomal division
- Source :
- The Journal of Cell Biology
- Publication Year :
- 1996
- Publisher :
- The Rockefeller University Press, 1996.
-
Abstract
- Pex11p (formerly Pmp27) has been implicated in peroxisomal proliferation (Erdmann, R., and G. Blobel. 1995. J. Cell Biol. 128; 509-523; Marshall, P.A., Y.I. Krimkevich, R.H. Lark, J.M. Dyer, M. Veenhuis, and J.M. Goodman, 1995. J. Cell Biol. 129; 345-355). In its absence, peroxisomes in Saccharomyces cerevisiae fail to proliferate in response to oleic acid; instead, one or two large peroxisomes are formed. Conversely, overproduction of Pex11p causes an increase in peroxisomal number. In this report, we confirm the function of Pex11p in organelle proliferation by demonstrating that this protein can cause fragmentation in vivo of large peroxisomes into smaller organelles. Pex11p is on the inner surface of the peroxisomal membrane. It can form homodimers, and this species is more abundant in mature peroxisomes than in proliferating organelles. Removing one of the three cysteines in the protein inhibits homodimerization. This cysteine 3-->alanine mutation leads to an increase in number and a decrease in peroxisomal density, compared with the wild-type protein, in response to oleic acid. We propose that the active species is the "monomeric" form, and that the increasing oxidative metabolism within maturing peroxisomes causes dimer formation and inhibition of further organelle division.
- Subjects :
- Saccharomyces cerevisiae Proteins
Saccharomyces cerevisiae
Molecular Sequence Data
Succinimides
medicine.disease_cause
Microbodies
Fungal Proteins
Peroxins
Organelle
medicine
Point Mutation
Cysteine
Fragmentation (cell biology)
Peroxisomal targeting signal
Alanine
Mutation
biology
Base Sequence
Galactose
Membrane Proteins
Cell Biology
Articles
Intracellular Membranes
Peroxisome
biology.organism_classification
Cell biology
Molecular Weight
Cross-Linking Reagents
Biochemistry
Dimerization
Oxidation-Reduction
Cell Division
Oleic Acid
Subjects
Details
- Language :
- English
- ISSN :
- 15408140 and 00219525
- Volume :
- 135
- Issue :
- 1
- Database :
- OpenAIRE
- Journal :
- The Journal of Cell Biology
- Accession number :
- edsair.doi.dedup.....ea65be87a6c175192b3dd52d1c6342f0