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Till A, et al.  (2012) Pexophagy: the selective degradation of peroxisomes. Int J Cell Biol 2012():512721

Abstract: Peroxisomes are single-membrane-bounded organelles present in the majority of eukaryotic cells. Despite the existence of great diversity among different species, cell types, and under different environmental conditions, peroxisomes contain enzymes involved in beta-oxidation of fatty acids and the generation, as well as detoxification, of hydrogen peroxide. The exigency of all eukaryotic cells to quickly adapt to different environmental factors requires the ability to precisely and efficiently control peroxisome number and functionality. Peroxisome homeostasis is achieved by the counterbalance between organelle biogenesis and degradation. The selective degradation of superfluous or damaged peroxisomes is facilitated by several tightly regulated pathways. The most prominent peroxisome degradation system uses components of the general autophagy core machinery and is therefore referred to as "pexophagy." In this paper we focus on recent developments in pexophagy and provide an overview of current knowledge and future challenges in the field. We compare different modes of pexophagy and mention shared and distinct features of pexophagy in yeast model systems, mammalian cells, and other organisms.

Status: Published Type: Journal Article PubMed ID: 22536249

Topics addressed in this paper

Number of different genes curated to this paper: 32

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Topics Genes linked to topics (#1 - 10 )
ATG1 ATG11 ATG16 ATG17 ATG18 ATG2 ATG21 ATG26 ATG3 ATG4
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Topics Genes linked to topics (#11 - 20 )
ATG7 ATG8 ATG9 GCN1 GCN2 GCN3 GCN4 HOG1 PEP4 PEX14
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Topics Genes linked to topics (#21 - 30 )
PEX3 PFK1 PIK1 SAR1 SLT2 SNX4 TUP1 VAC8 VAM7 VPS15
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  • To go to the Locus page for a gene, click on the gene name.

Topics Genes linked to topics (#31 - 32 )
VPS34 YPT7
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