RRC ID 33098
著者 Núñez A, Dulude D, Jbel M, Rokeach LA.
タイトル Calnexin is essential for survival under nitrogen starvation and stationary phase in Schizosaccharomyces pombe.
ジャーナル PLoS One
Abstract Cell fate is determined by the balance of conserved molecular mechanisms regulating death (apoptosis) and survival (autophagy). Autophagy is a process by which cells recycle their organelles and macromolecules through degradation within the vacuole in yeast and plants, and lysosome in metazoa. In the yeast Schizosaccharomyces pombe, autophagy is strongly induced under nitrogen starvation and in aging cells. Previously, we demonstrated that calnexin (Cnx1p), a highly conserved transmembrane chaperone of the endoplasmic reticulum (ER), regulates apoptosis under ER stress or inositol starvation. Moreover, we showed that in stationary phase, Cnx1p is cleaved into two moieties, L_Cnx1p and S_Cnx1p. Here, we show that the processing of Cnx1p is regulated by autophagy, induced by nitrogen starvation or cell aging. The cleavage of Cnx1p involves two vacuolar proteases: Isp6, which is essential for autophagy, and its paralogue Psp3. Blocking autophagy through the knockout of autophagy-related genes (atg) results in inhibition of both, the cleavage and the trafficking of Cnx1p from the ER to the vacuole. We demonstrate that Cnx1p is required for cell survival under nitrogen-starvation and in chronological aging cultures. The death of the mini_cnx1 mutant (overlapping S_cnx1p) cells is accompanied by accumulation of high levels of reactive-oxygen species (ROS), a slowdown in endocytosis and severe cell-wall defects. Moreover, mutant cells expressing only S_Cnx1p showed cell wall defects. Co-expressing mutant overlapping the L_Cnx1p and S_Cnx1p cleavage products reverses the death, ROS phenotype and cell wall defect to wild-type levels. As it is involved in both apoptosis and autophagy, Cnx1p could be a nexus for the crosstalk between these pro-death and pro-survival mechanisms. Ours, and observations in mammalian systems, suggest that the multiple roles of calnexin depend on its sub-cellular localization and on its cleavage. The use of S. pombe should assist in further shedding light on the multiple roles of calnexin.
巻・号 10(3)
ページ e0121059
公開日 2015-1-1
DOI 10.1371/journal.pone.0121059
PII PONE-D-14-32563
PMID 25803873
PMC PMC4372366
MeSH Autophagy / physiology* Calnexin / genetics Calnexin / metabolism* Cell Wall / pathology Genetic Vectors / genetics Immunoblotting Membrane Proteins / metabolism Microscopy, Fluorescence Nitrogen / deficiency* Oligonucleotides / genetics Reactive Oxygen Species / metabolism Schizosaccharomyces / physiology* Schizosaccharomyces pombe Proteins / metabolism
IF 2.74
引用数 5
WOS 分野 BIOCHEMISTRY & MOLECULAR BIOLOGY
リソース情報
酵母 FY13331 FY7119