Open access · OA
via OpenAlex
The shortened replicative life span of prohibitin mutants of yeast appears to be due to defective mitochondrial segregation in old mother cells
Peter W. Piper, Gary W. Jones, David Bringloe, Nicholas Harris, Morag MacLean, Mehdi Mollapour
Aging Cell · 2002 · ▲ 74 citations
Abstract
Prohibitin proteins have been implicated in cell proliferation, aging, respiratory chain assembly and the maintenance of mitochondrial integrity. The prohibitins of Saccharomyces cerevisiae, Phb1 and Phb2, have strong sequence similarity with their human counterparts prohibitin and BAP37, making yeast a good model organism in which to study prohibitin function. Both yeast and mammalian prohibitins form high-molecular-weight complexes (Phb1/2 or prohibitin/BAP37, respectively) in the inner mitochondrial membrane. Expression of prohibitins declines with senescence(definition), both in mammalian fibroblasts and in yeast. With a total loss of prohibitins, the replicative (budding) life span of yeast is reduced, whilst the chronological life span (the survival of stationary cells over time) is relatively unaffected. This effect of prohibitin loss on the replicative life span is still apparent in the absence of an assembled respiratory chain. It also does not reflect the production of extrachromosomal ribosomal DNA circles (ERCs), a genetic instability thought to be a major cause of replicative senescence in yeast. Examination of cells containing a mitochondrially targeted green fluorescent protein indicates this shortened life span is a reflection of defective mitochondrial segregation from the mother to the daughter in the old mother cells of phb mutant strains. Old mother phb mutant cells display highly aberrant mitochondrial morphology and, frequently, a delayed segregation of mitochondria to the daughter. They often arrest growth with their last bud strongly attached and with the mitochondria adjacent to the septum between the mother and the daughter cell.
◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:
Provenance
- Source
- OpenAlex
- DOI
- 10.1046/j.1474-9728.2002.00018.x
- Canonical
- link ↗
- Fetched
- 2026-07-09 MST
Cite this
APA
Piper, P.W., Jones, G.W., Bringloe, D., Harris, N., MacLean, M., & Mollapour, M. (2002). The shortened replicative life span of prohibitin mutants of yeast appears to be due to defective mitochondrial segregation in old mother cells. <em>Aging Cell</em>. https://doi.org/10.1046/j.1474-9728.2002.00018.x
Vancouver
Piper PW, Jones GW, Bringloe D, Harris N, MacLean M, Mollapour M. The shortened replicative life span of prohibitin mutants of yeast appears to be due to defective mitochondrial segregation in old mother cells. Aging Cell. 2002. doi:10.1046/j.1474-9728.2002.00018.x.
BibTeX
@article{peter2002Thesho,
title = {The shortened replicative life span of prohibitin mutants of yeast appears to be due to defective mitochondrial segregation in old mother cells},
author = {Peter W. Piper and Gary W. Jones and David Bringloe and Nicholas Harris and Morag MacLean and Mehdi Mollapour},
journal = {Aging Cell},
year = {2002},
doi = {10.1046/j.1474-9728.2002.00018.x},
}
Research neighborhood
References, citing works, and semantically nearest findings. Click a node to open it.
Related findings
Acta Biochimica Polonica 2003
Open access · CC-BY
Prohibitins and Ras2 protein cooperate in the maintenance of mitochondrial function during yeast aging.
FEMS Yeast Research 2004
Open access · OA
Yeast replicative life span – the mitochondrial connection
Experimental Gerontology 2011
Preprint · OA
Identification of respiratory chain gene mutations that shorten replicative life span in yeast
PLoS Biology 2015
Open access · CC-BY
Calorie Restriction-Mediated Replicative Lifespan Extension in Yeast Is Non-Cell Autonomous
Molecular and Cellular Biology 2002
Preprint · OA
Mutations in DNA Replication Genes Reduce Yeast Life Span
Aging 2009
Open access · CC-BY