High reactive oxygen species levels are detected at the end of the chronological life span of translocant yeast cells

被引:0
|
作者
Jason Sims
Carlo V. Bruschi
Chloé Bertin
Nicole West
Michael Breitenbach
Sabrina Schroeder
Tobias Eisenberg
Mark Rinnerthaler
Peter Raspor
Valentina Tosato
机构
[1] ICGEB,Yeast Molecular Genetics Group
[2] Area Science Park,Cellular and Molecular Life Sciences
[3] University of Rennes,Genetics Division, Department of Cell Biology
[4] University of Salzburg,Institute of Molecular Biosciences
[5] University of Graz,Institute of Food, Nutrition and Health
[6] University of Primorska,Department of Chromosome Biology
[7] Max Perutz Laboratories,undefined
[8] Central European Initiative,undefined
来源
Molecular Genetics and Genomics | 2016年 / 291卷
关键词
Ageing; Chromosomal translocation; Life span; Oxidative stress; Yeast;
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学科分类号
摘要
Chromosome translocation is a major genomic event for a cell, affecting almost every of its life aspects ranging from metabolism, organelle maintenance and homeostasis to gene maintenance and expression. By using the bridge-induced translocation system, we defined the effects of induced chromosome translocation on the chronological life span (CLS) of yeast with particular interest to the oxidative stress condition. The results demonstrate that every translocant strain has a different CLS, but all have a high increase in reactive oxygen species and in lipid peroxides levels at the end of the life span. This could be due to the very unique and strong deregulation of the oxidative stress network. Furthermore, the loss of the translocated chromosome occurs at the end of the life span and is locus dependent. Additionally, the RDH54 gene may play a role in the correct segregation of the translocant chromosome, since in its absence there is an increase in loss of the bridge-induced translocated chromosome.
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页码:423 / 435
页数:12
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