>
Fa   |   Ar   |   En
   A microarray-based genetic screen for yeast chronological aging factors  
   
نویسنده matecic m. ,smith jr. d.l. ,pan x. ,maqani n. ,bekiranov s. ,boeke j.d. ,smith j.s.
منبع plos genetics - 2010 - دوره : 6 - شماره : 4
چکیده    Model organisms have played an important role in the elucidation of multiple genes and cellular processes that regulate aging. in this study we utilized the budding yeast,saccharomyces cerevisiae,in a large-scale screen for genes that function in the regulation of chronological lifespan,which is defined by the number of days that non-dividing cells remain viable. a pooled collection of viable haploid gene deletion mutants,each tagged with unique identifying dna ''bar-code'' sequences was chronologically aged in liquid culture. viable mutants in the aging population were selected at several time points and then detected using a microarray dna hybridization technique that quantifies abundance of the barcode tags. multiple short- and long-lived mutants were identified using this approach. among the confirmed short-lived mutants were those defective for autophagy,indicating a key requirement for the recycling of cellular organelles in longevity. defects in autophagy also prevented lifespan extension induced by limitation of amino acids in the growth media. among the confirmed long-lived mutants were those defective in the highly conserved de novo purine biosynthesis pathway (the ade genes),which ultimately produces imp and amp. blocking this pathway extended lifespan to the same degree as calorie (glucose) restriction. a recently discovered cell-extrinsic mechanism of chronological aging involving acetic acid secretion and toxicity was suppressed in a long-lived ade4d mutant and exacerbated by a short-lived atg16d autophagy mutant. the identification of multiple novel effectors of yeast chronological lifespan will greatly aid in the elucidation of mechanisms that cells and organisms utilize in slowing down the aging process. © 2010 matecic et al.
آدرس department of biochemistry and molecular genetics,university of virginia health system,school of medicine,charlottesville,va, United States, department of biochemistry and molecular genetics,university of virginia health system,school of medicine,charlottesville,va, United States, department of molecular biology and genetics,high throughput biology center,johns hopkins university school of medicine,baltimore,md, United States, department of biochemistry and molecular genetics,university of virginia health system,school of medicine,charlottesville,va, United States, department of biochemistry and molecular genetics,university of virginia health system,school of medicine,charlottesville,va, United States, department of molecular biology and genetics,high throughput biology center,johns hopkins university school of medicine,baltimore,md, United States, department of biochemistry and molecular genetics,university of virginia health system,school of medicine,charlottesville,va, United States
 
     
   
Authors
  
 
 

Copyright 2023
Islamic World Science Citation Center
All Rights Reserved