Molecular mechanisms of genotype-dependent lifespan variation mediated by caloric restriction: insight from wild yeast isolates

被引:0
|
作者
Mclean, Samantha [1 ]
Lee, Mitchell [2 ,3 ]
Liu, Weiqiang [4 ]
Hameed, Rohil [1 ]
Gujjala, Vikas Anil [1 ]
Zhou, Xuming [4 ]
Kaeberlein, Matt [2 ,5 ]
Kaya, Alaattin [1 ]
机构
[1] Virginia Commonwealth Univ, Dept Biol, Richmond, VA 23284 USA
[2] Univ Washington, Dept Pathol, Seattle, WA USA
[3] Ora Biomed, Seattle, WA USA
[4] Chinese Acad Sci, Inst Zool, Key Lab Anim Ecol & Conservat Biol, Beijing, Peoples R China
[5] Optispan, Seattle, WA USA
来源
FRONTIERS IN AGING | 2024年 / 5卷
关键词
caloric restriction; lifespan; genotype variation; metabolism; yeast; DIFFERENTIAL EXPRESSION ANALYSIS; DIETARY RESTRICTION; GENE-EXPRESSION; CAENORHABDITIS-ELEGANS; FITNESS COST; R-PACKAGE; LONGEVITY; EXTENSION; STRESS; RESPIRATION;
D O I
10.3389/fragi.2024.1408160
中图分类号
R592 [老年病学]; C [社会科学总论];
学科分类号
03 ; 0303 ; 100203 ;
摘要
Caloric restriction (CR) is known to extend lifespan across different species and holds great promise for preventing human age-onset pathologies. However, two major challenges exist. First, despite extensive research, the mechanisms of lifespan extension in response to CR remain elusive. Second, genetic differences causing variations in response to CR and genetic factors contributing to variability of CR response on lifespan are largely unknown. Here, we took advantage of natural genetic variation across 46 diploid wild yeast isolates of Saccharomyces species and the lifespan variation under CR conditions to uncover the molecular factors associated with CR response types. We identified genes and metabolic pathways differentially regulated in CR-responsive versus non-responsive strains. Our analysis revealed that altered mitochondrial function and activation of GCN4-mediated environmental stress response are inevitably linked to lifespan variation in response to CR and a unique mitochondrial metabolite might be utilized as a predictive marker for CR response rate. In sum, our data suggests that the effects of CR on longevity may not be universal, even among the closely related species or strains of a single species. Since mitochondrial-mediated signaling pathways are evolutionarily conserved, the dissection of related genetic pathways will be relevant to understanding the mechanism by which CR elicits its longevity effect.
引用
收藏
页数:19
相关论文
共 3 条
  • [1] Molecular mechanisms underlying genotype-dependent responses to dietary restriction
    Schleit, Jennifer
    Johnson, Simon C.
    Bennett, Christopher F.
    Simko, Marissa
    Trongtham, Natalie
    Castanza, Anthony
    Hsieh, Edward J.
    Moller, Richard M.
    Wasko, Brian M.
    Delaney, Joe R.
    Sutphin, George L.
    Carr, Daniel
    Murakami, Christopher J.
    Tocchi, Autumn
    Xian, Bo
    Chen, Weiyang
    Yu, Tao
    Goswami, Sarani
    Higgins, Sean
    Holmberg, Mollie
    Jeong, Ki-Soo
    Kim, Jin R.
    Klum, Shannon
    Liao, Eric
    Lin, Michael S.
    Lo, Winston
    Miller, Hillary
    Olsen, Brady
    Peng, Zhao J.
    Pollard, Tom
    Pradeep, Prarthana
    Pruett, Dillon
    Rai, Dilreet
    Ros, Vanessa
    Singh, Minnie
    Spector, Benjamin L.
    Vander Wende, Helen
    An, Elroy H.
    Fletcher, Marissa
    Jelic, Monika
    Rabinovitch, Peter S.
    MacCoss, Michael J.
    Han, Jing-Dong J.
    Kennedy, Brian K.
    Kaeberlein, Matt
    AGING CELL, 2013, 12 (06) : 1050 - 1061
  • [3] MOLECULAR MECHANISMS UNDERLYING GENOTYPE-DEPENDENT RESPONSES TO DIETARY RESTRICTION
    Johnson, S. C.
    Schleit, J.
    Kaeberlein, M.
    Bennett, C. F.
    GERONTOLOGIST, 2012, 52 : 148 - 148