39
Views
117
CrossRef citations to date
0
Altmetric
Cell Growth and Development

High Osmolarity Extends Life Span in Saccharomyces cerevisiae by a Mechanism Related to Calorie Restriction

, , &
Pages 8056-8066 | Received 03 Jun 2002, Accepted 15 Aug 2002, Published online: 28 Mar 2023

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (5)

Koji Masumura, Sachi Matsukami, Kumiko Yonekita, Muneyoshi Kanai, Kazunori Kume, Dai Hirata & Masaki Mizunuma. (2019) SKO1 deficiency extends chronological lifespan in Saccharomyces cerevisiae. Bioscience, Biotechnology, and Biochemistry 83:8, pages 1473-1476.
Read now
Jingye Yang, Huzefa Dungrawala, Hui Hua, Arkadi Manukyan, Lesley Abraham, Wesley Lane, Holly Mead, Jill Wright & Brandt L. Schneider. (2011) Cell size and growth rate are major determinants of replicative lifespan . Cell Cycle 10:1, pages 144-155.
Read now
Nassim Dali‐Youcef, Marie Lagouge, Sébastien Froelich, Christian Koehl, Kristina Schoonjans & Johan Auwerx. (2007) Sirtuins: The ‘magnificent seven’, function, metabolism and longevity. Annals of Medicine 39:5, pages 335-345.
Read now
Shruti Agarwal, Siddharth Sharma, Vineet Agrawal & Nilanjan Roy. (2005) Caloric restriction augments ROS defense in S. cerevisiae, by a Sir2p independent mechanism. Free Radical Research 39:1, pages 55-62.
Read now
Christopher M. Gallo, Daniel L. Smith$suffix/text()$suffix/text() & Jeffrey S. Smith. (2004) Nicotinamide Clearance by Pnc1 Directly Regulates Sir2-Mediated Silencing and Longevity. Molecular and Cellular Biology 24:3, pages 1301-1312.
Read now

Articles from other publishers (112)

C. K. Odoh, R. Kamal, H. Xue, L. Lyu, J. T. Arnone & Z. K. Zhao. (2023) Glucosylglycerol Extends Chronological Lifespan of the Budding Yeast via an Increased Osmolarity Response. Indian Journal of Microbiology 63:1, pages 42-49.
Crossref
Chuks Kenneth Odoh, Haizhao Xue & Zongbao K. Zhao. (2023) Exogenous glucosylglycerol and proline extend the chronological lifespan of Rhodosporidium toruloides. International Microbiology.
Crossref
Bernadette-Emőke Teleky, Laura Mitrea, Lavinia-Florina Călinoiu, Adrian-Gheorghe Martău & Dan-Cristian Vodnar. 2023. Sustainable Food Science - A Comprehensive Approach. Sustainable Food Science - A Comprehensive Approach 363 379 .
Hannah K. Heywood, Stephen D. Thorpe, Renos M. Jeropoulos, Paul W. Caton & David A. Lee. (2022) Modulation of sirtuins during monolayer chondrocyte culture influences cartilage regeneration upon transfer to a 3D culture environment. Frontiers in Bioengineering and Biotechnology 10.
Crossref
Andrew Murphy, Sagar Vyavahare, Sandeep Kumar, Tae Jin Lee, Ashok Sharma, Satish Adusumilli, Mark Hamrick, Carlos M. Isales & Sadanand Fulzele. (2022) Dietary interventions and molecular mechanisms for healthy musculoskeletal aging. Biogerontology 23:6, pages 681-698.
Crossref
Patrick Reith, Svenja Braam, Niek Welkenhuysen, Sarah Lecinski, Jack Shepherd, Chris MacDonald, Mark C. Leake, Stefan Hohmann, Sviatlana Shashkova & Marija Cvijovic. (2022) The Effect of Lithium on the Budding Yeast Saccharomyces cerevisiae upon Stress Adaptation. Microorganisms 10:3, pages 590.
Crossref
Emiliana Giacomello & Luana Toniolo. (2021) The Potential of Calorie Restriction and Calorie Restriction Mimetics in Delaying Aging: Focus on Experimental Models. Nutrients 13:7, pages 2346.
Crossref
Gongliang Liu, Xinyu Bi, Changli Tao, Yongtao Fei, Sujuan Gao, Jinglong Liang & Weidong Bai. (2021) Comparative transcriptomics analysis of Zygosaccharomyces mellis under high-glucose stress. Food Science and Human Wellness 10:1, pages 54-62.
Crossref
Andrey A. Parkhitko, Elizabeth Filine, Stephanie E. Mohr, Alexey Moskalev & Norbert Perrimon. (2020) Targeting metabolic pathways for extension of lifespan and healthspan across multiple species. Ageing Research Reviews 64, pages 101188.
Crossref
Adrián Matencio, Francisco García-Carmona & José Manuel López-Nicolás. (2020) Characterization of Resveratrol, Oxyresveratrol, Piceatannol and Roflumilast as Modulators of Phosphodiesterase Activity. Study of Yeast Lifespan. Pharmaceuticals 13:9, pages 225.
Crossref
Ian W Dawes & Gabriel G Perrone. (2019) Stress and ageing in yeast. FEMS Yeast Research 20:1.
Crossref
Chalongchai Chalermwat, Thitipa Thosapornvichai, Laran T. Jensen & Duangrurdee Wattanasirichaigoon. (2020) Genetic Analysis of Peroxisomal Genes Required for Longevity in a Yeast Model of Citrin Deficiency. Diseases 8:1, pages 2.
Crossref
Simeon Leupold, Georg Hubmann, Athanasios Litsios, Anne C Meinema, Vakil Takhaveev, Alexandros Papagiannakis, Bastian Niebel, Georges Janssens, David Siegel & Matthias Heinemann. (2019) Saccharomyces cerevisiae goes through distinct metabolic phases during its replicative lifespan. eLife 8.
Crossref
Andrea Ruetenik & Antonio Barrientos. (2018) Exploiting Post-mitotic Yeast Cultures to Model Neurodegeneration. Frontiers in Molecular Neuroscience 11.
Crossref
Priyanka Saini, Arun Beniwal, Anusha Kokkiligadda & Shilpa Vij. (2018) Response and tolerance of yeast to changing environmental stress during ethanol fermentation. Process Biochemistry 72, pages 1-12.
Crossref
Jessica Smith & Brandt L. Schneider. 2018. Conn's Handbook of Models for Human Aging. Conn's Handbook of Models for Human Aging 389 415 .
Maneesha Aluru, Tori McKinney, Anne-Kathryn L. Venero, Shilpa Choudhury & Matthew Torres. (2017) Mitogen-activated protein kinases, Fus3 and Kss1, regulate chronological lifespan in yeast. Aging 9:12, pages 2587-2609.
Crossref
Laura C. D. Pomatto & Kelvin J. A. Davies. (2017) The role of declining adaptive homeostasis in ageing. The Journal of Physiology 595:24, pages 7275-7309.
Crossref
Filip Sedlic & Zdenko Kovac. (2017) Non-linear actions of physiological agents: Finite disarrangements elicit fitness benefits. Redox Biology 13, pages 235-243.
Crossref
Michael Davis, Andrea Montalbano, Megan P. Wood & Jennifer A. Schisa. (2017) Biphasic adaptation to osmotic stress in the C. elegans germ line . American Journal of Physiology-Cell Physiology 312:6, pages C741-C748.
Crossref
Ana Mendes-Ferreira, Marcel lí del Olmo, José García-Martínez & José E. Pérez-Ortín. 2017. Biology of Microorganisms on Grapes, in Must and in Wine. Biology of Microorganisms on Grapes, in Must and in Wine 573 604 .
Jiwon HwangPeter J. Espenshade. (2016) Proximity-dependent biotin labelling in yeast using the engineered ascorbate peroxidase APEX2. Biochemical Journal 473:16, pages 2463-2469.
Crossref
. 2016. Industrial Biotechnology. Industrial Biotechnology 239 280 .
Sarah R. Chadwick, Athanasios D. Pananos, Sonja E. Di Gregorio, Anna E. Park, Parnian Etedali-Zadeh, Martin L. Duennwald & Patrick Lajoie. (2016) A Toolbox for Rapid Quantitative Assessment of Chronological Lifespan and Survival in Saccharomyces cerevisiae . Traffic 17:6, pages 689-703.
Crossref
Zhaoyang Feng, Richard W. Hanson, Nathan A. Berger & Alexander Trubitsyn. (2016) Reprogramming of energy metabolism as a driver of aging. Oncotarget 7:13, pages 15410-15420.
Crossref
Edward N. Anderson, Mark E. Corkins, Jia-Cheng Li, Komudi Singh, Sadé Parsons, Tim M. Tucey, Altar Sorkaç, Huiyan Huang, Maria Dimitriadi, David A. Sinclair & Anne C. Hart. (2016) C. elegans lifespan extension by osmotic stress requires FUdR, base excision repair, FOXO, and sirtuins. Mechanisms of Ageing and Development 154, pages 30-42.
Crossref
N. Makino, J. Oyama, T. Maeda, M. Koyanagi, Y. Higuchi, I. Shimokawa, N. Mori & T. Furuyama. (2015) FoxO1 signaling plays a pivotal role in the cardiac telomere biology responses to calorie restriction. Molecular and Cellular Biochemistry 412:1-2, pages 119-130.
Crossref
Steve Michel, Markus A Keller, Mirjam MC Wamelink & Markus Ralser. (2015) A haploproficient interaction of the transaldolase paralogue NQM1 with the transcription factor VHR1 affects stationary phase survival and oxidative stress resistance. BMC Genetics 16:1.
Crossref
Olta Noti, Enrico Vaudano, Enrica Pessione & Emilia Garcia-Moruno. (2015) Short-term response of different Saccharomyces cerevisiae strains to hyperosmotic stress caused by inoculation in grape must: RT-qPCR study and metabolite analysis. Food Microbiology 52, pages 49-58.
Crossref
Mercè Gomar-Alba, Catarina Amaral, Alejandro Artacho, Giuseppe D'Auria, Catarina Pimentel, Claudina Rodrigues-Pousada & Marcel·lí del Olmo. (2015) The C-terminal region of the Hot1 transcription factor binds GGGACAAA-related sequences in the promoter of its target genes. Biochimica et Biophysica Acta (BBA) - Gene Regulatory Mechanisms 1849:12, pages 1385-1397.
Crossref
Devon Chandler-Brown, Haeri Choi, Shirley Park, Billie R. Ocampo, Shiwen Chen, Anna Le, George L. Sutphin, Lara S. Shamieh, Erica D. Smith & Matt Kaeberlein. (2015) Sorbitol treatment extends lifespan and induces the osmotic stress response in Caenorhabditis elegans. Frontiers in Genetics 6.
Crossref
Carmen V. JackCristina CruzRyan M. HullMarkus A. KellerMarkus Ralser & Jonathan Houseley. (2015) Regulation of ribosomal DNA amplification by the TOR pathway. Proceedings of the National Academy of Sciences 112:31, pages 9674-9679.
Crossref
Mercè Gomar-Alba, Ma Ángeles Morcillo-Parra & Marcel·lí del Olmo. (2015) Response of yeast cells to high glucose involves molecular and physiological differences when compared to other osmostress conditions. FEMS Yeast Research 15:5, pages fov039.
Crossref
Felicia Tsang & Su-Ju Lin. (2015) Less is more: Nutrient limitation induces cross-talk of nutrient sensing pathways with NAD+ homeostasis and contributes to longevity. Frontiers in Biology 10:4, pages 333-357.
Crossref
Michiko Kato & Su-Ju Lin. (2014) Regulation of NAD+ metabolism, signaling and compartmentalization in the yeast Saccharomyces cerevisiae. DNA Repair 23, pages 49-58.
Crossref
Woo Kyu Kang, Yeong Hyeock Kim, Byoung-Soo Kim & Jeong-Yoon Kim. (2014) Growth phase-dependent roles of Sir2 in oxidative stress resistance and chronological lifespan in yeast. Journal of Microbiology 52:8, pages 652-658.
Crossref
Valentin Tilloy, Anne Ortiz-Julien & Sylvie Dequin. (2014) Reduction of Ethanol Yield and Improvement of Glycerol Formation by Adaptive Evolution of the Wine Yeast Saccharomyces cerevisiae under Hyperosmotic Conditions. Applied and Environmental Microbiology 80:8, pages 2623-2632.
Crossref
Silvana Paredes, Lidia Villanova & Katrin F. Chua. (2014) Molecular Pathways: Emerging Roles of Mammalian Sirtuin SIRT7 in Cancer. Clinical Cancer Research 20:7, pages 1741-1746.
Crossref
Esra B. Yucel, Serpil Eraslan & Kutlu O. Ulgen. (2014) The impact of medium acidity on the chronological life span of Saccharomyces cerevisiae  - lipids, signaling cascades, mitochondrial and vacuolar functions . FEBS Journal 281:4, pages 1281-1303.
Crossref
Vyacheslav M. Labunskyy, Maxim V. Gerashchenko, Joe R. Delaney, Alaattin Kaya, Brian K. Kennedy, Matt Kaeberlein & Vadim N. Gladyshev. (2014) Lifespan Extension Conferred by Endoplasmic Reticulum Secretory Pathway Deficiency Requires Induction of the Unfolded Protein Response. PLoS Genetics 10:1, pages e1004019.
Crossref
Mercè Gomar-Alba, Paula Alepuz & Marcel·lí del Olmo. (2013) Dissection of the elements of osmotic stress response transcription factor Hot1 involved in the interaction with MAPK Hog1 and in the activation of transcription. Biochimica et Biophysica Acta (BBA) - Gene Regulatory Mechanisms 1829:10, pages 1111-1125.
Crossref
Na-Rae Kim, Jungwoo Yang, Hyeji Kwon, Jieun An, Wonja Choi & Wankee Kim. (2013) Mutations of the TATA-binding protein confer enhanced tolerance to hyperosmotic stress in Saccharomyces cerevisiae. Applied Microbiology and Biotechnology 97:18, pages 8227-8238.
Crossref
Sugunadevi Sakkiah, Mahreen Arooj, Manian Rajesh Kumar, Soo Hyun Eom & Keun Woo Lee. (2013) Identification of Inhibitor Binding Site in Human Sirtuin 2 Using Molecular Docking and Dynamics Simulations. PLoS ONE 8:1, pages e51429.
Crossref
M Gomar-Alba, E Jiménez-Martí & M del Olmo. (2012) The Saccharomyces cerevisiae Hot1p regulated gene YHR087W (HGI1) has a role in translation upon high glucose concentration stress. BMC Molecular Biology 13:1.
Crossref
Jennifer Schleit, Brian M. Wasko & Matt Kaeberlein. (2012) Yeast as a model to understand the interaction between genotype and the response to calorie restriction. FEBS Letters 586:18, pages 2868-2873.
Crossref
António Daniel Barbosa, João Graça, Vanda Mendes, Susana Rodrigues Chaves, Maria Amélia Amorim, Marta Vaz Mendes, Pedro Moradas-Ferreira, Manuela Côrte-Real & Vítor Costa. (2012) Activation of the Hog1p kinase in Isc1p-deficient yeast cells is associated with mitochondrial dysfunction, oxidative stress sensitivity and premature aging. Mechanisms of Ageing and Development 133:5, pages 317-330.
Crossref
Jyosthna Khanna Goli, Smita Hasini Panda & Venkateswar Rao Linga. 2012. D-Xylitol. D-Xylitol 85 107 .
Ziyun Wu, Lixia Song, Shao Quan Liu & Dejian Huang. (2011) A high throughput screening assay for determination of chronological lifespan of yeast. Experimental Gerontology 46:11, pages 915-922.
Crossref
Tetsuro Koyama, Shinji Kume, Daisuke Koya, Shin-ichi Araki, Keiji Isshiki, Masami Chin-Kanasaki, Toshiro Sugimoto, Masakazu Haneda, Takeshi Sugaya, Atsunori Kashiwagi, Hiroshi Maegawa & Takashi Uzu. (2011) SIRT3 attenuates palmitate-induced ROS production and inflammation in proximal tubular cells. Free Radical Biology and Medicine 51:6, pages 1258-1267.
Crossref
Karel SIGLER & Dagmar MATOULKOVÁ. (2011) Stress responses in brewing yeast.. Kvasny Prumysl 57:7-8, pages 277-284.
Crossref
Elena Jiménez-Martí, Mercè Gomar-Alba, Antonio Palacios, Anne Ortiz-Julien & Marcel-li del Olmo. (2010) Towards an understanding of the adaptation of wine yeasts to must: relevance of the osmotic stress response. Applied Microbiology and Biotechnology 89:5, pages 1551-1561.
Crossref
E. Jiménez-Martí, A. Zuzuarregui, M. Gomar-Alba, D. Gutiérrez, C. Gil & M. del Olmo. (2011) Molecular response of Saccharomyces cerevisiae wine and laboratory strains to high sugar stress conditions. International Journal of Food Microbiology 145:1, pages 211-220.
Crossref
Agustín Aranda, Emilia Matallana & Marcel·lí del Olmo. 2011. Molecular Wine Microbiology. Molecular Wine Microbiology 1 31 .
Peter W. Piper. 2012. Aging Research in Yeast. Aging Research in Yeast 145 159 .
Bo-Ruei Chen & Kurt W. Runge. 2012. Aging Research in Yeast. Aging Research in Yeast 291 314 .
Michael Breitenbach, Peter Laun & S. Michal Jazwinski. 2012. Aging Research in Yeast. Aging Research in Yeast 1 12 .
Yong-Ru ChenShi-Rong FangYu-Cai FuXiao-Hui ZhouMing-Yan XuWen-Can Xu. (2010) Calorie restriction on insulin resistance and expression of SIRT1 and SIRT4 in ratsThis paper is one of a selection of papers published in this special issue entitled “Second International Symposium on Recent Advances in Basic, Clinical, and Social Medicine” and has undergone the Journal's usual peer review process.. Biochemistry and Cell Biology 88:4, pages 715-722.
Crossref
Anne D. van Diepeningen, S. Marijke Slakhorst, A. Bertha Koopmanschap, Gerjon J. Ikink, Alfons J.M. Debets & Rolf F. Hoekstra. (2010) Calorie restriction in the filamentous fungus Podospora anserina. Experimental Gerontology 45:7-8, pages 516-524.
Crossref
Jun Wang, Hayley Fivecoat, Lap Ho, Yong Pan, Emi Ling & Giulio Maria Pasinetti. (2010) The role of Sirt1: At the crossroad between promotion of longevity and protection against Alzheimer's disease neuropathology. Biochimica et Biophysica Acta (BBA) - Proteins and Proteomics 1804:8, pages 1690-1694.
Crossref
Shu-Ping Lu & Su-Ju Lin. (2010) Regulation of yeast sirtuins by NAD+ metabolism and calorie restriction. Biochimica et Biophysica Acta (BBA) - Proteins and Proteomics 1804:8, pages 1567-1575.
Crossref
Shinji Kume, Takashi Uzu, Kihachiro Horiike, Masami Chin-Kanasaki, Keiji Isshiki, Shin-ichi Araki, Toshiro Sugimoto, Masakazu Haneda, Atsunori Kashiwagi & Daisuke Koya. (2010) Calorie restriction enhances cell adaptation to hypoxia through Sirt1-dependent mitochondrial autophagy in mouse aged kidney. Journal of Clinical Investigation 120:4, pages 1043-1055.
Crossref
Van K. Golay. (2010) Cassava Root Diet Induces Low Pyruvate Levels. Rejuvenation Research 13:2-3, pages 260-261.
Crossref
Sunhee Jung, Marcello Marelli, Richard A. Rachubinski, David R. Goodlett & John D. Aitchison. (2010) Dynamic Changes in the Subcellular Distribution of Gpd1p in Response to Cell Stress. Journal of Biological Chemistry 285:9, pages 6739-6749.
Crossref
Min Wei, Federica Madia, Rafael de Cabo & Valter D. Longo. 2010. Calorie Restriction, Aging and Longevity. Calorie Restriction, Aging and Longevity 97 109 .
Daniel L. Smith Jr.Jeffrey S. Smith. 2010. The Comparative Biology of Aging. The Comparative Biology of Aging 123 146 .
Daniel L. Smith Jr, Chonghua Li, Mirela Matecic, Nazif Maqani, Mary Bryk & Jeffrey S. Smith. (2009) Calorie restriction effects on silencing and recombination at the yeast rDNA. Aging Cell 8:6, pages 633-642.
Crossref
Lihong LiYong LuLi-Xuan Qin, Ziv Bar-JosephMargaret Werner-Washburne & Linda L. Breeden. (2009) Budding Yeast SSD1-V Regulates Transcript Levels of Many Longevity Genes and Extends Chronological Life Span in Purified Quiescent Cells . Molecular Biology of the Cell 20:17, pages 3851-3864.
Crossref
Jingming Zhou, Quan Zhong, Guiling Li & Miriam L. Greenberg. (2009) Loss of Cardiolipin Leads to Longevity Defects That Are Alleviated by Alterations in Stress Response Signaling. Journal of Biological Chemistry 284:27, pages 18106-18114.
Crossref
Min Wei, Paola Fabrizio, Federica Madia, Jia Hu, Huanying Ge, Lei M. Li & Valter D. Longo. (2009) Tor1/Sch9-Regulated Carbon Source Substitution Is as Effective as Calorie Restriction in Life Span Extension. PLoS Genetics 5:5, pages e1000467.
Crossref
E. Jiménez-Martí, A. Zuzuarregui, I. Ridaura, N. Lozano & M. del Olmo. (2009) Genetic manipulation of HSP26 and YHR087W stress genes may improve fermentative behaviour in wine yeasts under vinification conditions. International Journal of Food Microbiology 130:2, pages 122-130.
Crossref
William Mair, Siler H. Panowski, Reuben J. Shaw & Andrew Dillin. (2009) Optimizing Dietary Restriction for Genetic Epistasis Analysis and Gene Discovery in C. elegans. PLoS ONE 4:2, pages e4535.
Crossref
Amit S. Joshi, Jingming Zhou, Vishal M. Gohil, Shuliang Chen & Miriam L. Greenberg. (2009) Cellular functions of cardiolipin in yeast. Biochimica et Biophysica Acta (BBA) - Molecular Cell Research 1793:1, pages 212-218.
Crossref
George L. Sutphin & Brian K. Kennedy. 2009. Evolutionary Biology. Evolutionary Biology 339 360 .
Xiao-Hong Fu, Fei-Long Meng, Yan Hu & Jin-Qiu Zhou. (2008) Candida albicans , a distinctive fungal model for cellular aging study . Aging Cell 7:5, pages 746-757.
Crossref
Jennifer L. Sporty, Md. Mohiuddin Kabir, Kenneth W. Turteltaub, Ted Ognibene, Su-Ju Lin & Graham Bench. (2008) Single sample extraction protocol for the quantification of NAD and NADH redox states in Saccharomyces cerevisiae . Journal of Separation Science 31:18, pages 3202-3211.
Crossref
William MairAndrew Dillin. (2008) Aging and Survival: The Genetics of Life Span Extension by Dietary Restriction. Annual Review of Biochemistry 77:1, pages 727-754.
Crossref
Shantanu Bhatt & Christine L. Weingart. (2008) Identification of Sodium Chloride-Regulated Genes in Burkholderia cenocepacia. Current Microbiology 56:5, pages 418-422.
Crossref
Erin Easlon, Felicia Tsang, Craig Skinner, Chen Wang & Su-Ju Lin. (2008) The malate–aspartate NADH shuttle components are novel metabolic longevity regulators required for calorie restriction-mediated life span extension in yeast. Genes & Development 22:7, pages 931-944.
Crossref
C. J. Murakami, C. R. Burtner, B. K. Kennedy & M. Kaeberlein. (2008) A Method for High-Throughput Quantitative Analysis of Yeast Chronological Life Span. The Journals of Gerontology Series A: Biological Sciences and Medical Sciences 63:2, pages 113-121.
Crossref
Daniel L. Smith, Jr, Julie M. McClure, Mirela Matecic & Jeffrey S. Smith. (2007) Calorie restriction extends the chronological lifespan of Saccharomyces cerevisiae independently of the Sirtuins . Aging Cell 6:5, pages 649-662.
Crossref
Martin Weinberger, Li Feng, Anita Paul, Daniel L. Smith, Robert D. Hontz, Jeffrey S. Smith, Marija Vujcic, Keshav K. Singh, Joel A. Huberman & William C. Burhans. (2007) DNA Replication Stress Is a Determinant of Chronological Lifespan in Budding Yeast. PLoS ONE 2:8, pages e748.
Crossref
Matt Kaeberlein & R. Wilson PowersIIIIII. (2007) Sir2 and calorie restriction in yeast: A skeptical perspective. Ageing Research Reviews 6:2, pages 128-140.
Crossref
Pedro Gomes, Belém Sampaio-Marques, Paula Ludovico, Fernando Rodrigues & Cecília Leão. (2007) Low auxotrophy-complementing amino acid concentrations reduce yeast chronological life span. Mechanisms of Ageing and Development 128:5-6, pages 383-391.
Crossref
Andreas Poplinski, Claudia Hopp & Massoud Ramezani-Rad. (2007) Ste50 adaptor protein influences Ras/cAMP-driven stress-response and cell survival in Saccharomyces cerevisiae. Current Genetics 51:4, pages 257-268.
Crossref
Erin Easlon, Felicia Tsang, Ivanka Dilova, Chen Wang, Shu-Ping Lu, Craig Skinner & Su-Ju Lin. (2007) The Dihydrolipoamide Acetyltransferase Is a Novel Metabolic Longevity Factor and Is Required for Calorie Restriction-mediated Life Span Extension. Journal of Biological Chemistry 282:9, pages 6161-6171.
Crossref
Tianle Yang & Anthony A. Sauve. (2006) NAD metabolism and sirtuins: Metabolic regulation of protein deacetylation in stress and toxicity. The AAPS Journal 8:4.
Crossref
Mitsuhiro Tsuchiya, Nick Dang, Emily O. Kerr, Di Hu, Kristan K. Steffen, Jonathan A. Oakes, Brian K. Kennedy & Matt Kaeberlein. (2006) Sirtuin-independent effects of nicotinamide on lifespan extension from calorie restriction in yeast. Aging Cell 5:6, pages 505-514.
Crossref
Enzo Nisoli & Michele O. Carruba. (2006) Nitric oxide and mitochondrial biogenesis. Journal of Cell Science 119:14, pages 2855-2862.
Crossref
Anthony A. SauveCynthia WolbergerVern L. SchrammJef D. Boeke. (2006) The Biochemistry of Sirtuins. Annual Review of Biochemistry 75:1, pages 435-465.
Crossref
Matt Kaeberlein. 2006. Handbook of Models for Human Aging. Handbook of Models for Human Aging 207 217 .
Matt Kaeberlein, Di Hu, Emily O Kerr, Mitsuhiro Tsuchiya, Eric A Westman, Nick Dang, Stanley Fields & Brian K Kennedy. (2005) Increased Life Span due to Calorie Restriction in Respiratory-Deficient Yeast. PLoS Genetics 1:5, pages e69.
Crossref
Brian J Morris. (2005) A forkhead in the road to longevity: the molecular basis of lifespan becomes clearer. Journal of Hypertension 23:7, pages 1285-1309.
Crossref
Matt Kaeberlein, Thomas McDonagh, Birgit Heltweg, Jeffrey Hixon, Eric A. Westman, Seth D. Caldwell, Andrew Napper, Rory Curtis, Peter S. DiStefano, Stanley Fields, Antonio Bedalov & Brian K. Kennedy. (2005) Substrate-specific Activation of Sirtuins by Resveratrol. Journal of Biological Chemistry 280:17, pages 17038-17045.
Crossref
Matt Kaeberlein, Kathryn T. Kirkland, Stanley Fields & Brian K. Kennedy. (2005) Genes determining yeast replicative life span in a long-lived genetic background. Mechanisms of Ageing and Development 126:4, pages 491-504.
Crossref
Anthony A. Sauve, Robyn D. Moir, Vern L. Schramm & Ian M. Willis. (2005) Chemical Activation of Sir2-Dependent Silencing by Relief of Nicotinamide Inhibition. Molecular Cell 17:4, pages 595-601.
Crossref
Nadège Minois, Magdalena Frajnt, Chris Wilson & James W. Vaupel. (2004) Advances in measuring lifespan in the yeast Saccharomyces cerevisiae . Proceedings of the National Academy of Sciences 102:2, pages 402-406.
Crossref
Matt Kaeberlein. (2004) Aging-Related Research in the "-omics" Age. Science of Aging Knowledge Environment 2004:42.
Crossref
Marc F.P.M Maas, Hugo J.de Boer, Alfons J.M Debets & Rolf F Hoekstra. (2004) The mitochondrial plasmid pAL2-1 reduces calorie restriction mediated life span extension in the filamentous fungus Podospora anserina. Fungal Genetics and Biology 41:9, pages 865-871.
Crossref
Matt Kaeberlein, Kathryn T Kirkland, Stanley Fields & Brian K Kennedy. (2004) Sir2-Independent Life Span Extension by Calorie Restriction in Yeast. PLoS Biology 2:9, pages e296.
Crossref
Haim Y. CohenChristine MillerKevin J. BittermanNathan R. WallBrian HekkingBenedikt KesslerKonrad T. HowitzMyriam GorospeRafael de CaboDavid A. Sinclair. (2004) Calorie Restriction Promotes Mammalian Cell Survival by Inducing the SIRT1 Deacetylase. Science 305:5682, pages 390-392.
Crossref
Matt Kaeberlein, Alex A Andalis, Gregory B Liszt, Gerald R Fink & Leonard Guarente. (2004) Saccharomyces cerevisiae SSD1-V Confers Longevity by a Sir2p-Independent Mechanism . Genetics 166:4, pages 1661-1672.
Crossref
Isabelle Lesur & Judith L. Campbell. (2004) The Transcriptome of Prematurely Aging Yeast Cells Is Similar to That of Telomerase-deficient Cells. Molecular Biology of the Cell 15:3, pages 1297-1312.
Crossref
Su-Ju Lin, Ethan Ford, Marcia Haigis, Greg Liszt & Leonard Guarente. (2004) Calorie restriction extends yeast life span by lowering the level of NADH. Genes & Development 18:1, pages 12-16.
Crossref
Rozalyn M. AndersonMagda Latorre-EstevesAna Rute NevesSiva LavuOliver MedvedikChristopher TaylorKonrad T. HowitzHelena SantosDavid A. Sinclair. (2003) Yeast Life-Span Extension by Calorie Restriction Is Independent of NAD Fluctuation. Science 302:5653, pages 2124-2126.
Crossref
Alaric A. Falcón & John P. Aris. (2003) Plasmid Accumulation Reduces Life Span in Saccharomyces cerevisiae. Journal of Biological Chemistry 278:43, pages 41607-41617.
Crossref
Nicholas Harris, Vitor Costa, Morag MacLean, Mehdi Mollapour, Pedro Moradas-Ferreira & Peter W Piper. (2003) Mnsod overexpression extends the yeast chronological (G0) life span but acts independently of Sir2p histone deacetylase to shorten the replicative life span of dividing cells. Free Radical Biology and Medicine 34:12, pages 1599-1606.
Crossref
Rozalyn M. Anderson, Kevin J. Bitterman, Jason G. Wood, Oliver Medvedik & David A. Sinclair. (2003) Nicotinamide and PNC1 govern lifespan extension by calorie restriction in Saccharomyces cerevisiae. Nature 423:6936, pages 181-185.
Crossref
. (2003) Current Awareness on Yeast. Yeast 20:5, pages 455-462.
Crossref
. (2003) Anti-Aging Medicine LiteratureWatch. Journal of Anti-Aging Medicine 6:1, pages 45-64.
Crossref
Stephen S. Lin, Jill K. Manchester & Jeffrey I. Gordon. 2003. Energy Metabolism and Lifespan Determination. Energy Metabolism and Lifespan Determination 197 213 .
Richard G. A. Faragher. 2003. Aging of the Organs and Systems. Aging of the Organs and Systems 1 28 .
Haim Y. Cohen, Kevin J. Bitterman & David A. Sinclair. 2003. Aging at the Molecular Level. Aging at the Molecular Level 193 211 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.