Systems Biology in Aging: Linking the Old and the Young
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Christopher D. Green | J. Han | Lei Hou | J. Boyd-Kirkup | Jialiang Huang | Bing Zhou | Xiaoming Yu | Wei Zhang | Wenxuan Gong
[1] M. Kaeberlein,et al. Send Orders of Reprints at Reprints@benthamscience.org Genome-wide Rnai Longevity Screens in Caenorhabditis Elegans , 2022 .
[2] Zhongjun Zhou,et al. Send Orders of Reprints at Reprints@benthamscience.org Chromatin Remodeling, Dna Damage Repair and Aging 2.1. Histone Modifying Enzymes , 2022 .
[3] Matt Kaeberlein,et al. Midlife gene expressions identify modulators of aging through dietary interventions , 2012, Proceedings of the National Academy of Sciences.
[4] S. Haggarty,et al. An epigenetic blockade of cognitive functions in the neurodegenerating brain , 2012, Nature.
[5] J. Kleinman,et al. Spatiotemporal transcriptome of the human brain , 2011, Nature.
[6] Zhike Lu,et al. Identification of 67 Histone Marks and Histone Lysine Crotonylation as a New Type of Histone Modification , 2011, Cell.
[7] Zheng Yan,et al. Histone demethylase UTX-1 regulates C. elegans life span by targeting the insulin/IGF-1 signaling pathway. , 2011, Cell metabolism.
[8] A. Hubbard,et al. Life span extension via eIF4G inhibition is mediated by posttranscriptional remodeling of stress response gene expression in C. elegans. , 2011, Cell metabolism.
[9] Mark R Cookson,et al. Distinct DNA methylation changes highly correlated with chronological age in the human brain. , 2011, Human molecular genetics.
[10] Zachary Pincus,et al. MicroRNAs Both Promote and Antagonize Longevity in C. elegans , 2010, Current Biology.
[11] M. Lachmann,et al. MicroRNA, mRNA, and protein expression link development and aging in human and macaque brain. , 2010, Genome research.
[12] Or Gozani,et al. Members of the Histone H3 Lysine 4 Trimethylation Complex Regulate Lifespan in a Germline-dependent Manner in C. elegans , 2010, Nature.
[13] L. Stein,et al. A human functional protein interaction network and its application to cancer data analysis , 2010, Genome Biology.
[14] Lennart Opitz,et al. Altered Histone Acetylation Is Associated with Age-Dependent Memory Impairment in Mice , 2010, Science.
[15] C. Wolkow,et al. Dynamic O-GlcNAc cycling at promoters of Caenorhabditis elegans genes regulating longevity, stress, and immunity , 2010, Proceedings of the National Academy of Sciences.
[16] C. Kenyon. The genetics of ageing , 2010, Nature.
[17] Rakhee Banerjee,et al. Polycomb Repressive Complex 2 and Trithorax modulate Drosophila longevity and stress resistance , 2009, Proceedings of the National Academy of Sciences.
[18] Yi Zeng,et al. Genetic association of FOXO1A and FOXO3A with longevity trait in Han Chinese populations. , 2009, Human molecular genetics.
[19] Subhash D. Katewa,et al. 4E-BP Extends Lifespan upon Dietary Restriction by Enhancing Mitochondrial Activity in Drosophila , 2009, Cell.
[20] Shi-Hua Zhang,et al. Disease-Aging Network Reveals Significant Roles of Aging Genes in Connecting Genetic Diseases , 2009, PLoS Comput. Biol..
[21] A. Shilatifard,et al. Histone H4 lysine-16 acetylation regulates cellular lifespan , 2009, Nature.
[22] B. Nickel,et al. Transcriptional neoteny in the human brain , 2009, Proceedings of the National Academy of Sciences.
[23] R. Bellazzi,et al. Association of the FOXO3A locus with extreme longevity in a southern Italian centenarian study. , 2009, Rejuvenation research.
[24] João Pedro de Magalhães,et al. Meta-analysis of age-related gene expression profiles identifies common signatures of aging , 2009, Bioinform..
[25] E. Greer,et al. Different dietary restriction regimens extend lifespan by both independent and overlapping genetic pathways in C. elegans , 2009, Aging cell.
[26] R. Chettier,et al. A Human Protein Interaction Network Shows Conservation of Aging Processes between Human and Invertebrate Species , 2009, PLoS genetics.
[27] Stefan Schreiber,et al. Association of FOXO3A variation with human longevity confirmed in German centenarians , 2009, Proceedings of the National Academy of Sciences.
[28] E. Nishida,et al. Signalling through RHEB-1 mediates intermittent fasting-induced longevity in C. elegans , 2009, Nature.
[29] Arie Budovsky,et al. The Human Ageing Genomic Resources: online databases and tools for biogerontologists , 2009, Aging cell.
[30] F. Alt,et al. SIRT1 Redistribution on Chromatin Promotes Genomic Stability but Alters Gene Expression during Aging , 2008, Cell.
[31] B. Kennedy,et al. Shortest-Path Network Analysis Is a Useful Approach toward Identifying Genetic Determinants of Longevity , 2008, PloS one.
[32] Yuqing Dong,et al. Caenorhabditis elegans HCF-1 Functions in Longevity Maintenance as a DAF-16 Regulator , 2008, PLoS biology.
[33] J. Han,et al. Inferring causal relationships among different histone modifications and gene expression. , 2008, Genome research.
[34] Lucinda K. Southworth,et al. An elt-3/elt-5/elt-6 GATA Transcription Circuit Guides Aging in C. elegans , 2008, Cell.
[35] A. Feinberg. Epigenetics at the epicenter of modern medicine. , 2008, JAMA.
[36] D. Geschwind,et al. A Systems Level Analysis of Transcriptional Changes in Alzheimer's Disease and Normal Aging , 2008, The Journal of Neuroscience.
[37] Jingtai Han. Understanding biological functions through molecular networks , 2008, Cell Research.
[38] Eran Segal,et al. Motif module map reveals enforcement of aging by continual NF-κB activity , 2007 .
[39] J. Han,et al. A modular network model of aging , 2007, Molecular systems biology.
[40] A. Owen,et al. AGEMAP: A Gene Expression Database for Aging in Mice , 2007, PLoS genetics.
[41] A. Antebi,et al. Genetics of Aging in Caenorhabditis elegans , 2007, PLoS genetics.
[42] A. Budovsky,et al. Longevity network: Construction and implications , 2007, Mechanisms of Ageing and Development.
[43] J. Han,et al. Identification of the Proliferation/Differentiation Switch in the Cellular Network of Multicellular Organisms , 2006, PLoS Comput. Biol..
[44] M. Driscoll,et al. Modulated microRNA expression during adult lifespan in Caenorhabditis elegans , 2006, Aging cell.
[45] A. Hsu,et al. New Genes Tied to Endocrine, Metabolic, and Dietary Regulation of Lifespan from a Caenorhabditis elegans Genomic RNAi Screen , 2005, PLoS genetics.
[46] G. Ruvkun,et al. A systematic RNAi screen for longevity genes in C. elegans. , 2005, Genes & development.
[47] M. Vidal,et al. Effect of sampling on topology predictions of protein-protein interaction networks , 2005, Nature Biotechnology.
[48] João Pedro de Magalhães,et al. HAGR: the Human Ageing Genomic Resources , 2004, Nucleic Acids Res..
[49] Y. Sakaki,et al. Association analysis between longevity in the Japanese population and polymorphic variants of genes involved in insulin and insulin-like growth factor 1 signaling pathways , 2004, Experimental Gerontology.
[50] Alan Hubbard,et al. Microarrays as a tool to investigate the biology of aging: a retrospective and a look to the future. , 2004, Science of aging knowledge environment : SAGE KE.
[51] I. Kohane,et al. Gene regulation and DNA damage in the ageing human brain , 2004, Nature.
[52] Cornelia I Bargmann,et al. Comparing genomic expression patterns across species identifies shared transcriptional profile in aging , 2004, Nature Genetics.
[53] B. Weinert,et al. Invited review: Theories of aging. , 2003, Journal of applied physiology.
[54] Cori Bargmann,et al. Genes that act downstream of DAF-16 to influence the lifespan of Caenorhabditis elegans , 2003, Nature.
[55] T. Garland,et al. Lifelong voluntary exercise in the mouse prevents age-related alterations in gene expression in the heart. , 2003, Physiological genomics.
[56] Kyle Duke,et al. Transcriptional Profile of Aging in C. elegans , 2002, Current Biology.
[57] David B. Goldstein,et al. Genome-Wide Transcript Profiles in Aging and Calorically Restricted Drosophila melanogaster , 2002, Current Biology.
[58] Anton J. Enright,et al. An efficient algorithm for large-scale detection of protein families. , 2002, Nucleic acids research.
[59] C. Allis,et al. Translating the Histone Code , 2001, Science.
[60] D B Allison,et al. Influences of aging and caloric restriction on the transcriptional profile of skeletal muscle from rhesus monkeys , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[61] C. Allis,et al. The language of covalent histone modifications , 2000, Nature.
[62] C. K. Lee,et al. Gene expression profile of aging and its retardation by caloric restriction. , 1999, Science.
[63] C. Kenyon,et al. daf-16: An HNF-3/forkhead family member that can function to double the life-span of Caenorhabditis elegans. , 1997, Science.
[64] T. Johnson,et al. Increased life-span of age-1 mutants in Caenorhabditis elegans and lower Gompertz rate of aging. , 1990, Science.
[65] E. Greer,et al. Members of the H 3 K 4 trimethylation complex regulate lifespan in a germline-dependent manner in C . elegans , 2010 .
[66] Eran Segal,et al. Motif module map reveals enforcement of aging by continual NF-kappaB activity. , 2007, Genes & development.