Subarea 3: Genetics and Epigenetics of Aging

The focus of Subarea 3 is on genetic and epigenetic determinants of life- and health span as well as aging in fish, rodents and humans. This line of research builds on the expertise of the institute in comparative and functional genomics.

The research is defined by five focus areas:

  • Comparative genomics in short- and long-lived models of aging,
  • Genomic engineering in N. furzeri,
  • Epigenetics of aging,
  • Non-coding RNAs in aging, and
  • Comparative transcriptomics of aging.

Research focus of Subarea 3.

To uncover causative factors for aging, comparative genomics in short- and long-lived model systems are applied. Functional genomics is used to identify novel pathways contribute to aging of an organism and to validate the functional relevance of genetic and epigenetic changes that occur during aging. Furthermore, genetic risk factors for aging-related diseases are identified and functionally tested. The future development of the Subarea aims to integrate changes in host-microbiota interactions during aging, and how these influence clonal mutation and epigenetic alterations through metabolites and other signals.

Publications

(since 2016)

2017

  • A miRNA catalogue and ncRNA annotation of the short-living fish Nothobranchius furzeri.
    Baumgart* M, Barth* E, Savino A, Groth M, Koch P, Petzold A, Arisi I, Platzer M, Marz* M, Cellerino* A
    BMC Genomics 2017, 18(1), 693 * equal contribution
  • Construction of a map-based reference genome sequence for barley, Hordeum vulgare L.
    Beier S, Himmelbach A, Colmsee C, Zhang XQ, Barrero RA, Zhang Q, Li L, Bayer M, Bolser D, Taudien S, Groth M, Felder M, Hastie A, Šimková H, Staňková H, Vrána J, Chan S, Muñoz-Amatriaín M, Ounit R, Wanamaker S, Schmutzer T, Aliyeva-Schnorr L, Grasso S, Tanskanen J, Sampath D, Heavens D, Cao S, Chapman B, Dai F, Han Y, Li H, Li X, Lin C, McCooke JK, Tan C, Wang S, Yin S, Zhou G, Poland JA, Bellgard MI, Houben A, Doležel J, Ayling S, Lonardi S, Langridge P, Muehlbauer GJ, Kersey P, Clark MD, Caccamo M, Schulman AH, Platzer M, Close TJ, Hansson M, Zhang G, Braumann I, Li C, Waugh R, Scholz U, Stein N, Mascher M
    Sci Data 2017, 4, 170044
  • Development and application of RNA-seq bioinformatic tools to explore non-model organisms in ageing research
    Bens M
    Dissertation 2017, Jena, Germany
  • Citron Kinase Deficiency Leads to Chromosomal Instability and TP53-Sensitive Microcephaly.
    Bianchi FT, Tocco C, Pallavicini G, Liu Y, Vernì F, Merigliano C, Bonaccorsi S, El-Assawy N, Priano L, Gai M, Berto GE, Chiotto AMA, Sgrò F, Caramello A, Tasca L, Ala U, Neri F, Oliviero S, Mauro A, Geley S, Gatti M, Di Cunto F
    Cell Rep 2017, 18(7), 1674-86 published during change of institution
  • Repeated intra-specific divergence in lifespan and ageing of African annual fishes along an aridity gradient.
    Blažek R, Polačik M, Kačer P, Cellerino A, Řežucha R, Methling C, Tomášek O, Syslová K, Tozzini ET, Albrecht T, Vrtílek M, Reichard M
    Evolution Int J Org Evolution 2017, 71(2), 386-402
  • DNMT and HDAC inhibitors induce cryptic transcription start sites encoded in long terminal repeats.
    Brocks D, Schmidt CR, Daskalakis M, Jang HS, Shah NM, Li D, Li J, Zhang B, Hou Y, Laudato S, Lipka DB, Schott J, Bierhoff H, Assenov Y, Helf M, Ressnerova A, Islam MS, Lindroth AM, Haas S, Essers M, Imbusch CD, Brors B, Oehme I, Witt O, Lübbert M, Mallm JP, Rippe K, Will R, Weichenhan D, Stoecklin G, Gerhäuser C, Oakes CC, Wang T, Plass C
    Nat Genet 2017, 49(7), 1052-60 published during change of institution
  • Renal regenerative potential of different extra-cellular vesicle populations derived from bone marrow mesenchymal stromal cells.
    Bruno S, Tapparo M, Collino F, Chiabotto G, Deregibus MC, Soares Lindoso R, Neri F, Kholia S, Giunti S, Wen S, Quesenberry P, Camussi G
    TISSUE ENG PART A 2017, 23(21-22), 1262-73
  • What have we learned on aging from omics studies?
    Cellerino A, Ori A
    Semin Cell Dev Biol 2017, 70, 177-89
  • Endogenous locus-driven H-Ras G12V expression induces senescence-like phenotype in primary fibroblasts of the Costello syndrome mouse model
    Chennappan S, Schulze T, Cirstea IC
    Molecular Life 2017, 1(1), 3-14
  • Genetic mutations linked to Parkinson's disease differentially control nucleolar activity in pre-symptomatic mouse models.
    Evsyukov V, Domanskyi A, Bierhoff H, Gispert S, Mustafa R, Schlaudraff F, Liss B, Parlato R
    Dis Model Mech 2017, 10(5), 633-43