World's Best Scientists 2026 revealed!

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Genetics

D-Index
92
Citations
61038
World Ranking
984
National Ranking
484

Molecular Biology

D-Index
92
Citations
61038
World Ranking
689
National Ranking
376

Research.com Recognitions

  • 2006 - Fellow of Alfred P. Sloan Foundation

Overview

Anne Brunet is affiliated with Stanford University in the United States and has developed a research profile primarily within the fields of Biochemistry, Genetics and Molecular Biology. Their work encompasses a broad range of studies with a predominant focus on Molecular Biology, Nature and Landscape Conservation, Aging, Developmental Neuroscience, and Neurology.

The researcher's contributions include extensive investigations into genetics, aging, and longevity in model organisms, as well as mechanisms of neurogenesis, neuroplasticity, neuroinflammation, and neurodegeneration. Other significant topics of interest involve single-cell and spatial transcriptomics, pluripotent stem cell research, and RNA research and splicing.

Recent publication venues where Anne Brunet has contributed multiple works include bioRxiv (Cold Spring Harbor Laboratory), Nature Aging, Cold Spring Harbor Protocols, Innovation in Aging, and Cell Stem Cell.

Anne Brunet's recent scholarly output features notable papers such as:

  • "Personal aging markers and ageotypes revealed by deep longitudinal profiling", 2020, Nature Medicine
  • "Ageing and rejuvenation of tissue stem cells and their niches", 2022, Nature Reviews Molecular Cell Biology
  • "Aging and Rejuvenation of Neural Stem Cells and Their Niches", 2020, Cell Stem Cell
  • "Changes in regeneration-responsive enhancers shape regenerative capacities in vertebrates", 2020, Science
  • "Cell-type-specific aging clocks to quantify aging and rejuvenation in neurogenic regions of the brain", 2022, Nature Aging

The scientist collaborates regularly with a group of frequent co-authors including Thomas A. Rando, Eric Sun, Param Priya Singh, Paloma Navarro Negredo, and Matthew T. Buckley, with whom they have co-authored numerous publications.

Anne Brunet has been recognized with the award of Fellow of the Alfred P. Sloan Foundation in 2006.

Best Publications

  • Akt Promotes Cell Survival by Phosphorylating and Inhibiting a Forkhead Transcription Factor

    Anne Brunet;Azad Bonni;Michael J Zigmond;Michael Z Lin

  • Cellular survival: a play in three Akts

    Sandeep Robert Datta;Anne Brunet;Michael E. Greenberg

  • Stress-Dependent Regulation of FOXO Transcription Factors by the SIRT1 Deacetylase

    Anne Brunet;Lora B. Sweeney;J. Fitzhugh Sturgill;Katrin F. Chua

  • Cell survival promoted by the Ras-MAPK signaling pathway by transcription-dependent and -independent mechanisms.

    Azad Bonni;Anne Brunet;Anne E. West;Sandeep Robert Datta

  • Geroscience: Linking Aging to Chronic Disease

    Brian K. Kennedy;Shelley L. Berger;Anne Brunet;Judith Campisi;Judith Campisi

  • Cyclin D1 Expression Is Regulated Positively by the p42/p44MAPK and Negatively by the p38/HOGMAPK Pathway

    Josée N. Lavoie;Gilles L'Allemain;Anne Brunet;Rolf Müller

  • FOXO transcription factors at the interface between longevity and tumor suppression.

    Eric L Greer;Anne Brunet

  • Transcription-dependent and -independent control of neuronal survival by the PI3K-Akt signaling pathway

    Anne Brunet;Sandeep Robert Datta;Michael E Greenberg

  • The FoxO code

    D R Calnan;A Brunet

  • Protein Kinase SGK Mediates Survival Signals by Phosphorylating the Forkhead Transcription Factor FKHRL1 (FOXO3a)

    Anne Brunet;Jongsun Park;Hien Tran;Linda S. Hu

  • DNA Repair Pathway Stimulated by the Forkhead Transcription Factor FOXO3a Through the Gadd45 Protein

    Hien Tran;Anne Brunet;Jill M. Grenier;Sandeep R. Datta

  • The Energy Sensor AMP-activated Protein Kinase Directly Regulates the Mammalian FOXO3 Transcription Factor

    Eric L. Greer;Philip R. Oskoui;Max R. Banko;Jay M. Maniar

  • AMPK: An Energy-Sensing Pathway with Multiple Inputs and Outputs.

    D. Grahame Hardie;Bethany E. Schaffer;Anne Brunet

  • An AMPK-FOXO pathway mediates longevity induced by a novel method of dietary restriction in C. elegans.

    Eric L. Greer;Dara Dowlatshahi;Max R. Banko;Judit Villén

  • Growth factors induce nuclear translocation of MAP kinases (p42mapk and p44mapk) but not of their activator MAP kinase kinase (p45mapkk) in fibroblasts

    P Lenormand;C Sardet;G Pagès;G L'Allemain

  • FOXO transcription factors.

    Matthew E. Carter;Anne Brunet

  • Nuclear translocation of p42/p44 mitogen‐activated protein kinase is required for growth factor‐induced gene expression and cell cycle entry

    Anne Brunet;Danièle Roux;Philippe Lenormand;Stephen Dowd

  • 14-3-3 transits to the nucleus and participates in dynamic nucleocytoplasmic transport.

    Anne Brunet;Fumihiko Kanai;Fumihiko Kanai;Justine Stehn;Jian Xu

  • Transgenerational epigenetic inheritance of longevity in Caenorhabditis elegans

    Eric L. Greer;Travis J. Maures;Duygu Ucar;Anna G. Hauswirth

  • FoxO transcription factors in the maintenance of cellular homeostasis during aging

    Dervis A M Salih;Anne Brunet

Frequent Co-Authors

Thomas A. Rando
Thomas A. Rando Stanford University
Michael E. Greenberg
Michael E. Greenberg Harvard University
Jacques Pouysségur
Jacques Pouysségur Scientific Centre of Monaco
Anshul Kundaje
Anshul Kundaje Stanford University
Marius Wernig
Marius Wernig Stanford University
Steven P. Gygi
Steven P. Gygi Harvard University
Michael Snyder
Michael Snyder Stanford University
Steven E. Artandi
Steven E. Artandi Stanford University
Kei Sakamoto
Kei Sakamoto University of Copenhagen

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