World's Best Scientists 2026 revealed!

D-Index & Metrics

Genetics

D-Index
51
Citations
13991
World Ranking
3839
National Ranking
1657

Overview

Abby F. Dernburg is affiliated with the University of California, Berkeley in the United States. Their research primarily focuses on the field of Biochemistry, Genetics and Molecular Biology, with a significant concentration in Molecular Biology, Aging, and Cell Biology as subfields.

Their recent publications reflect a range of topics and research areas. Notable papers include:

  • Complete genomic and epigenetic maps of human centromeres, 2022, Science
  • How to build the virtual cell with artificial intelligence: Priorities and opportunities, 2024, Cell
  • Crossover patterning through kinase-regulated condensation and coarsening of recombination nodules, 2021, bioRxiv (Cold Spring Harbor Laboratory)
  • Analysis of meiosis in Pristionchus pacificus reveals plasticity in homolog pairing and synapsis in the nematode lineage, 2021, eLife
  • How and Why Chromosomes Interact with the Cytoskeleton during Meiosis, 2022, Genes

Their frequent co-authors include Liangyu Zhang, Chenshu Liu, Weston Stauffer, Hyung Jun Kim, and Zhouliang Yu. Collaboration with these colleagues suggests a strong network within molecular biology and genetics research communities.

Publication venues associated with their work show a consistent presence in high-profile and specialized journals, including:

  • bioRxiv (Cold Spring Harbor Laboratory)
  • Science Advances
  • eLife
  • Science
  • Cell

Abby F. Dernburg's research spans several main topics, notably:

  • DNA Repair Mechanisms
  • Genetics, Aging, and Longevity in Model Organisms
  • Photosynthetic Processes and Mechanisms
  • Microtubule and mitosis dynamics
  • Nuclear Structure and Function
  • CRISPR and Genetic Engineering
  • Chromosomal and Genetic Variations

The diversity of topics indicates expertise in both fundamental and applied aspects of molecular biology and genetics, with significant attention to cellular processes, aging, and genetic regulation. The range of publications, collaborations, and research scope position this scientist within an active framework of contemporary biological research.

Best Publications

  • Integrative analysis of the Caenorhabditis elegans genome by the modENCODE project

    Mark B. Gerstein;Zhi John Lu;Eric L. Van Nostrand;Chao Cheng

  • Meiotic recombination in C. elegans initiates by a conserved mechanism and is dispensable for homologous chromosome synapsis.

    Abby F Dernburg;Kent McDonald;Gary Moulder;Robert Barstead

  • Interphase chromosomes undergo constrained diffusional motion in living cells.

    W.F Marshall;A Straight;J.F Marko;J Swedlow

  • The auxin-inducible degradation (AID) system enables versatile conditional protein depletion in C. elegans.

    Liangyu Zhang;Jordan D. Ward;Ze Cheng;Abby F. Dernburg

  • Perturbation of Nuclear Architecture by Long-Distance Chromosome Interactions

    Abby F. Dernburg;Karl W. Broman;Jennifer C. Fung;Wallace F. Marshall

  • Direct Evidence of a Role for Heterochromatin in Meiotic Chromosome Segregation

    Abby F. Dernburg;John W. Sedat;R.Scott Hawley

  • Comparative analysis of metazoan chromatin organization

    Joshua Wing Kei Ho;Joshua Wing Kei Ho;Youngsook L. Jung;Tao Liu;Tao Liu;Burak Han Alver

  • X-chromosome silencing in the germline of C. elegans.

    William G. Kelly;Christine E. Schaner;Abby F. Dernburg;Min-Ho Lee

  • Chromosome Sites Play Dual Roles to Establish Homologous Synapsis during Meiosis in C. elegans

    Amy J. MacQueen;Carolyn M. Phillips;Needhi Bhalla;Needhi Bhalla;Pinky Weiser

  • HIM-8 Binds to the X Chromosome Pairing Center and Mediates Chromosome-Specific Meiotic Synapsis

    Carolyn M. Phillips;Chihunt Wong;Needhi Bhalla;Peter M. Carlton

  • Broad chromosomal domains of histone modification patterns in C. elegans

    Tao Liu;Andreas Rechtsteiner;Thea A. Egelhofer;Anne Vielle

  • Cytoskeletal Forces Span the Nuclear Envelope to Coordinate Meiotic Chromosome Pairing and Synapsis

    Aya Sato;Berith Isaac;Berith Isaac;Carolyn M. Phillips;Regina Rillo;Regina Rillo;Regina Rillo

  • Caenorhabditis elegans msh-5 is required for both normal and radiation-induced meiotic crossing over but not for completion of meiosis.

    Karen O. Kelly;Abby F. Dernburg;Gillian M. Stanfield;Anne M. Villeneuve

  • Here, There, and Everywhere: Kinetochore Function on Holocentric Chromosomes

    Abby F. Dernburg

  • Specific interactions of chromatin with the nuclear envelope: positional determination within the nucleus in Drosophila melanogaster.

    Wallace F. Marshall;Abby F. Dernburg;Brian Harmon;David A. Agard

  • A family of zinc-finger proteins is required for chromosome-specific pairing and synapsis during meiosis in C. elegans.

    Carolyn M. Phillips;Abby F. Dernburg;Abby F. Dernburg

  • A Conserved Checkpoint Monitors Meiotic Chromosome Synapsis in Caenorhabditis elegans

    Needhi Bhalla;Abby F. Dernburg;Abby F. Dernburg

  • The synaptonemal complex has liquid crystalline properties and spatially regulates meiotic recombination factors.

    Ofer Rog;Ofer Rog;Ofer Rog;Simone Köhler;Simone Köhler;Abby F Dernburg

  • The SUN rises on meiotic chromosome dynamics.

    Yasushi Hiraoka;Yasushi Hiraoka;Abby F. Dernburg;Abby F. Dernburg

  • Transgene-mediated cosuppression in the C. elegans germ line

    Abby F. Dernburg;Jonathan Zalevsky;Mónica P. Colaiácovo;Anne M. Villeneuve

Frequent Co-Authors

Anne M. Villeneuve
Anne M. Villeneuve Stanford University
John W. Sedat
John W. Sedat University of California, San Francisco
Julie Ahringer
Julie Ahringer University of Cambridge
David A. Agard
David A. Agard University of California, San Francisco
Wallace F. Marshall
Wallace F. Marshall University of California, San Francisco
Yasushi Hiraoka
Yasushi Hiraoka Osaka University
Gary H. Karpen
Gary H. Karpen University of California, Berkeley
Susan Strome
Susan Strome University of California, Santa Cruz
Jason D. Lieb
Jason D. Lieb University of Chicago
Bradley E. Bernstein
Bradley E. Bernstein Broad Institute

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