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Molecular Biology

D-Index
46
Citations
39809
World Ranking
2764
National Ranking
1330

Overview

Hilary A. Coller is affiliated with the University of California, Los Angeles in the United States. Their research spans various areas within biochemistry, genetics, and molecular biology, with a total of 40 publications in these fields. Subfields prominently covered include molecular biology, physiology, biomedical engineering, safety research, and cancer research.

Coller's research has explored multiple main topics, including:

  • Career Development and Diversity
  • Higher Education Research Studies
  • Genomics and Chromatin Dynamics
  • Telomeres, Telomerase, and Senescence
  • RNA Research and Splicing
  • Genetics, Aging, and Longevity in Model Organisms
  • Adipose Tissue and Metabolism

The scientist's recent papers include:

  • "Wearable microneedle-based electrochemical aptamer biosensing for precision dosing of drugs with narrow therapeutic windows," 2022, Science Advances
  • "Soft strain-insensitive bioelectronics featuring brittle materials," 2022, Science
  • ""How Do We Do This at a Distance?!" A Descriptive Study of Remote Undergraduate Research Programs during COVID-19," 2022, CBE-Life Sciences Education
  • "Methylation of histone 4's lysine 20: a critical analysis of the state of the field," 2020, Physiological Genomics
  • "Is There a Histone Code for Cellular Quiescence?," 2021, Frontiers in Cell and Developmental Biology

Frequent publication venues for Coller's work include:

  • Physiological Genomics
  • bioRxiv (Cold Spring Harbor Laboratory)
  • CBE-Life Sciences Education
  • American Journal of Physiology-Lung Cellular and Molecular Physiology
  • Journal of Visualized Experiments

Coller collaborates regularly with several co-authors, such as:

  • Mithun Mitra
  • Kaiser Atai
  • David Jelínek
  • Zhengyang Sun
  • Olivia A. Erickson

Best Publications

  • Molecular classification of cancer: class discovery and class prediction by gene expression monitoring.

    T. R. Golub;T. R. Golub;D. K. Slonim;P. Tamayo;C. Huard

  • Guidelines for the use and interpretation of assays for monitoring autophagy

    Daniel J. Klionsky;Fabio C. Abdalla;Hagai Abeliovich;Robert T. Abraham

  • The Common Feature of Leukemia-Associated IDH1 and IDH2 Mutations Is a Neomorphic Enzyme Activity Converting α-Ketoglutarate to 2-Hydroxyglutarate

    Patrick S. Ward;Jay Patel;David R. Wise;Omar Abdel-Wahab

  • Activated Ras requires autophagy to maintain oxidative metabolism and tumorigenesis

    Jessie Yanxiang Guo;Hsin Yi Chen;Robin Mathew;Jing Fan

  • Expression analysis with oligonucleotide microarrays reveals that MYC regulates genes involved in growth, cell cycle, signaling, and adhesion

    Hilary A. Coller;Carla Grandori;Pablo Tamayo;Trent Colbert

  • Chemosensitivity prediction by transcriptional profiling

    Jane E. Staunton;Donna K. Slonim;Donna K. Slonim;Hilary A. Coller;Hilary A. Coller;Pablo Tamayo

  • A search for conserved sequences in coding regions reveals that the let-7 microRNA targets Dicer within its coding sequence

    Joshua J. Forman;Aster Legesse-Miller;Hilary A. Coller

  • A New Description of Cellular Quiescence

    Hilary A Coller;Liyun Sang;Liyun Sang;James M Roberts

  • Telomerase modulates expression of growth-controlling genes and enhances cell proliferation

    Laura L. Smith;Hilary A. Coller;James M. Roberts

  • Dynamics of the Cellular Metabolome during Human Cytomegalovirus Infection

    Joshua Munger;Sunil U Bajad;Hilary A Coller;Thomas Shenk

  • The hexosamine biosynthetic pathway couples growth factor-induced glutamine uptake to glucose metabolism

    Kathryn E. Wellen;Chao Lu;Anthony Mancuso;Johanna M.S. Lemons

  • Quiescent Fibroblasts Exhibit High Metabolic Activity

    Johanna M. S. Lemons;Xiao-Jiang Feng;Bryson D. Bennett;Aster Legesse-Miller

  • Control of the reversibility of cellular quiescence by the transcriptional repressor HES1.

    Liyun Sang;Hilary A. Coller;James M. Roberts;James M. Roberts

  • High frequency of homoplasmic mitochondrial DNA mutations in human tumors can be explained without selection

    Hilary A. Coller;Konstantin Khrapko;Natalya D. Bodyak;Ekaterina Nekhaeva

  • Lactate dehydrogenase activity drives hair follicle stem cell activation

    Aimee Flores;John Schell;Abigail S. Krall;David Jelinek

  • Staying alive: metabolic adaptations to quiescence.

    James R. Valcourt;Johanna M.S. Lemons;Erin M. Haley;Mina Kojima

  • Mitochondrial mutational spectra in human cells and tissues

    Konstantin Khrapko;Hilary A. Coller;Paulo C. André;Xiao Cheng Li

  • Exploring the human genome with functional maps

    Curtis Huttenhower;Erin M. Haley;Matthew A. Hibbs;Vanessa Dumeaux

  • CELL-BY-CELL SCANNING OF WHOLE MITOCHONDRIAL GENOMES IN AGED HUMAN HEART REVEALS A SIGNIFICANT FRACTION OF MYOCYTES WITH CLONALLY EXPANDED DELETIONS

    Konstantin Khrapko;Konstantin Khrapko;Natalya Bodyak;Natalya Bodyak;William G. Thilly;Nathalie J. van Orsouw

  • Extracellular Matrix Remodeling Regulates Glucose Metabolism through TXNIP Destabilization

    William J. Sullivan;Peter J. Mullen;Ernst W. Schmid;Aimee A. Flores

Frequent Co-Authors

Todd R. Golub
Todd R. Golub Harvard University
James M. Roberts
James M. Roberts Lumen Bioscience
Joshua D. Rabinowitz
Joshua D. Rabinowitz Princeton University
Pablo Tamayo
Pablo Tamayo University of California, San Diego
Curtis Huttenhower
Curtis Huttenhower Harvard University
Eric S. Lander
Eric S. Lander Broad Institute
Craig B. Thompson
Craig B. Thompson Memorial Sloan Kettering Cancer Center
Jan-Marino Ramirez
Jan-Marino Ramirez University of Washington
Andrea Ballabio
Andrea Ballabio Baylor College of Medicine

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