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Molecular Biology

D-Index
69
Citations
26437
World Ranking
1448
National Ranking
736

Overview

David M. Bodine is affiliated with the National Institutes of Health in the United States. Their research primarily focuses on biochemistry, genetics, and molecular biology, with a particular emphasis on molecular biology as evidenced by their body of work.

The scientist's published output includes numerous papers across various reputable journals and covers several main topics. These consist of:

  • RNA modifications and cancer
  • Genomics and chromatin dynamics
  • RNA and protein synthesis mechanisms
  • Hemoglobinopathies and related disorders
  • RNA research and splicing
  • Plant molecular biology research
  • Iron metabolism and disorders

David M. Bodine has authored or co-authored papers published in the following venues:

  • Nature
  • Blood
  • Molecular Cell
  • Glia
  • eLife

Recent papers with details of publication year and venue include:

  • "Expanded encyclopaedias of DNA elements in the human and mouse genomes," 2020, Nature
  • "Perspectives on ENCODE," 2020, Nature
  • "'Stripe' transcription factors provide accessibility to co-binding partners in mammalian genomes," 2022, Molecular Cell
  • "Author Correction: Expanded encyclopaedias of DNA elements in the human and mouse genomes," 2022, Nature
  • "Oligodendrocyte Slc48a1 (Hrg1) encodes a functional heme transporter required for myelin integrity," 2024, Glia

Frequent collaborators in their research include Reyes Acosta, Nicholas J. Addleman, Veena Afzal, Bronwen Aken, and Jennifer A. Akiyama. Each has co-authored at least four publications with David M. Bodine.

Best Publications

  • Bone marrow cells regenerate infarcted myocardium

    Donald Orlic;Jan Kajstura;Stefano Chimenti;Igor Jakoniuk

  • Mobilized bone marrow cells repair the infarcted heart, improving function and survival

    Donald Orlic;Jan Kajstura;Stefano Chimenti;Federica Limana

  • Transplanted adult bone marrow cells repair myocardial infarcts in mice.

    Donald Orlic;Jan Kajstura;Stefano Chimenti;David M. Bodine

  • Selection of drug-resistant bone marrow cells in vivo after retroviral transfer of human MDR1.

    Brian P. Sorrentino;Stephen J. Brandt;David Bodine;Michael Gottesman

  • Lhx2, a LIM homeobox gene, is required for eye, forebrain, and definitive erythrocyte development.

    Forbes D. Porter;John Drago;Yang Xu;Surindar S. Cheema

  • Helper virus induced T cell lymphoma in nonhuman primates after retroviral mediated gene transfer.

    R E Donahue;S W Kessler;D Bodine;K McDonagh

  • Characterization of Definitive Lymphohematopoietic Stem Cells in the Day 9 Murine Yolk Sac

    Mervin C Yoder;Kelly Hiatt;Parmesh Dutt;Pinku Mukherjee

  • Dysregulated interleukin 6 expression produces a syndrome resembling Castleman's disease in mice.

    S J Brandt;D M Bodine;C E Dunbar;A W Nienhuis

  • Bone marrow stem cells regenerate infarcted myocardium.

    Donald Orlic;Jan Kajstura;Stefano Chimenti;David M. Bodine

  • Wnt5a inhibits canonical Wnt signaling in hematopoietic stem cells and enhances repopulation

    Michael J. Nemeth;Lilia Topol;Stacie M. Anderson;Yingzi Yang

  • Combination of interleukins 3 and 6 preserves stem cell function in culture and enhances retrovirus-mediated gene transfer into hematopoietic stem cells

    David M. Bodine;Stefan Karlsson;Arthur W. Nienhuis

  • The fusion gene Cbfb-MYH11 blocks myeloid differentiation and predisposes mice to acute myelomonocytic leukaemia.

    Lucio H. Castilla;Lisa Garrett;Neeraj Adya;Donald Orlic

  • High-efficiency recovery of functional hematopoietic progenitor and stem cells from human cord blood cryopreserved for 15 years.

    Hal E. Broxmeyer;Edward F. Srour;Giao Hangoc;Scott Cooper

  • Long-term in vivo expression of a murine adenosine deaminase gene in rhesus monkey hematopoietic cells of multiple lineages after retroviral mediated gene transfer into CD34+ bone marrow cells.

    David M. Bodine;Tom Moritz;Robert E. Donahue;Barry D. Luskey

  • Purification and characterization of heterogeneous pluripotent hematopoietic stem cell populations expressing high levels of c-kit receptor

    Donald Orlic;Roxanne Fischer;Shin-lchi Nishikawa;Arthur W. Nienhuis

  • The level of mRNA encoding the amphotropic retrovirus receptor in mouse and human hematopoietic stem cells is low and correlates with the efficiency of retrovirus transduction

    Donald Orlic;Laurie J. Girard;Craig T. Jordan;Stacie M. Anderson

  • Identification and characterization of cell type-specific and ubiquitous chromatin regulatory structures in the human genome.

    Hualin Xi;Hennady P Shulha;Jane M Lin;Teresa R Vales

  • Pluripotent hematopoietic stem cells contain high levels of mRNA for c-kit, GATA-2, p45 NF-E2, and c-myb and low levels or no mRNA for c-fms and the receptors for granulocyte colony-stimulating factor and interleukins 5 and 7

    Donald Orlic;Stacie Anderson;Leslie G. Biesecker;Brian P. Sorrentino

  • Spectrin deficient inherited hemolytic anemias in the mouse: Characterization by spectrin synthesis and mRNA activity in reticulocytes

    David M. Bodine;Connie S. Birkenmeier;Jane E. Barker

  • Improved retroviral gene transfer into murine and Rhesus peripheral blood or bone marrow repopulating cells primed in vivo with stem cell factor and granulocyte colony-stimulating factor

    Cynthia E. Dunbar;Nancy E. Seidel;Sandra Doren;Stephanie Sellers

Frequent Co-Authors

Patrick G. Gallagher
Patrick G. Gallagher Yale University
Stacie M. Anderson
Stacie M. Anderson National Institutes of Health
Ross C. Hardison
Ross C. Hardison Pennsylvania State University
Cynthia E. Dunbar
Cynthia E. Dunbar National Institutes of Health
Mitchell J. Weiss
Mitchell J. Weiss St. Jude Children's Research Hospital
Arthur W. Nienhuis
Arthur W. Nienhuis St. Jude Children's Research Hospital
Gerd A. Blobel
Gerd A. Blobel Children's Hospital of Philadelphia
Jennifer M. Puck
Jennifer M. Puck University of California, San Francisco
Philip S. Low
Philip S. Low Purdue University West Lafayette
Harry L. Malech
Harry L. Malech National Institutes of Health

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