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D-Index & Metrics

Biology and Biochemistry

D-Index
49
Citations
10868
World Ranking
17930
National Ranking
515

Overview

Natasha L. Harvey is affiliated with the University of South Australia in Australia. Their research contributions primarily span the fields of Medicine and Biochemistry, Genetics and Molecular Biology. They have published extensively in several subfields including Molecular Biology, Oncology, Cell Biology, Surgery, and Genetics.

The main topics of Natasha L. Harvey's work include:

  • Lymphatic System and Diseases
  • Hippo pathway signaling and YAP/TAZ
  • Vascular Malformations and Hemangiomas
  • Developmental Biology and Gene Regulation
  • Lymphatic Disorders and Treatments
  • Congenital heart defects research
  • Zebrafish Biomedical Research Applications

Natasha L. Harvey has frequently published in the following venues:

  • bioRxiv (Cold Spring Harbor Laboratory)
  • Human Mutation
  • Nature Communications
  • Development
  • Cell

Selected recent papers authored or co-authored by Natasha L. Harvey include:

  • The Lymphatic Vasculature in the 21st Century: Novel Functional Roles in Homeostasis and Disease, 2020, Cell
  • Mesenteric lymphatic dysfunction promotes insulin resistance and represents a potential treatment target in obesity, 2021, Nature Metabolism
  • MyoD-family inhibitor proteins act as auxiliary subunits of Piezo channels, 2023, Science
  • GATA2 deficiency syndrome: A decade of discovery, 2021, Human Mutation
  • Regulation of VEGFR Signalling in Lymphatic Vascular Development and Disease: An Update, 2021, International Journal of Molecular Sciences

The scientist has collaborated regularly with several frequent co-authors, including:

  • Jan Kazenwadel
  • Genevieve A. Secker
  • Benjamin M. Hogan
  • Renae Skoczylas
  • Hamish S. Scott

Best Publications

  • An essential role for Prox1 in the induction of the lymphatic endothelial cell phenotype

    Jeffrey T. Wigle;Jeffrey T. Wigle;Natasha Harvey;Michael Detmar;Irina Lagutina

  • T1α/podoplanin deficiency disrupts normal lymphatic vasculature formation and causes lymphedema

    Vivien Schacht;Maria I. Ramirez;Young Kwon Hong;Satoshi Hirakawa

  • Prox1 is a master control gene in the program specifying lymphatic endothelial cell fate.

    Young Kwon Hong;Natasha Harvey;Yun Hee Noh;Vivien Schacht

  • The Lymphatic Vasculature in the 21st Century: Novel Functional Roles in Homeostasis and Disease

    Guillermo Oliver;Jonathan Kipnis;Gwendalyn J. Randolph;Natasha L. Harvey

  • Lymphatic vascular defects promoted by Prox1 haploinsufficiency cause adult-onset obesity

    Natasha L Harvey;R Sathish Srinivasan;Miriam E Dillard;Nicole C Johnson

  • Identification of Vascular Lineage-Specific Genes by Transcriptional Profiling of Isolated Blood Vascular and Lymphatic Endothelial Cells

    Satoshi Hirakawa;Young-Kwon Hong;Natasha Harvey;Vivien Schacht

  • VE-Cadherin-Cre-recombinase transgenic mouse: a tool for lineage analysis and gene deletion in endothelial cells.

    Jackelyn A. Alva;Ann C. Zovein;Arnaud Monvoisin;Thomas Murphy

  • Lymphatic endothelial cell identity is reversible and its maintenance requires Prox1 activity

    Nicole C. Johnson;Miriam E. Dillard;Peter Baluk;Donald M. McDonald

  • Loss-of-function germline GATA2 mutations in patients with MDS/AML or MonoMAC syndrome and primary lymphedema reveal a key role for GATA2 in the lymphatic vasculature

    Jan Kazenwadel;Genevieve A. Secker;Yajuan J. Liu;Jill A. Rosenfeld

  • Prodomain-dependent nuclear localization of the caspase-2 (Nedd2) precursor. A novel function for a caspase prodomain.

    Paul A. Colussi;Natasha L. Harvey;Sharad Kumar

  • Caspase-2 is not required for thymocyte or neuronal apoptosis even though cleavage of caspase-2 is dependent on both Apaf-1 and caspase-9.

    L A O'Reilly;P Ekert;N Harvey;V Marsden

  • GATA2 is required for lymphatic vessel valve development and maintenance

    Jan Kazenwadel;Kelly L. Betterman;Chan-Eng Chong;Philippa H. Stokes

  • Role of multiple cellular proteases in the execution of programmed cell death.

    Sharad Kumar;Natasha L Harvey

  • Prox1 expression is negatively regulated by miR-181 in endothelial cells.

    Jan Kazenwadel;Michael Z. Michael;Natasha L. Harvey;Natasha L. Harvey

  • Functional activation of Nedd2/ICH-1 (caspase-2) is an early process in apoptosis.

    Natasha L. Harvey;Alison J. Butt;Sharad Kumar

  • Macrophages define dermal lymphatic vessel calibre during development by regulating lymphatic endothelial cell proliferation.

    Emma J. Gordon;Sujata Rao;Jeffrey W. Pollard;Stephen L. Nutt

  • Getting out and about: the emergence and morphogenesis of the vertebrate lymphatic vasculature

    Katarzyna Koltowska;Kelly L. Betterman;Natasha L. Harvey;Natasha L. Harvey;Benjamin M. Hogan

  • The Link between Lymphatic Function and Adipose Biology

    Natasha L. Harvey

  • Prox1 maintains muscle structure and growth in the developing heart

    Catherine A. Risebro;Richelle G. Searles;Athalie A. D. Melville;Elisabeth Ehler

  • Dimerization and Autoprocessing of the Nedd2 (Caspase-2) Precursor Requires both the Prodomain and the Carboxyl-terminal Regions

    Alison J. Butt;Natasha L. Harvey;Gayathri Parasivam;Sharad Kumar

Frequent Co-Authors

Benjamin M. Hogan
Benjamin M. Hogan University of Melbourne
Sharad Kumar
Sharad Kumar University of Adelaide
Guillermo Oliver
Guillermo Oliver Northwestern University
Steven A. Stacker
Steven A. Stacker Peter MacCallum Cancer Centre
Young-Kwon Hong
Young-Kwon Hong University of Southern California
Michael Detmar
Michael Detmar ETH Zurich
Hamish S. Scott
Hamish S. Scott University of Adelaide
Kenneth R. Chien
Kenneth R. Chien Karolinska Institute
Elisabeth Ehler
Elisabeth Ehler King's College London
Peter Koopman
Peter Koopman University of Queensland

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