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D-Index & Metrics

Biology and Biochemistry

D-Index
103
Citations
39975
World Ranking
1310
National Ranking
767

Overview

James W. Putney is affiliated with the National Institutes of Health in the United States. Their research activity spans multiple fields within biological sciences, particularly focusing on biochemistry, genetics, molecular biology, and neuroscience.

Their main fields of study include:

  • Biochemistry, Genetics and Molecular Biology
  • Neuroscience

Within these areas, subfields investigated by Putney encompass biophysics, molecular biology, and cognitive neuroscience. The scientist's research topics concentrate notably on:

  • Cell Image Analysis Techniques
  • Single-cell and spatial transcriptomics
  • Neural dynamics and brain function

Among their recent publications is a paper titled "Multiscale imaging of basal cell dynamics in the functionally mature mammary gland", published in 2020 in the Proceedings of the National Academy of Sciences. This paper has been cited 57 times and includes contributions from co-authors Alexander J. Stevenson, Gilles Vanwalleghem, Teneale A. Stewart, Nicholas D. Condon, and Bethan Lloyd-Lewis.

Frequent collaborators in their research include:

  • Alexander J. Stevenson
  • Gilles Vanwalleghem
  • Teneale A. Stewart
  • Nicholas D. Condon
  • Bethan Lloyd-Lewis

The primary venue for their publications is the Proceedings of the National Academy of Sciences, where they have contributed at least one paper. Putney's research integrates cutting-edge techniques in imaging and transcriptomics with a focus on cell biology and brain function, indicative of an interdisciplinary approach combining experimental and analytical methodologies.

Best Publications

  • A model for receptor-regulated calcium entry

    James W. Putney

  • Store-operated calcium channels.

    Anant B. Parekh;James W. Putney

  • Activation of calcium entry by the tumor promoter thapsigargin in parotid acinar cells. Evidence that an intracellular calcium pool and not an inositol phosphate regulates calcium fluxes at the plasma membrane.

    H Takemura;A R Hughes;O Thastrup;J W Putney

  • Mechanisms of capacitative calcium entry

    James W. Putney;Lisa M. Broad;Franz-Josef Braun;Jean-Philippe Lievremont

  • The Inositol Phosphate-Calcium Signaling System in Nonexcitable Cells

    James W. Putney;Gary St. J. Bird

  • The second messenger linking receptor activation to internal Ca release in liver

    Gillian M. Burgess;Philip P. Godfrey;Jerry S. McKinney;Michael J. Berridge

  • Large Store-operated Calcium Selective Currents Due to Co-expression of Orai1 or Orai2 with the Intracellular Calcium Sensor, Stim1

    Jason C. Mercer;Wayne I. DeHaven;Jeremy T. Smyth;Barbara Wedel

  • The signal for capacitative calcium entry

    James W. Putney;Gary St. J. Bird

  • SPATIAL AND TEMPORAL ASPECTS OF CELLULAR CALCIUM SIGNALING

    Andrew P. Thomas;Gary St. J. Bird;György Hajnóczky;Lawrence D. Robb-Gaspers

  • Capacitative calcium entry channels.

    James W. Putney;Richard R. McKay

  • Defective mast cell effector functions in mice lacking the CRACM1 pore subunit of store-operated calcium release-activated calcium channels.

    Monika Vig;Wayne I DeHaven;Gary S Bird;James M Billingsley

  • STIM1 Is a MT-Plus-End-Tracking Protein Involved in Remodeling of the ER

    Ilya Grigoriev;Susana Montenegro Gouveia;Babet van der Vaart;Jeroen Demmers

  • The mammalian TRPC cation channels

    Guillermo Vazquez;Barbara J. Wedel;Omar Aziz;Mohamed Trebak

  • Uptake and intracellular sequestration of divalent cations in resting and methacholine-stimulated mouse lacrimal acinar cells. Dissociation by Sr2+ and Ba2+ of agonist-stimulated divalent cation entry from the refilling of the agonist-sensitive intracellular pool.

    Chiu-Yin Kwan;J. W. Putney

  • A saturable receptor for 32P-inositol-1,4,5-triphosphate in hepatocytes and neutrophils.

    András Spät;András Spät;Peter G. Bradford;Jerry S. McKinney;Ronald P. Rubin

  • Activation and regulation of store‐operated calcium entry

    Jeremy T. Smyth;Sung-Yong Hwang;Takuro Tomita;Wayne I. DeHaven

  • Induction of epithelial-mesenchymal transition (EMT) in breast cancer cells is calcium signal dependent

    Felicity M. Davis;Iman Azimi;Richard A. Faville;Amelia A. Peters

  • Comparison of Human TRPC3 Channels in Receptor-activated and Store-operated Modes DIFFERENTIAL SENSITIVITY TO CHANNEL BLOCKERS SUGGESTS FUNDAMENTAL DIFFERENCES IN CHANNEL COMPOSITION

    Mohamed Trebak;Gary St. J. Bird;Richard R. McKay;James W. Putney

  • TRPC channels function independently of STIM1 and Orai1

    Wayne I. DeHaven;Bertina F. Jones;John G. Petranka;Jeremy T. Smyth

  • Role of the phospholipase C-inositol 1,4,5-trisphosphate pathway in calcium release-activated calcium current and capacitative calcium entry.

    Lisa M. Broad;Franz-Josef Braun;Jean-Philippe Lievremont;Gary St. J. Bird

Frequent Co-Authors

Gary S. Bird
Gary S. Bird National Institutes of Health
Mohamed Trebak
Mohamed Trebak Pennsylvania State University
Colin W. Taylor
Colin W. Taylor University of Cambridge
Stephen B. Shears
Stephen B. Shears National Institutes of Health
Motohiro Nishida
Motohiro Nishida Kyushu University
Gregory R. Monteith
Gregory R. Monteith University of Queensland
Michael J. Berridge
Michael J. Berridge Babraham Institute
Robin F. Irvine
Robin F. Irvine University of Cambridge
Ethan K. Scott
Ethan K. Scott University of Queensland
Geoffrey J. Goodhill
Geoffrey J. Goodhill Washington University in St. Louis

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