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Chemistry

D-Index
56
Citations
8846
World Ranking
11892
National Ranking
3194

Biology and Biochemistry

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57
Citations
9153
World Ranking
14067
National Ranking
5933

Overview

Daniel J. Kosman is affiliated with the University at Buffalo, State University of New York in the United States. Their research primarily spans the fields of Medicine and Biochemistry, Genetics and Molecular Biology, with notable contributions in subfields including Molecular Biology, Cellular and Molecular Neuroscience, Neurology, Nutrition and Dietetics, and Hematology.

Their scholarly work addresses several interconnected topics, notably Genetic Neurodegenerative Diseases, Mitochondrial Function and Pathology, Trace Elements in Health, Iron Metabolism and Disorders, Hemoglobinopathies and Related Disorders, Parkinson's Disease Mechanisms and Treatments, and Enzyme-mediated dye degradation.

Key publications by Daniel J. Kosman include:

  • Molecular Defects in Friedreich's Ataxia: Convergence of Oxidative Stress and Cytoskeletal Abnormalities, 2020, Frontiers in Molecular Biosciences
  • A holistic view of mammalian (vertebrate) cellular iron uptake, 2020, Metallomics
  • Tuning the Type 1 Reduction Potential of Multicopper Oxidases: Uncoupling the Effects of Electrostatics and H-Bonding to Histidine Ligands, 2023, Journal of the American Chemical Society
  • The iron chelator, PBT434, modulates transcellular iron trafficking in brain microvascular endothelial cells, 2021, PLoS ONE
  • Aberrant Cerebral Iron Trafficking Co-morbid With Chronic Inflammation: Molecular Mechanisms and Pharmacologic Intervention, 2022, Frontiers in Neurology

The scientist frequently collaborates with other researchers, with notable coauthors including Frances M. Smith, Danielle K. Bailey, Margaret Bradbury, Shaina L. Rosenblum, and Rhudwan Nihlawi.

Daniel J. Kosman publishes extensively in several scientific journals. The most common venues for their research include the Journal of Biological Chemistry, Frontiers in Molecular Biosciences, Metallomics, Journal of the American Chemical Society, and Free Radical Biology and Medicine.

Best Publications

  • Evidence for Cu(II) Reduction as a Component of Copper Uptake by Saccharomyces cerevisiae

    Richard Hassett;Daniel J. Kosman

  • Molecular mechanisms of iron uptake in fungi

    Daniel J. Kosman

  • A widespread transposable element masks expression of a yeast copper transport gene.

    S. A. B. Knight;S. Labbe;L. F. Kwon;D. J. Kosman

  • The yeast copper/zinc superoxide dismutase and the pentose phosphate pathway play overlapping roles in oxidative stress protection.

    Kimberly Hudak Slekar;Daniel J. Kosman;Valeria Cizewski Culotta

  • Shall We Dance? How A Multicopper Oxidase Chooses Its Electron Transfer Partner

    Liliana Quintanar;Christopher Stoj;Alexander B. Taylor;P. John Hart

  • Molecular genetics of superoxide dismutases in yeasts and related fungi.

    Edith Butler Gralla;Daniel J. Kosman

  • Homeostatic regulation of copper uptake in yeast via direct binding of MAC1 protein to upstream regulatory sequences of FRE1 and CTR1.

    Yuko Yamaguchi-Iwai;Mihaela Serpe;David Haile;Weimin Yang

  • The copper-iron connection in biology: structure of the metallo-oxidase Fet3p.

    Alexander B. Taylor;Christopher S. Stoj;Lynn Ziegler;Daniel J. Kosman

  • Multicopper oxidases: a workshop on copper coordination chemistry, electron transfer, and metallophysiology

    Daniel J. Kosman

  • The Fe(II) permease Fet4p functions as a low affinity copper transporter and supports normal copper trafficking in Saccharomyces cerevisiae.

    Richard Hassett;David R. Dix;David J. Eide;Daniel J. Kosman

  • Cuprous oxidase activity of yeast Fet3p and human ceruloplasmin: implication for function.

    Christopher Stoj;Daniel J Kosman

  • Iron Source Preference and Regulation of Iron Uptake in Cryptococcus neoformans

    Won Hee Jung;Anita Sham;Tianshun Lian;Arvinder Singh

  • Redox Cycling in Iron Uptake, Efflux, and Trafficking

    Daniel J. Kosman

  • Iron transport across the blood–brain barrier: development, neurovascular regulation and cerebral amyloid angiopathy

    Ryan C. McCarthy;Daniel J. Kosman

  • sAPP modulates iron efflux from brain microvascular endothelial cells by stabilizing the ferrous iron exporter ferroportin

    Ryan C McCarthy;Yun-Hee Park;Daniel J Kosman

  • Spectral and kinetic properties of the Fet3 protein from Saccharomyces cerevisiae, a multinuclear copper ferroxidase enzyme.

    Richard F. Hassett;Daniel S. Yuan;Daniel J. Kosman

  • Glial cell ceruloplasmin and hepcidin differentially regulate iron efflux from brain microvascular endothelial cells.

    Ryan C. McCarthy;Daniel J. Kosman

  • Evidence for iron channeling in the Fet3p-Ftr1p high-affinity iron uptake complex in the yeast plasma membrane

    Ernest Y Kwok;Scott Severance;Daniel J Kosman

  • Regulation of high affinity iron uptake in the yeast Saccharomyces cerevisiae. Role of dioxygen and Fe.

    Richard F. Hassett;Annette M. Romeo;Daniel J. Kosman

  • The molecular properties of the copper enzyme galactose oxidase

    Daniel J. Kosman;Murray J. Ettinger;Ronald E. Weiner;Edward J. Massaro

Frequent Co-Authors

Edward I. Solomon
Edward I. Solomon Stanford University
Eric C. Chang
Eric C. Chang Shanghai Jiao Tong University
P. John Hart
P. John Hart The University of Texas Health Science Center at San Antonio
Britt Hedman
Britt Hedman SLAC National Accelerator Laboratory
Keith O. Hodgson
Keith O. Hodgson Stanford University
Dennis J. Thiele
Dennis J. Thiele Sisu Pharma
Pernilla Wittung-Stafshede
Pernilla Wittung-Stafshede Chalmers University of Technology
James W. Kronstad
James W. Kronstad University of British Columbia
Andrew Dancis
Andrew Dancis University of Pennsylvania
David Rekosh
David Rekosh University of Virginia

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