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Chemistry

D-Index
41
Citations
6822
World Ranking
17734
National Ranking
4330

Overview

Anthony Carruthers is affiliated with the University of Massachusetts Chan Medical School in the United States. Their research spans several areas within biochemistry, genetics, molecular biology, and neuroscience, reflecting a focus on both fundamental and applied aspects of molecular life sciences.

The scientist's main fields of study include:

  • Biochemistry, Genetics and Molecular Biology
  • Neuroscience

Their work further delves into specific subfields such as:

  • Molecular Biology
  • Cellular and Molecular Neuroscience
  • Clinical Biochemistry
  • Astronomy and Astrophysics

Research topics commonly addressed by Carruthers include:

  • Metabolism and Genetic Disorders
  • Mitochondrial Function and Pathology
  • Metabolomics and Mass Spectrometry Studies
  • Photoreceptor and Optogenetics Research
  • Origins and Evolution of Life
  • Neuroscience and Neuropharmacology Research

Among the recent publications attributed to Carruthers are:

  • MathiasGrote, Membranes to Molecular Machines: Active Matter and the Remaking of Life. Chicago: The University of Chicago Press, 2019, published in The FASEB Journal (2020)
  • Embracing Scientific Debate in Brain Metabolism, Journal of Neurochemistry (2025)

Carruthers has collaborated with several researchers across their projects, including:

  • Jens V. Andersen
  • Blanca I. Aldana
  • Lasse K. Bak
  • Kevin L. Behar
  • Karin Borges

The publication venues where Carruthers has frequently contributed are:

  • Journal of Neurochemistry
  • The FASEB Journal

Best Publications

  • Supply and demand in cerebral energy metabolism: the role of nutrient transporters

    Ian A Simpson;Anthony Carruthers;Susan J Vannucci

  • Facilitated diffusion of glucose

    A. Carruthers

  • Study of the relationship between bilayer water permeability and bilayer physical state

    A. Carruthers;D. L. Melchior

  • How bilayer lipids affect membrane protein activity

    Anthony Carruthers;Donald L Melchior

  • Will the original glucose transporter isoform please stand up

    Anthony Carruthers;Julie DeZutter;Amit Ganguly;Sherin U. Devaskar

  • The in vivo neuron-to-astrocyte lactate shuttle in human brain: evidence from modeling of measured lactate levels during visual stimulation

    Silvia Mangia;Ian A. Simpson;Susan J. Vannucci;Anthony Carruthers

  • Glucose transporter oligomeric structure determines transporter function. Reversible redox-dependent interconversions of tetrameric and dimeric GLUT1

    Daniel N. Hebert;Anthony Carruthers

  • Role of Monosaccharide Transport Proteins in Carbohydrate Assimilation, Distribution, Metabolism, and Homeostasis

    Anthony J Cura;Anthony Carruthers

  • Glucose Transporter Function Is Controlled by Transporter Oligomeric Structure. A Single, Intramolecular Disulfide Promotes GLUT1 Tetramerization

    Ralph J. Zottola;Erin K. Cloherty;Peter E. Coderre;Antony Hansen

  • A Novel Model for Brain Iron Uptake: Introducing the Concept of Regulation

    Ian A Simpson;Padmavathi Ponnuru;Marianne E Klinger;Roland L Myers

  • Evidence for Interindividual Heterogeneity in the Glucose Gradient Across the Human Red Blood Cell Membrane and Its Relationship to Hemoglobin Glycation

    Paramjit K. Khera;Clinton H. Joiner;Anthony Carruthers;Christopher J. Lindsell

  • Equilibrium ligand binding to the human erythrocyte sugar transporter. Evidence for two sugar-binding sites per carrier.

    A L Helgerson;A Carruthers

  • ATP regulation of the human red cell sugar transporter.

    A Carruthers

  • Human erythrocyte hexose transporter activity is governed by bilayer lipid composition in reconstituted vesicles

    A. Carruthers;D. L. Melchior

  • WZB117 (2-Fluoro-6-(m-hydroxybenzoyloxy) Phenyl m-Hydroxybenzoate) Inhibits GLUT1-mediated Sugar Transport by Binding Reversibly at the Exofacial Sugar Binding Site.

    Ogooluwa A. Ojelabi;Kenneth P. Lloyd;Andrew H. Simon;Julie K. De Zutter

  • Structural Basis of GLUT1 Inhibition by Cytoplasmic ATP

    David M. Blodgett;Julie Kelley De Zutter;Kara B. Levine;Pusha Karim

  • Inhibitions of sugar transport produced by ligands binding at opposite sides of the membrane. Evidence for simultaneous occupation of the carrier by maltose and cytochalasin B.

    Anthony Carruthers;Amy L. Helgerson

  • The human erythrocyte sugar transporter is also a nucleotide binding protein.

    Anthony Carruthers;Amy L. Helgerson

  • Human erythrocyte sugar transport is incompatible with available carrier models.

    Erin K. Cloherty;Karen Schray Heard;Anthony Carruthers

  • Response to comment on recent modeling studies of astrocyte-neuron metabolic interactions: Much ado about nothing

    Silvia Mangia;Mauro DiNuzzo;Federico Giove;Anthony Carruthers

  • Atypical GLUT1 deficiency with prominent movement disorder responsive to ketogenic diet

    Jennifer R.L. Friedman;Elizabeth A. Thiele;Dong Wang;Kara B. Levine

  • Evidence that functional erythrocyte-type glucose transporters are oligomers.

    Anna Pessino;Daniel N. Hebert;Chee-Wai Woon;Scott A. Harrison

Frequent Co-Authors

Ian A. Simpson
Ian A. Simpson Pennsylvania State University
Silvia Mangia
Silvia Mangia University of Minnesota
Michael P. Czech
Michael P. Czech University of Massachusetts Chan Medical School
Federico Giove
Federico Giove Sapienza University of Rome
Christopher J. Lindsell
Christopher J. Lindsell Vanderbilt University Medical Center
Alexandros Makriyannis
Alexandros Makriyannis Northeastern University
Mark L. Zeidel
Mark L. Zeidel Harvard Medical School
Roger J. Davis
Roger J. Davis University of Massachusetts Chan Medical School
Peter J. F. Henderson
Peter J. F. Henderson University of Leeds
James R. Connor
James R. Connor Pennsylvania State University

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