World's Best Scientists 2026 revealed!

D-Index & Metrics

Chemistry

D-Index
65
Citations
16201
World Ranking
7611
National Ranking
441

Biology and Biochemistry

D-Index
64
Citations
16049
World Ranking
9589
National Ranking
730

Overview

Anthony G. Lee is affiliated with the University of Southampton in the United Kingdom. Their research primarily focuses on biochemistry, genetics, and molecular biology, with a total of eight publications in this broad field.

Their work spans various subfields, including molecular biology, cell biology, and cellular and molecular neuroscience. Molecular biology is the most prominent subfield, with seven related publications, while cell biology and cellular and molecular neuroscience have been addressed in one publication each.

Lee's main research topics encompass lipid membrane structure and behavior, receptor mechanisms and signaling, RNA and protein synthesis mechanisms, cellular transport and secretion, ion channel regulation and function, and neuroscience and neuropharmacology research. Notably, lipid membrane structure and behavior is the most frequently addressed topic with six publications.

Anthony G. Lee frequently publishes in journals such as the Biophysical Journal and the European Biophysics Journal. There are two papers in the Biophysical Journal and one in the European Biophysics Journal.

  • Interfacial Binding Sites for Cholesterol on Kir, Kv, K2P, and Related Potassium Channels (2020, Biophysical Journal)
  • Interfacial binding sites for cholesterol on GABAA receptors and competition with neurosteroids (2021, Biophysical Journal)
  • The role of cholesterol binding in the control of cholesterol by the Scap-Insig system (2022, European Biophysics Journal)

Best Publications

  • How lipids affect the activities of integral membrane proteins

    Anthony G. Lee

  • Artemisinins target the SERCA of Plasmodium falciparum

    U. Eckstein-Ludwig;R. J. Webb;I. D. A. van Goethem;J. M. East

  • Lipid–protein interactions in biological membranes: a structural perspective

    A.G Lee

  • Lipid phase transitions and phase diagrams. II. Mictures involving lipids.

    A.G. Lee

  • Lipid phase transitions and phase diagrams. I. Lipid phase transitions.

    A.G. Lee

  • Model for action of local anaesthetics

    Lee Ag

  • A single amino acid residue can determine the sensitivity of SERCAs to artemisinins

    Anne-Catrin Uhlemann;Angus Cameron;Ursula Eckstein-Ludwig;Jorge Fischbarg

  • Biological membranes: the importance of molecular detail.

    Anthony G. Lee

  • Lipid selectivity of the calcium and magnesium ion dependent adenosine triphosphatase, studied with fluorescence quenching by a brominated phospholipid

    East Jm;Lee Ag

  • Lipid–protein interactions

    Anthony G. Lee

  • Distribution of two distinct Ca2+-ATPase-like proteins and their relationships to the agonist-sensitive calcium store in adrenal chromaffin cells.

    Robert D. Burgoyne;Timothy R. Cheek;Alan Morgan;Antony J. O'Sullivan

  • How lipids interact with an intrinsic membrane protein: the case of the calcium pump

    A.G Lee

  • Annular and non-annular binding sites on the (Ca2+ + Mg2+)-ATPase

    A.C. Simmonds;J.M. East;O.T. Jones;E.K. Rooney

  • Lipids and their effects on membrane proteins: evidence against a role for fluidity.

    Lee Ag

  • Hydrophobic Mismatch and the Incorporation of Peptides into Lipid Bilayers: A Possible Mechanism for Retention in the Golgi†

    Webb Rj;East Jm;Sharma Rp;Lee Ag

  • How lipids and proteins interact in a membrane: a molecular approach

    Anthony G. Lee

  • What the structure of a calcium pump tells us about its mechanism.

    Lee Ag;East Jm

  • On the nature of the fluorescent state of methylated indole derivatives

    Stephen Roy Meech;David Phillips;Anthony G. Lee

  • Sarcolipin uncouples hydrolysis of ATP from accumulation of Ca2+ by the Ca2+-ATPase of skeletal-muscle sarcoplasmic reticulum.

    Wendy S. Smith;Robert Broadbridge;J. Malcolm East;Anthony G. Lee

  • Binding of anionic lipids to at least three nonannular sites on the potassium channel KcsA is required for channel opening

    Phedra Marius;Michele Zagnoni;Mairi E. Sandison;J. Malcolm East

  • Effects of charged drugs on the phase transition temperatures of phospholipid bilayers

    A.G. Lee

Frequent Co-Authors

Gwyn W. Gould
Gwyn W. Gould University of Strathclyde
Hywel Morgan
Hywel Morgan University of Southampton
David Phillips
David Phillips Imperial College London
Stephen R. Meech
Stephen R. Meech University of East Anglia
Kenneth P. Ghiggino
Kenneth P. Ghiggino University of Melbourne
Derek Marsh
Derek Marsh Max Planck Society
Michael J. Berridge
Michael J. Berridge Babraham Institute
Christopher J. Kirk
Christopher J. Kirk Kezar Life Sciences
Patrick G. Bray
Patrick G. Bray Liverpool School of Tropical Medicine
Anne-Catrin Uhlemann
Anne-Catrin Uhlemann Columbia University

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