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Chemistry

D-Index
58
Citations
11872
World Ranking
10623
National Ranking
2930

Research.com Recognitions

  • 2015 - Fellow of the American Association for the Advancement of Science (AAAS)

Overview

Philip L. Yeagle is affiliated with the University of Connecticut in the United States. Their research portfolio covers diverse areas within biomedical and environmental sciences, with a particular focus on molecular biology and related disciplines.

Their recent publications demonstrate an engagement with topics surrounding cholesterol, lipid metabolism, and cellular biology. Notable papers include:

  • "Unraveling a mystery: Why human cells require cholesterol," 2022, Science Advances
  • "Editorial expression of concern," 2021, Science Advances
  • "The potent power of basic research," 2021, Science Advances
  • "Subcellular map of vesicle maturation," 2020, Science
  • "Scientific integrity at Science Advances: Essential pillar supporting scientific progress," 2021, Science Advances

Frequent co-authors collaborating with Philip L. Yeagle include:

  • Marc S. Lavine
  • Seth Thomas Scanlon
  • Jelena Stajic
  • Phil Szuromi
  • Ali Shilatifard

Their work is commonly published in these venues:

  • Science Advances
  • Science
  • Encyclopedia of Life Sciences

Philip L. Yeagle's subfields of study consist of:

  • Surgery
  • Epidemiology
  • Molecular Biology
  • Computational Theory and Mathematics
  • Environmental Chemistry

Main topics of their research encompass:

  • Cholesterol and Lipid Metabolism
  • Lipoproteins and Cardiovascular Health
  • Computational Drug Discovery Methods
  • Methane Hydrates and Related Phenomena
  • Microbial bioremediation and biosurfactants
  • Anaerobic Digestion and Biogas Production
  • Virology and Viral Diseases

In 2015, Philip L. Yeagle was recognized as a Fellow of the American Association for the Advancement of Science (AAAS).

Best Publications

  • Cholesterol and the cell membrane.

    Philip L. Yeagle

  • The Structure of Biological Membranes

    Philip L. Yeagle

  • Lipid regulation of cell membrane structure and function.

    Philip L. Yèagle

  • The Membranes of Cells

    Philip Yeagle

  • Modulation of membrane function by cholesterol.

    P.L. Yeagle

  • Membrane fusion and inverted phases.

    Harma Ellens;David P. Siegel;Dennis Alford;Philip L. Yeagle

  • Membrane fusion through point defects in bilayers

    SW Hui;TP Stewart;LT Boni;PL Yeagle

  • Physiological levels of diacylglycerols in phospholipid membranes induce membrane fusion and stabilize inverted phases.

    David P. Siegel;James Banschbach;Dennis Alford;Harma Ellens

  • Headgroup conformation and lipid--cholesterol association in phosphatidylcholine vesicles: a 31P(1H) nuclear Overhauser effect study.

    P L Yeagle;W C Hutton;C H Huang;R B Martin

  • Phospholipid head-group conformations; intermolecular interactions and cholesterol effects.

    Yeagle Pl;Hutton Wc;Huang C;Martin Rb

  • Effects of cholesterol on sodium-potassium ATPase ATP hydrolyzing activity in bovine kidney

    Philip L. Yeagle;Joyce Young;David Rice

  • Non-covalent binding of membrane lipids to membrane proteins.

    Philip L. Yeagle

  • Cholesterol modulation of (Na+ + K+)-ATPase ATP hydrolyzing activity in the human erythrocyte

    Philip L. Yeagle

  • Differential effects of cholesterol and lanosterol on artificial membranes

    P L Yeagle;R B Martin;A K Lala;H K Lin

  • Bilayer to non-bilayer transition in mixtures of phosphatidylethanolamine and phosphatidylcholine: Implications for membrane properties

    S.W. Hui;T.P. Stewart;P.L. Yeagle;A.D. Albert

  • Physical properties and surface interactions of bilayer membranes containing N-methylated phosphatidylethanolamines

    Jeannine Gagne;Leonidas Stamatatos;Thomas Diacovo;Sek Wen Hui

  • The interaction of lanthanide and calcium salts with phospholipid bilayer vesicles: The validity of the nuclear magnetic resonance method for determination of vesicle bilayer phospholipid surface ratios

    William C. Hutton;Philip L. Yeagle;R.Bruce Martin

  • Factors Contributing to the Distribution of Cholesterol among Phospholipid Vesicles

    P L Yeagle;J E Young

  • Studies on the structure of the G-protein-coupled receptor rhodopsin including the putative G-protein binding site in unactivated and activated forms.

    Philip L. Yeagle;Gregory Choi;Arlene D. Albert

  • Stabilization of HII phases by low levels of diglycerides and alkanes: an NMR, calorimetric, and x-ray diffraction study

    D. P. Siegel;J. Banschbach;P. L. Yeagle

Frequent Co-Authors

Richard M. Epand
Richard M. Epand McMaster University
Anthony Watts
Anthony Watts University of Oxford
John R. Silvius
John R. Silvius McGill University
Debra A. Kendall
Debra A. Kendall University of Connecticut
R. Bruce Martin
R. Bruce Martin University of Virginia
Anthony Watts
Anthony Watts University of Oxford
Paul A. Hargrave
Paul A. Hargrave University of Florida
William F. DeGrado
William F. DeGrado University of California, San Francisco
Steven J. Fliesler
Steven J. Fliesler University at Buffalo, State University of New York
Witold K. Surewicz
Witold K. Surewicz Case Western Reserve University

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