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Chemistry

D-Index
67
Citations
24223
World Ranking
6757
National Ranking
2029

Overview

Allen P. Minton is a researcher affiliated with the National Institutes of Health in the United States. Their work spans multiple disciplines, primarily focusing on biochemistry, genetics, molecular biology, and materials science.

The main fields of study for Minton include:

  • Biochemistry, Genetics and Molecular Biology
  • Materials Science

Their subfields of study break down further into:

  • Molecular Biology
  • Materials Chemistry
  • Physiology
  • Biophysics
  • Epidemiology

The main research topics they explore encompass:

  • Protein Structure and Dynamics
  • Enzyme Structure and Function
  • RNA Research and Splicing
  • Erythrocyte Function and Pathophysiology
  • Material Dynamics and Properties
  • Ion channel regulation and function
  • Advanced Fluorescence Microscopy Techniques

Minton has contributed to various journal publications over the years. Notable recent papers include:

  • "Simple Calculation of Phase Diagrams for Liquid-Liquid Phase Separation in Solutions of Two Macromolecular Solute Species," 2020, The Journal of Physical Chemistry B
  • "Water Loss in Aging Erythrocytes Provides a Clue to a General Mechanism of Cellular Senescence," 2020, Biophysical Journal
  • "Simplified Equilibrium Model for Exploring the Combined Influences of Concentration, Aggregate Shape, Excluded Volume, and Surface Adsorption upon Aggregation Propensity and Distribution of Globular Macromolecules," 2023, The Journal of Physical Chemistry B

Other papers from their research collaborators that relate to their field include:

  • "Influence of Nonspecific Interactions on Protein Associations: Implications for Biochemistry In Vivo," 2022, Annual Review of Biochemistry
  • "Editorial: Biochemical Reactions in Cytomimetic Media," 2020, Frontiers in Molecular Biosciences

Minton's frequent coauthors include:

  • Germán Rivas
  • Austin G. Wellette-Hunsucker
  • Kenneth S. Campbell
  • Steve Leung
  • Utku Gülbulak

Their research commonly appears in several publication venues, with multiple papers in:

  • Biophysical Journal
  • The Journal of Physical Chemistry B
  • UNC Libraries
  • Annual Review of Biochemistry
  • Trends in Biochemical Sciences

Best Publications

  • Macromolecular Crowding and Confinement: Biochemical, Biophysical, and Potential Physiological Consequences*

    Huan-Xiang Zhou;Germ ´ an Rivas;Allen P. Minton

  • Macromolecular Crowding: Biochemical, Biophysical, and Physiological Consequences

    S B Zimmerman;A P Minton

  • The influence of macromolecular crowding and macromolecular confinement on biochemical reactions in physiological media.

    Allen P. Minton

  • Cell biology: join the crowd.

    R. John Ellis;Allen P. Minton

  • Implications of macromolecular crowding for protein assembly.

    Allen P Minton

  • Excluded volume as a determinant of macromolecular structure and reactivity

    Allen P. Minton

  • The effect of volume occupancy upon the thermodynamic activity of proteins: some biochemical consequences

    Allen P. Minton

  • Macromolecular crowding: qualitative and semiquantitative successes, quantitative challenges

    Damien Hall;Allen P. Minton

  • How can biochemical reactions within cells differ from those in test tubes

    Allen P. Minton

  • Protein aggregation in crowded environments.

    R. John Ellis;Allen P. Minton

  • Macromolecular Crowding In Vitro, In Vivo, and In Between

    Germán Rivas;Allen P. Minton

  • Models for excluded volume interaction between an unfolded protein and rigid macromolecular cosolutes: macromolecular crowding and protein stability revisited.

    Allen P. Minton

  • Effect of dextran on protein stability and conformation attributed to macromolecular crowding

    Kenji Sasahara;Peter McPhie;Allen P. Minton

  • Effect of macromolecular crowding upon the structure and function of an enzyme: glyceraldehyde-3-phosphate dehydrogenase

    A P Minton;J Wilf

  • Molecular crowding: analysis of effects of high concentrations of inert cosolutes on biochemical equilibria and rates in terms of volume exclusion.

    Allen P. Minton

  • Influence of macromolecular crowding upon the stability and state of association of proteins: predictions and observations.

    Allen P. Minton

  • Macromolecular crowding accelerates amyloid formation by human apolipoprotein C-II.

    Danny M. Hatters;Allen P. Minton;Geoffrey J. Howlett

  • Effect of a Concentrated “Inert” Macromolecular Cosolute on the Stability of a Globular Protein with Respect to Denaturation by Heat and by Chaotropes: A Statistical-Thermodynamic Model

    Allen P. Minton

  • Analysis of non-ideal behavior in concentrated hemoglobin solutions

    Philip D. Ross;Allen P. Minton

  • Interaction between proteins localized in membranes

    Bruce Grasberger;Allen P. Minton;Charles Delisi;Henry Metzger

Frequent Co-Authors

Germán Rivas
Germán Rivas Spanish National Research Council
Peter Schuck
Peter Schuck National Institutes of Health
Peter McPhie
Peter McPhie National Institutes of Health
Faizan Ahmad
Faizan Ahmad Jamia Millia Islamia
Geoffrey J. Howlett
Geoffrey J. Howlett University of Melbourne
Chien Ho
Chien Ho Carnegie Mellon University
R. John Ellis
R. John Ellis University of Warwick
George M. Hahn
George M. Hahn Stanford University
Leonard D. Kohn
Leonard D. Kohn National Institutes of Health
Reed B. Wickner
Reed B. Wickner National Institutes of Health

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