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Chemistry

D-Index
71
Citations
16325
World Ranking
5625
National Ranking
1737

Biology and Biochemistry

D-Index
73
Citations
17695
World Ranking
5987
National Ranking
2826

Overview

Garland R. Marshall is affiliated with Washington University in St. Louis in the United States. Their primary research areas fall within Biochemistry, Genetics, and Molecular Biology, with a focused attention on Molecular Biology as a subfield. This specialization includes the study of mechanisms at the molecular level related to cellular function.

The scientist's research prominently covers topics such as Histone Deacetylase Inhibitors Research, Protein Degradation and Inhibitors, and Ubiquitin and proteasome pathways. These topics indicate an involvement in understanding protein regulation and post-translational modifications, which are crucial in cell biology and disease contexts.

Garland R. Marshall has contributed papers to the field, including a notable publication titled "Identification of histone deacetylase inhibitors with (arylidene)aminoxy scaffold active in uveal melanoma cell lines," published in 2020 in the Journal of Enzyme Inhibition and Medicinal Chemistry. This paper has received citations reflecting engagement from the scientific community.

Collaborative research is part of their work, with frequent co-authors including Susanna Nencetti, Doretta Cuffaro, Elisa Nuti, Lidia Ciccone, and Armando Rossello. These professional relationships suggest an interdisciplinary approach within the biochemical and molecular biology research environment.

The publication venue associated with Garland R. Marshall is the Journal of Enzyme Inhibition and Medicinal Chemistry, where research on enzyme inhibitors and biochemical mechanisms is shared. This supports the focus on molecular pathways related to enzymatic activity and inhibition relevant to therapeutic developments.

  • Identification of histone deacetylase inhibitors with (arylidene)aminoxy scaffold active in uveal melanoma cell lines (2020, Journal of Enzyme Inhibition and Medicinal Chemistry)

  • Susanna Nencetti
  • Doretta Cuffaro
  • Elisa Nuti
  • Lidia Ciccone
  • Armando Rossello

  • Journal of Enzyme Inhibition and Medicinal Chemistry

  • Histone Deacetylase Inhibitors Research
  • Protein Degradation and Inhibitors
  • Ubiquitin and proteasome pathways

  • Biochemistry, Genetics and Molecular Biology

  • Molecular Biology

Best Publications

  • The biology and future prospects of antivirulence therapies

    Lynette Cegelski;Garland R. Marshall;Gary R. Eldridge;Scott J. Hultgren

  • Structure of complex of synthetic HIV-1 protease with a substrate-based inhibitor at 2.3 A resolution.

    Maria Miller;Jens Schneider;Bangalore K. Sathyanarayana;Mihaly V. Toth

  • Peptides Chemistry, Structure and Biology

    Jean E. Rivier;Garland R. Marshall

  • Identification of the T-cell and Ia contact residues of a T-cell antigenic epitope

    Paul M. Allen;Gary R. Matsueda;Robert J. Evans;James B. Dunbar

  • Alamethicin. A rich model for channel behavior

    J.E. Hall;I. Vodyanoy;T.M. Balasubramanian;G.R. Marshall

  • VALIDATE: A New Method for the Receptor-Based Prediction of Binding Affinities of Novel Ligands

    Richard D. Head;Mark L. Smythe;Tudor I. Oprea;Chris L. Waller

  • Factors governing helical preference of peptides containing multiple alpha,alpha-dialkyl amino acids.

    Garland Marshall;E. E. Hodgkin;D. A. Langs;G. D. Smith

  • The Conformational Parameter in Drug Design: The Active Analog Approach

    Garland R. Marshall;C. David Barry;Heinz E. Bosshard;Richard A. Dammkoehler

  • Computer-aided drug design

    Garland R. Marshall

  • A simple, continuous fluorometric assay for HIV protease

    Mihaly V. Toth;Garland R. Marshall

  • Conformational mimicry. 1. 1,5-Disubstituted tetrazole ring as a surrogate for the cis amide bond

    Janusz. Zabrocki;G. David. Smith;James B. Dunbar;Hiroshi. Iijima

  • Synthesis of Angiotensins by the Solid-Phase Method*

    Garland R. Marshall;R. B. Merrifield

  • Three-dimensional QSAR of human immunodeficiency virus (I) protease inhibitors. 1. A CoMFA study employing experimentally-determined alignment rules.

    Chris L. Waller;Tudor I. Oprea;Alessandro Giolitti;Garland R. Marshall

  • A unique geometry of the active site of angiotensin-converting enzyme consistent with structure-activity studies.

    Dorica Mayer;Christopher B. Naylor;Ioan Motoc;Garland R. Marshall

  • A hierarchical approach to peptidomimetic design

    Garland R. Marshall

  • Blood vessel-hormone interactions: angiotensin, bradykinin, and prostaglandins

    A. L. Blumberg;S. E. Denny;G. R. Marshall;P. Needleman

  • Light-activated rhodopsin induces structural binding motif in G protein alpha subunit.

    Oleg G. Kisselev;Jeff Kao;Jay W. Ponder;Yang C. Fann

  • 3D-QSAR of angiotensin-converting enzyme and thermolysin inhibitors: A comparison of CoMFA models based on deduced and experimentally determined active site geometries

    Scott A. DePriest;Dorica Mayer;Christopher B. Naylor;Garland R. Marshall

  • Hormone interactions in the isolated rabbit heart. Synthesis and coronary vasomotor effects of prostaglandins, angiotensin, and bradykinin.

    Philip Needleman;Garland R. Marshall;Burton E. Sobel

  • Antimycobacterial pyrroles: synthesis, anti-Mycobacterium tuberculosis activity and QSAR studies

    Rino Ragno;Garland R Marshall;Roberto Di Santo;Roberta Costi

Frequent Co-Authors

Philip Needleman
Philip Needleman Washington University in St. Louis
John Turk
John Turk Washington University in St. Louis
Kevin D. Moeller
Kevin D. Moeller Washington University in St. Louis
William S. Hancock
William S. Hancock Northeastern University
Marvin C. Gershengorn
Marvin C. Gershengorn National Institutes of Health
Eugene M. Johnson
Eugene M. Johnson Washington University in St. Louis
Daniel H. Rich
Daniel H. Rich University of Wisconsin–Madison
Scott J. Hultgren
Scott J. Hultgren Washington University in St. Louis
Jean Rivier
Jean Rivier Salk Institute for Biological Studies
Melanie H. Cobb
Melanie H. Cobb The University of Texas Southwestern Medical Center

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