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Biology and Biochemistry

D-Index
56
Citations
11060
World Ranking
14452
National Ranking
6080

Overview

Richard E. Lloyd is affiliated with Baylor College of Medicine in the United States and has contributed extensively to research in medicine and molecular biology. Their work spans multiple fields including genetics, infectious diseases, and cardiology, with a strong focus on diabetes and viral infections.

The main fields of study in which Richard E. Lloyd has published include:

  • Medicine
  • Biochemistry, Genetics and Molecular Biology

Their research subfields cover:

  • Genetics
  • Infectious Diseases
  • Molecular Biology
  • Cardiology and Cardiovascular Medicine
  • Gastroenterology

Among the principal topics of their research are:

  • Diabetes and associated disorders
  • Viral Infections and Immunology Research
  • Celiac Disease Research and Management
  • COVID-19 Clinical Research Studies
  • SARS-CoV-2 and COVID-19 Research
  • Viral gastroenteritis research and epidemiology
  • RNA modifications and cancer

Frequent publication venues for their work include:

  • bioRxiv (Cold Spring Harbor Laboratory)
  • Diabetes Care
  • Diabetologia
  • Cell Metabolism
  • Annual Review of Medicine

Richard E. Lloyd has collaborated frequently with a number of coauthors, including:

  • Heikki Hyöty
  • Joseph F. Petrosino
  • Jutta E. Laiho
  • Alberto Pugliese
  • Marian Rewers

Notable recent papers authored or coauthored by Richard E. Lloyd include:

  • "Expression of SARS-CoV-2 Entry Factors in the Pancreas of Normal Organ Donors and Individuals with COVID-19," 2020, Cell Metabolism
  • "Enteroviruses and Type 1 Diabetes: Multiple Mechanisms and Factors?," 2021, Annual Review of Medicine
  • "TDRD3 is an antiviral restriction factor that promotes IFN signaling with G3BP1," 2022, PLoS Pathogens
  • "Expansion of germline RPS20 mutation phenotype to include Diamond-Blackfan anemia," 2020, Human Mutation
  • "Distinct transcriptomic profiles in children prior to the appearance of type 1 diabetes-linked islet autoantibodies and following enterovirus infection," 2023, Nature Communications

This profile reflects Richard E. Lloyd's broad engagement with interdisciplinary research areas centered on diabetes, viral infections, and molecular biology mechanisms, emphasizing both clinical and genetic perspectives.

Best Publications

  • Temporal development of the gut microbiome in early childhood from the TEDDY study

    Christopher J. Stewart;Christopher J. Stewart;Nadim J. Ajami;Jacqueline L. O’Brien;Diane S. Hutchinson

  • Inhibition of Cytoplasmic mRNA Stress Granule Formation by a Viral Proteinase

    James P. White;Ana Maria Cardenas;Wilfred E. Marissen;Richard E. Lloyd

  • Leader protein of foot-and-mouth disease virus is required for cleavage of the p220 component of the cap-binding protein complex.

    M A Devaney;V N Vakharia;R E Lloyd;E Ehrenfeld

  • CLEAVAGE OF POLY(A)-BINDING PROTEIN BY ENTEROVIRUS PROTEASES CONCURRENT WITH INHIBITION OF TRANSLATION IN VITRO

    Michelle Joachims;Pieter C. Van Breugel;Richard E. Lloyd

  • Regulation of stress granules in virus systems

    James P. White;Richard E. Lloyd

  • Eukaryotic translation initiation factor 4G is targeted for proteolytic cleavage by caspase 3 during inhibition of translation in apoptotic cells.

    Wilfred E. Marissen;Richard E. Lloyd

  • Diversion of stress granules and P-bodies during viral infection.

    Lucas C. Reineke;Richard E. Lloyd

  • Cleavage of Poly(A)-Binding Protein by Poliovirus 3C Protease Inhibits Host Cell Translation: a Novel Mechanism for Host Translation Shutoff

    N. Muge Kuyumcu-Martinez;Marc E. Van Eden;Patrick Younan;Richard E. Lloyd

  • Enterovirus 2Apro Targets MDA5 and MAVS in Infected Cells

    Qian Feng;Martijn A. Langereis;Marie Lork;Mai Nguyen

  • The Stress Granule Protein G3BP1 Recruits Protein Kinase R To Promote Multiple Innate Immune Antiviral Responses

    Lucas C. Reineke;Richard E. Lloyd

  • Demonstrating internal ribosome entry sites in eukaryotic mRNAs using stringent RNA test procedures.

    Marc E. Van Eden;Marshall P. Byrd;Kyle W. Sherrill;Richard E. Lloyd

  • Prospective virome analyses in young children at increased genetic risk for type 1 diabetes

    Kendra Vehik;Kristian F. Lynch;Matthew C. Wong;Xiangjun Tian

  • Efficient Cleavage of Ribosome-Associated Poly(A)-Binding Protein by Enterovirus 3C Protease

    N. Muge Kuyumcu-Martinez;Michelle Joachims;Richard E. Lloyd

  • BCL-2 Translation Is Mediated via Internal Ribosome Entry during Cell Stress

    Kyle W. Sherrill;Marshall P. Byrd;Marc E. Van Eden;Richard E. Lloyd

  • Relationship of p220 cleavage during picornavirus infection to 2A proteinase sequencing.

    R E Lloyd;M J Grubman;E Ehrenfeld

  • Arginine Demethylation of G3BP1 Promotes Stress Granule Assembly

    Wei Chih Tsai;Sitaram Gayatri;Lucas C. Reineke;Gianluca Sbardella

  • Translational control by viral proteinases.

    Richard E. Lloyd

  • Calicivirus 3C-Like Proteinase Inhibits Cellular Translation by Cleavage of Poly(A)-Binding Protein

    Muge Kuyumcu-Martinez;Gaël Belliot;Stanislav V. Sosnovtsev;Kyeong-Ok Chang

  • Large G3BP-induced granules trigger eIF2α phosphorylation

    Lucas C. Reineke;Jon D. Dougherty;Philippe Pierre;Philippe Pierre;Richard E. Lloyd

  • Regulation of stress granules and P-bodies during RNA virus infection.

    Richard E. Lloyd

Frequent Co-Authors

Heikki Hyöty
Heikki Hyöty Tampere University
Jorma Toppari
Jorma Toppari University of Turku
Alberto Pugliese
Alberto Pugliese University of Miami
Jeffrey M. Rosen
Jeffrey M. Rosen Baylor College of Medicine
Joseph F. Petrosino
Joseph F. Petrosino Baylor College of Medicine
Mark A. Atkinson
Mark A. Atkinson University of Florida
Sung Yun Jung
Sung Yun Jung Baylor College of Medicine
Åke Lernmark
Åke Lernmark Lund University
Philippe Pierre
Philippe Pierre Aix-Marseille University
Stanislav V. Sosnovtsev
Stanislav V. Sosnovtsev National Institutes of Health

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