World's Best Scientists 2026 revealed!

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Microbiology

D-Index
91
Citations
33402
World Ranking
643
National Ranking
66

Genetics

D-Index
90
Citations
34858
World Ranking
1068
National Ranking
149

Research.com Recognitions

  • 1993 - Promega Biotechnology Research Award, American Society for Microbiology
  • 1989 - Member of Academia Europaea
  • 1979 - Fellow of the Royal Society, United Kingdom

Overview

David A. Hopwood is affiliated with the John Innes Centre in the United Kingdom. Their research spans several fields related to health professions and medicine, with a focus on specific subfields such as general health professions and pharmacology.

The scientist's published work primarily addresses topics including patient satisfaction in healthcare, musculoskeletal pain and rehabilitation, and patient-provider communication in healthcare.

They have contributed to recent scholarly literature with papers such as:

  • Creation and Validation of the Select Medical Patient Reported Experience Measure for Physical and Occupational Therapy Outpatient Clinics (2023), published in Archives of Physical Medicine and Rehabilitation

Frequent co-authors in their collaborations include:

  • Chad Cook
  • Mackenzi Pergolotti
  • Alessandra N. Garcia

Their work is published in venues such as the Archives of Physical Medicine and Rehabilitation.

David A. Hopwood has received several honors during their career, including:

  • Promega Biotechnology Research Award, American Society for Microbiology (1993)
  • Member of Academia Europaea (1989)
  • Fellow of the Royal Society, United Kingdom (1979)

Best Publications

  • Complete genome sequence of the model actinomycete Streptomyces coelicolor A3(2)

    S. D. Bentley;K. F. Chater;A.-M. Cerdeño-Tárraga;G. L. Challis;G. L. Challis

  • Genetic manipulation of Streptomyces

    D. A. Hopwood

  • Genetic manipulation of Streptomyces : a laboratory manual

    D. A Hopwood

  • Genetic Contributions to Understanding Polyketide Synthases.

    David A. Hopwood

  • Molecular Genetics of Polyketides and Its Comparison to Fatty Acid Biosynthesis

    David A. Hopwood;David H. Sherman;David H. Sherman

  • Synergy and contingency as driving forces for the evolution of multiple secondary metabolite production by Streptomyces species

    Gregory L. Challis;David A. Hopwood

  • Cloning and Expression of the Tyrosinase Gene from Streptomyces antibioticus in Streptomyces lividans

    Eedward Katz;Charles J. Thompson;David A. Hopwood

  • A set of ordered cosmids and a detailed genetic and physical map for the 8 Mb Streptomyces coelicolor A3(2) chromosome.

    M. Redenbach;H. M. Kieser;D. Denapaite;A. Eichner

  • Molecular cloning of the whole biosynthetic pathway of a Streptomyces antibiotic and its expression in a heterologous host

    F. Malpartida;D. A. Hopwood

  • Engineered biosynthesis of novel polyketides

    Robert McDaniel;Susanne Ebert-Khosla;David A. Hopwood;Chaitan Khosla

  • Streptomyces in nature and medicine : the antibiotic makers

    David A. Hopwood

  • Feast or famine: the global regulator DasR links nutrient stress to antibiotic production by Streptomyces

    Sébastien Rigali;Sébastien Rigali;Fritz Titgemeyer;Sharief Barends;Suzanne Mulder

  • pIJ101, a multi-copy broad host-range Streptomyces plasmid: Functional analysis and development of DNA cloning vectors

    Tobias Kieser;David A. Hopwood;Helen M. Wright;Charles J. Thompson

  • Production of 'hybrid' antibiotics by genetic engineering.

    D. A. Hopwood;F. Malpartida;H. M. Kieser;H. Ikeda

  • Plasmids, Recombination and Chromosome Mapping in Streptomyces lividans 66

    David A. Hopwood;Tobias Kieser;Helen M. Wright;Mervyn J. Bibb

  • The act cluster contains regulatory and antibiotic export genes, direct targets for translational control by the bldA tRNA gene of Streptomyces.

    Miguel A. Fernández-Moreno;JoséL. Caballero;David A. Hopwood;Francisco Malpartida

  • Genetic analysis and genome structure in Streptomyces coelicolor.

    D A Hopwood

  • Combinatorial polyketide biosynthesis by de novo design and rearrangement of modular polyketide synthase genes

    Hugo G Menzella;Ralph Reid;John R Carney;Sunil S Chandran

  • The chromosomal DNA of Streptomyces lividans 66 is linear

    Yi-Shing Lin;Helen M. Kieser;David A. Hopwood;Carton W. Chen

  • Transformation of plasmid DNA into Streptomyces at high frequency

    Mervyn J. Bibb;Judith M. Ward;David A. Hopwood

Frequent Co-Authors

Chaitan Khosla
Chaitan Khosla Stanford University
Mervyn J. Bibb
Mervyn J. Bibb John Innes Centre
David H. Sherman
David H. Sherman University of Michigan–Ann Arbor
Keith F. Chater
Keith F. Chater Norwich Research Park
Charles J. Thompson
Charles J. Thompson University of British Columbia
Heinz G. Floss
Heinz G. Floss University of Washington
Satoshi Omura
Satoshi Omura Kitasato University
Yutaka Ebizuka
Yutaka Ebizuka University of Tokyo
Gregory L. Challis
Gregory L. Challis University of Warwick
Thomas J. Simpson
Thomas J. Simpson University of Bristol

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