World's Best Scientists 2026 revealed!

D-Index & Metrics

Biology and Biochemistry

D-Index
86
Citations
29718
World Ranking
2939
National Ranking
1504

Overview

Richard A. Roth is affiliated with Stanford University in the United States. Their academic profile reflects a career connected to this institution, which is well-known for its research contributions in various fields.

As there are no recorded recent papers, frequent co-authors, publication venues, book publications, specific main or subfields of study, or primary research topics listed, a detailed breakdown of Richard A. Roth's scientific contributions, collaborations, and thematic focuses cannot be provided. Similarly, there are no noted awards or honors associated with their academic career to highlight.

Despite the lack of detailed data on publications or recognized research outputs, affiliation with a university such as Stanford suggests involvement in a research environment with access to broad interdisciplinary resources.

The information available does not indicate any information about retirement or if the scientist has passed away, so this profile uses the present tense as appropriate.

Best Publications

  • The human insulin receptor cDNA: The structural basis for hormone-activated transmembrane signalling

    Yousuke Ebina;Leland Ellis;Kurt Jarnagin;Marc Edery

  • Expression of a Constitutively Active Akt Ser/Thr Kinase in 3T3-L1 Adipocytes Stimulates Glucose Uptake and Glucose Transporter 4 Translocation

    Aimee D. Kohn;Scott A. Summers;Morris J. Birnbaum;Richard A. Roth

  • Replacement of insulin receptor tyrosine residues 1162 and 1163 compromises insulin-stimulated kinase activity and uptake of 2-deoxyglucose

    Leland Ellis;Eric Clauser;David O. Morgan;Marc Edery

  • Insulin-like growth factor II receptor as a multifunctional binding protein.

    David O. Morgan;David O. Morgan;Jeffrey C. Edman;David N. Standring;Victor A. Fried

  • Sequence of protein disulphide isomerase and implications of its relationship to thioredoxin

    Jeffrey C. Edman;Leland Ellis;Russell W. Blacher;Richard A. Roth

  • Akt, a Pleckstrin Homology Domain Containing Kinase, Is Activated Primarily by Phosphorylation

    Aimee D. Kohn;Fumito Takeuchi;Richard A. Roth

  • Up-regulation of Akt3 in estrogen receptor-deficient breast cancers and androgen-independent prostate cancer lines.

    Kaname Nakatani;Devon A. Thompson;Andreas Barthel;Hiroshi Sakaue

  • PRAS40 Regulates mTORC1 Kinase Activity by Functioning as a Direct Inhibitor of Substrate Binding

    Lifu Wang;Thurl E. Harris;Richard A. Roth;John C. Lawrence

  • Evidence of insulin-stimulated phosphorylation and activation of the mammalian target of rapamycin mediated by a protein kinase B signaling pathway

    Pamela H. Scott;Gregory J. Brunn;Aimee D. Kohn;Richard A. Roth

  • Insulin receptor: evidence that it is a protein kinase

    Richard A. Roth;Delanie J. Cassell

  • Replacement of lysine residue 1030 in the putative ATP-binding region of the insulin receptor abolishes insulin- and antibody-stimulated glucose uptake and receptor kinase activity

    Yousuke Ebina;Eiichi Araki;Masato Taira;Fumio Shimada

  • Insulin stimulates the kinase activity of RAC-PK, a pleckstrin homology domain containing ser/thr kinase.

    Aimee D. Kohn;Kristina S. Kovacina;Richard A. Roth

  • Inhibition of mTOR activity restores tamoxifen response in breast cancer cells with aberrant Akt activity

    Linda A. deGraffenried;William E. Friedrichs;Douglas H. Russell;Elissa J. Donzis

  • Identification of a Proline-rich Akt Substrate as a 14-3-3 Binding Partner

    Kristina S. Kovacina;Grace Y. Park;Sun Sik Bae;Andrew W. Guzzetta

  • Stimulation of Lipolysis and Hormone-sensitive Lipase via the Extracellular Signal-regulated Kinase Pathway

    Andrew S. Greenberg;Wen-Jun Shen;Wen-Jun Shen;Kizito Muliro;Shailja Patel;Shailja Patel

  • Insulin-Stimulated Akt Kinase Activity Is Reduced in Skeletal Muscle From NIDDM Subjects

    Anna Krook;Richard A Roth;Xin Jian Jiang;Juleen R Zierath

  • Expression and characterization of a functional human insulin-like growth factor I receptor.

    G Steele-Perkins;J Turner;J C Edman;J Hari

  • Regulation of GLUT1 gene transcription by the serine/threonine kinase Akt1.

    Andreas Barthel;Steven T. Okino;Jinfang Liao;Kaname Nakatani

  • Construction and Characterization of a Conditionally Active Version of the Serine/Threonine Kinase Akt

    Aimee D. Kohn;Andreas Barthel;Kristina S. Kovacina;Annegret Boge

  • Modulation of Insulin Receptor Substrate-1 Tyrosine Phosphorylation and Function by Mitogen-activated Protein Kinase

    Kathryn De Fea;Richard A. Roth

Frequent Co-Authors

David O. Morgan
David O. Morgan University of California, San Francisco
William J. Rutter
William J. Rutter University of California, San Francisco
Eric Clauser
Eric Clauser Université Paris Cité
Ira D. Goldfine
Ira D. Goldfine University of California, San Francisco
Juleen R. Zierath
Juleen R. Zierath Karolinska Institute
Morris J. Birnbaum
Morris J. Birnbaum Pfizer (United States)
Yousuke Ebina
Yousuke Ebina University of Tokushima
Jeremy M. Tavaré
Jeremy M. Tavaré University of Bristol
Hans-Georg Joost
Hans-Georg Joost RWTH Aachen University
John C. Lawrence
John C. Lawrence University of Virginia

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