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D-Index & Metrics

Biology and Biochemistry

D-Index
74
Citations
19993
World Ranking
5590
National Ranking
2657

Overview

Peter Rotwein is affiliated with Washington University in St. Louis in the United States. Their research primarily spans the fields of Biochemistry, Genetics, and Molecular Biology, with a notable focus on Molecular Biology, Endocrinology, Diabetes and Metabolism, and Genetics.

The scientist's work is concentrated on topics such as RNA modifications and cancer, RNA research and splicing, epigenetics and DNA methylation, genomics and chromatin dynamics, growth hormone and insulin-like growth factors, single-cell and spatial transcriptomics, and FOXO transcription factor regulation.

Frequent coauthors collaborating with Peter Rotwein include Kabita Baral, S E Tollefsen, R Lajara, R H McCusker, and David R. Clemmons.

Among the venues where their work has been published more than once are Molecular and Cellular Endocrinology, Evolutionary Bioinformatics, UNC Libraries, Journal of the Endocrine Society, and BMC Genomics.

Notable recent publications by Peter Rotwein include:

  • Regulation of gene expression by growth hormone, 2020, Molecular and Cellular Endocrinology
  • Revisiting the Population Genetics of Human Height, 2020, Journal of the Endocrine Society

Other significant papers related to their frequent coauthors or research areas include:

  • Insulin-like growth factors (IGF) in muscle development. Expression of IGF-I, the IGF-I receptor, and an IGF binding protein during myoblast differentiation., 2021, UNC Libraries
  • ZMAT2 in Humans and Other Primates: A Highly Conserved and Understudied Gene, 2020, Evolutionary Bioinformatics
  • Structure and expression of the long noncoding RNA gene MIR503 in humans and non-human primates, 2020, Molecular and Cellular Endocrinology

Best Publications

  • Insulin-Like Growth Factors I and II. Peptide, Messenger Ribonucleic Acid and Gene Structures, Serum, and Tissue Concentrations

    William H. Daughaday;Peter Rotwein

  • Growth, differentiation, and survival: multiple physiological functions for insulin-like growth factors

    Claire E.H. Stewart;Peter Rotwein

  • Characterization of the human growth hormone receptor gene and demonstration of a partial gene deletion in two patients with Laron-type dwarfism.

    Paul J. Godowski;David W. Leung;Lillian R. Meacham;John P. Galgani

  • Differential expression of insulin-like growth factor genes in rat central nervous system.

    Peter Rotwein;Susan K. Burgess;Jeffrey D. Milbrandt;James. E. Krause

  • Organization and sequence of the human insulin-like growth factor I gene. Alternative RNA processing produces two insulin-like growth factor I precursor peptides.

    P Rotwein;K M Pollock;D K Didier;G G Krivi

  • Synthesis and secretion of insulin-like growth factor II by a leiomyosarcoma with associated hypoglycemia.

    William H. Daughaday;Mary Ann Emanuele;Marion H. Brooks;Anthony L. Barbato

  • A Calcineurin-NFATc3-Dependent Pathway Regulates Skeletal Muscle Differentiation and Slow Myosin Heavy-Chain Expression

    Ulrike Delling;Jolana Tureckova;Hae W. Lim;Leon J. De Windt

  • Two insulin-like growth factor I messenger RNAs are expressed in human liver.

    Peter Rotwein

  • Structure, evolution, expression and regulation of insulin-like growth factors I and II.

    Peter Rotwein

  • Insulin-like growth factors (IGF) in muscle development. Expression of IGF-I, the IGF-I receptor, and an IGF binding protein during myoblast differentiation.

    S. E. Tollefsen;R. Lajara;Robert H. McCusker;D. R. Clemmons

  • Growth hormone rapidly activates insulin-like growth factor I gene transcription in vivo.

    David P. Bichell;Kiyoshi Kikuchi;Peter Rotwein

  • Insulin-like growth factor-II is an autocrine survival factor for differentiating myoblasts.

    Claire E.H. Stewart;Peter Rotwein

  • Insulin-like growth factor-mediated muscle cell survival: central roles for Akt and cyclin-dependent kinase inhibitor p21.

    Margaret A. Lawlor;Peter Rotwein

  • Insulin-like Growth Factor-mediated Muscle Differentiation COLLABORATION BETWEEN PHOSPHATIDYLINOSITOL 3-KINASE-Akt-SIGNALING PATHWAYS AND MYOGENIN

    Jolana Tureckova;Elizabeth M. Wilson;Jennifer L. Cappalonga;Peter Rotwein

  • Coordinate expression of insulin-like growth factor II and its receptor during muscle differentiation.

    Sherida E. Tollefsen;Jenny Levis Sadow;Peter Rotwein

  • Diminished growth and enhanced glucose metabolism in triple knockout mice containing mutations of insulin-like growth factor binding protein-3, -4, and -5.

    Yun Ning;Alwin G. P. Schuller;Sheri Bradshaw;Peter Rotwein

  • Acute Control of Insulin-like Growth Factor-I Gene Transcription by Growth Hormone through Stat5b

    Joachim Woelfle;Julia Billiard;Peter Rotwein

  • Mechanisms of growth hormone (GH) action. Identification of conserved Stat5 binding sites that mediate GH-induced insulin-like growth factor-I gene activation.

    Joachim Woelfle;Dennis J. Chia;Peter Rotwein

  • A highly conserved insulin-like growth factor-binding protein (IGFBP-5) is expressed during myoblast differentiation.

    Payton L. James;Stephanie B. Jones;Walker H. Busby;David R. Clemmons

  • Evolution of insulin-like growth factor II: characterization of the mouse IGF-II gene and identification of two pseudo-exons.

    Peter Rotwein;Lisa J. Hall

Frequent Co-Authors

William H. Daughaday
William H. Daughaday Washington University in St. Louis
Dennis M. Bier
Dennis M. Bier Baylor College of Medicine
Thomas L. McCarthy
Thomas L. McCarthy Yale University
Shozo Yokoyama
Shozo Yokoyama Emory University
William A. Frazier
William A. Frazier Washington University in St. Louis
Michael Centrella
Michael Centrella Yale University
Neal G. Copeland
Neal G. Copeland The University of Texas MD Anderson Cancer Center
Nancy A. Jenkins
Nancy A. Jenkins The University of Texas MD Anderson Cancer Center
Hiroyuki Sasaki
Hiroyuki Sasaki Kyushu University
Debra J. Gilbert
Debra J. Gilbert National Institutes of Health

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