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Molecular Biology

D-Index
74
Citations
13468
World Ranking
1254
National Ranking
32

Overview

John F. Bateman is affiliated with the University of Melbourne in Australia. Their research spans multiple scientific disciplines, with significant focus on medicine and biochemistry, genetics, and molecular biology. This work includes subfields such as molecular biology, rheumatology, genetics, immunology and allergy, and cell biology.

The scientist's publications predominantly address topics related to osteoarthritis treatment and mechanisms, cell adhesion molecules research, and connective tissue disorders research. Other recurring themes in their research include RNA research and splicing, endoplasmic reticulum stress and disease, neurogenetic and muscular disorders research, and CRISPR and genetic engineering.

Recent notable papers authored by or involving John F. Bateman include:

  • Identification of the skeletal progenitor cells forming osteophytes in osteoarthritis, 2020, Annals of the Rheumatic Diseases
  • Modeling human skeletal development using human pluripotent stem cells, 2023, Proceedings of the National Academy of Sciences
  • Circadian time series proteomics reveals daily dynamics in cartilage physiology, 2021, Osteoarthritis and Cartilage
  • Collagen misfolding mutations: the contribution of the unfolded protein response to the molecular pathology, 2022, Connective Tissue Research
  • CRISPR/Cas9 editing to generate a heterozygous COL2A1 p.G1170S human chondrodysplasia iPSC line, MCRIi019-A-2, in a control iPSC line, MCRIi019-A, 2020, Stem Cell Research

John F. Bateman collaborates regularly with several co-authors, including:

  • Shireen R. Lamandé
  • Matthew D. Shoulders
  • Lynn Rowley
  • Louise H. W. Kung
  • Jinia Lilianty

The most frequent publication venues for John F. Bateman's work include:

  • Stem Cell Research
  • bioRxiv (Cold Spring Harbor Laboratory)
  • Osteoarthritis and Cartilage
  • Annals of the Rheumatic Diseases
  • Proceedings of the National Academy of Sciences

Best Publications

  • Complexes of matrilin-1 and biglycan or decorin connect collagen VI microfibrils to both collagen II and aggrecan.

    Charlotte Wiberg;Andreas R. Klatt;Raimund Wagener;Mats Paulsson

  • Genetic diseases of connective tissues: cellular and extracellular effects of ECM mutations

    John F. Bateman;Raymond P. Boot-Handford;Shireen R. Lamandé

  • Perinatal lethal osteogenesis imperfecta in transgenic mice bearing an engineered mutant pro-α1(I) collagen gene

    Alex Stacey;John Bateman;Ted Choi;Tom Mascara

  • Collagen II Is Essential for the Removal of the Notochord and the Formation of Intervertebral Discs

    Attila Aszódi;Danny Chan;Ernst Hunziker;John F. Bateman

  • Procollagen folding and assembly: the role of endoplasmic reticulum enzymes and molecular chaperones.

    Shireen R. Lamande;John F. Bateman

  • Transgenic mouse model of the mild dominant form of osteogenesis imperfecta.

    Jeffrey Bonadio;Thomas L. Saunders;Eugene Tsai;Steven A. Goldstein

  • Autophagic Elimination of Misfolded Procollagen Aggregates in the Endoplasmic Reticulum as a Means of Cell Protection

    Yoshihito Ishida;Akitsugu Yamamoto;Akira Kitamura;Shireen R. Lamandé

  • Abnormal type I collagen metabolism by cultured fibroblasts in lethal perinatal osteogenesis imperfecta

    J F Bateman;T Mascara;D Chan;W G Cole

  • Collagen synthesis by cultured rabbit aortic smooth-muscle cells. Alteration with phenotype.

    A H Ang;G Tachas;J H Campbell;J F Bateman

  • Dominant collagen VI mutations are a common cause of Ullrich congenital muscular dystrophy

    Naomi L. Baker;Matthias Mörgelin;Rachel Peat;Nathalie Goemans

  • Increased chondrocyte sclerostin may protect against cartilage degradation in osteoarthritis

    B.Y. Chan;E.S. Fuller;A.K. Russell;S.M. Smith

  • Surviving endoplasmic reticulum stress is coupled to altered chondrocyte differentiation and function

    Kwok Yeung Tsang;Danny Chan;Deborah Cheslett;Wilson C. W Chan

  • Endoplasmic reticulum-mediated quality control of type I collagen production by cells from osteogenesis imperfecta patients with mutations in the pro alpha 1 (I) chain carboxyl-terminal propeptide which impair subunit assembly

    Lamandé;Chessler Sd;Golub Sb;Byers Ph

  • Tissue-specific RNA surveillance? Nonsense-mediated mRNA decay causes collagen X haploinsufficiency in Schmid metaphyseal chondrodysplasia cartilage

    John F. Bateman;Susanna Freddi;Gary Nattrass;Ravi Savarirayan

  • Matrix deposition by a calcifying human osteogenic sarcoma cell line (SAOS-2)

    D.J. McQuillan;M.D. Richardson;J.F. Bateman

  • Regulation of procollagen synthesis and processing during ascorbate-induced extracellular matrix accumulation in vitro.

    D Chan;S R Lamande;W G Cole;J F Bateman

  • Collagen VI disorders: Insights on form and function in the extracellular matrix and beyond.

    Shireen R. Lamandé;John F. Bateman;John F. Bateman

  • In vivo cellular adaptation to ER stress: survival strategies with double-edged consequences

    Kwok Yeung Tsang;Danny Chan;John F. Bateman;Kathryn S. E. Cheah

  • The Effect of Relaxin on Collagen Metabolism in the Nonpregnant Rat Pubic Symphysis: The Influence of Estrogen and Progesterone in Regulating Relaxin Activity*

    Chrishan S. Samuel;Aldonna Butkus;John P. Coghlan;John F. Bateman

  • Mutations in TRPV4 cause an inherited arthropathy of hands and feet.

    Shireen R Lamandé;Shireen R Lamandé;Yuan Yuan;Irma L Gresshoff;Irma L Gresshoff;Lynn Rowley

Frequent Co-Authors

William G. Cole
William G. Cole University of Toronto
Richard Wilson
Richard Wilson Department for Environment Food and Rural Affairs
Christopher B. Little
Christopher B. Little University of Sydney
Ravi Savarirayan
Ravi Savarirayan Murdoch Children's Research Institute
Amanda J. Fosang
Amanda J. Fosang Royal Children's Hospital
Ray Boot-Handford
Ray Boot-Handford University of Manchester
Andrew G. Elefanty
Andrew G. Elefanty University of Melbourne
Erik W. Thompson
Erik W. Thompson Queensland University of Technology
Matthias Mörgelin
Matthias Mörgelin Lund University
Edouard G. Stanley
Edouard G. Stanley University of Melbourne

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