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Showing 1–6 of 6 results
Advanced filters: Author: "Rik Derynck" Clear advanced filters
  • Epithelial–mesenchymal transition (EMT) is integral to development and pathology. This switch in cell differentiation and behaviour requires key transcription factors, including SNAIL, zinc-finger E-box-binding (ZEB) and basic helix–loop–helix transcription factors, and is regulated by several signalling pathways, including those mediated by the transforming growth factor-β (TGFβ) family.

    • Samy Lamouille
    • Jian Xu
    • Rik Derynck
    Reviews
    Nature Reviews Molecular Cell Biology
    Volume: 15, P: 178-196
  • During development, stem and progenitor cells gradually commit to differentiation pathways. Cell fate decisions are regulated by differentiation factors, which activate transcription programmes that specify lineage and differentiation status. Among these factors, the transforming growth factor (TGF)-β family is important in both lineage selection and progression of differentiation of most, if not all, cell and tissue types. There is now increasing evidence that TGF-β family proteins have the ability to redirect the differentiation of cells that either have fully differentiated or have engaged in differentiation along a particular lineage, and can thereby elicit 'transdifferentiation'. This capacity for cellular plasticity is critical for normal embryonic development, but when recapitulated in the adult it can give rise to, or contribute to, a variety of diseases. This is illustrated by the ability of TGF-β family members to redirect epithelial cells into mesenchymal differentiation and to cause switching of mesenchymal cells from one lineage to another. Hence, various pathologies in adults may be considered diseases of abnormal development and differentiation.

    • Rik Derynck
    • Rosemary J. Akhurst
    Reviews
    Nature Cell Biology
    Volume: 9, P: 1000-1004
  • TGFβ released by cancer cells and other cells in the tumour microenvironment enables cancer cell invasion and dissemination, stem cell properties and therapeutic resistance as well as generating an immunosuppressive environment. The authors of this Review introduce the mechanisms underlying TGFβ signalling in tumours and their microenvironment and discuss approaches to inhibit these signalling mechanisms, in particular in the context of cancer immunotherapy.

    • Rik Derynck
    • Shannon J. Turley
    • Rosemary J. Akhurst
    Reviews
    Nature Reviews Clinical Oncology
    Volume: 18, P: 9-34