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Vimentin is a protein that has been linked to a large variety of pathophysiological conditions, including cataracts, Crohn’s disease, rheumatoid arthritis, HIV and cancer. Vimentin has also been shown to regulate a wide spectrum of basic cellular functions. In cells, vimentin assembles into a network of filaments that spans the cytoplasm. It can also be found in smaller, non-filamentous forms that can localise both within cells and within the extracellular microenvironment. The vimentin structure can be altered by subunit exchange, cleavage into different sizes, re-annealing, post-translational modifications and interacting proteins. Together with the observation that different domains of vimentin might have evolved under different selection pressures that defined distinct biological functions for different parts of the protein, the many diverse variants of vimentin might be the cause of its functional diversity. A number of review articles have focussed on the biology and medical aspects of intermediate filament proteins without particular commitment to vimentin, and other reviews have focussed on intermediate filaments in an in vitro context. In contrast, the present review focusses almost exclusively on vimentin, and covers both ex vivo and in vivo data from tissue culture and from living organisms, including a summary of the many phenotypes of vimentin knockout animals. Our aim is to provide a comprehensive overview of the current understanding of the many diverse aspects of vimentin, from biochemical, mechanical, cellular, systems biology and medical perspectives.
570, intermediate filaments, Cell- och molekylärbiologi, epithelial‒mesenchymal transition, extracellular vimentin, clinical biomarkers, Drug target, epithelial-mesenchymal transition, cellextracellular matrix adhesions, cell‒extracellular matrix adhesions, Review, tissue regeneration, ., Biochemistry, 530, biomechanics, drug target, Faculdade de Ciências da Vida, Cellular contractility, vimentin, Vimentin, Intermediate filaments, Biomechanics, Biokemi, Molecular Biology, Molekylärbiologi, QH573-671, cell mechanical stiffness or elasticity, ddc:530, Neurosciences, Cell mechanical stiffness or elasticity, Epithelial-mesenchymal transition, cell-extracellular matrix adhesions, cancer and metastasis, Extracellular vimentin, Clinical biomarkers, Cancer and metastasis, Cell-extracellular matrix adhesions, Tissue regeneration, ddc:570, cellular contractility, Cytology, epithelialmesenchymal transition, Neurovetenskaper, Cell and Molecular Biology
570, intermediate filaments, Cell- och molekylärbiologi, epithelial‒mesenchymal transition, extracellular vimentin, clinical biomarkers, Drug target, epithelial-mesenchymal transition, cellextracellular matrix adhesions, cell‒extracellular matrix adhesions, Review, tissue regeneration, ., Biochemistry, 530, biomechanics, drug target, Faculdade de Ciências da Vida, Cellular contractility, vimentin, Vimentin, Intermediate filaments, Biomechanics, Biokemi, Molecular Biology, Molekylärbiologi, QH573-671, cell mechanical stiffness or elasticity, ddc:530, Neurosciences, Cell mechanical stiffness or elasticity, Epithelial-mesenchymal transition, cell-extracellular matrix adhesions, cancer and metastasis, Extracellular vimentin, Clinical biomarkers, Cancer and metastasis, Cell-extracellular matrix adhesions, Tissue regeneration, ddc:570, cellular contractility, Cytology, epithelialmesenchymal transition, Neurovetenskaper, Cell and Molecular Biology
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| influence This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically). | Top 10% | |
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