Piezo Proteins: Regulators of Mechanosensation and Other Cellular Processes
Piezo proteins have recently been identified as ion channels mediating mechanosensory transduction in mammalian cells. Characterization of these channels has yielded important insights into mechanisms of somatosensation, as well as other mechano-associated biologic processes such as sensing of shear...
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Published in | The Journal of biological chemistry Vol. 289; no. 46; pp. 31673 - 31681 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
United States
Elsevier Inc
14.11.2014
American Society for Biochemistry and Molecular Biology |
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Abstract | Piezo proteins have recently been identified as ion channels mediating mechanosensory transduction in mammalian cells. Characterization of these channels has yielded important insights into mechanisms of somatosensation, as well as other mechano-associated biologic processes such as sensing of shear stress, particularly in the vasculature, and regulation of urine flow and bladder distention. Other roles for Piezo proteins have emerged, some unexpected, including participation in cellular development, volume regulation, cellular migration, proliferation, and elongation. Mutations in human Piezo proteins have been associated with a variety of disorders including hereditary xerocytosis and several syndromes with muscular contracture as a prominent feature. |
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AbstractList | Piezo proteins have recently been identified as ion channels mediating mechanosensory transduction in mammalian cells. Characterization of these channels has yielded important insights into mechanisms of somatosensation, as well as other mechano-associated biologic processes such as sensing of shear stress, particularly in the vasculature, and regulation of urine flow and bladder distention. Other roles for Piezo proteins have emerged, some unexpected, including participation in cellular development, volume regulation, cellular migration, proliferation, and elongation. Mutations in human Piezo proteins have been associated with a variety of disorders including hereditary xerocytosis and several syndromes with muscular contracture as a prominent feature. Piezo proteins have recently been identified as ion channels mediating mechanosensory transduction in mammalian cells. Characterization of these channels has yielded important insights into mechanisms of somatosensation, as well as other mechano-associated biologic processes such as sensing of shear stress, particularly in the vasculature, and regulation of urine flow and bladder distention. Other roles for Piezo proteins have emerged, some unexpected, including participation in cellular development, volume regulation, cellular migration, proliferation, and elongation. Mutations in human Piezo proteins have been associated with a variety of disorders including hereditary xerocytosis and several syndromes with muscular contracture as a prominent feature.Piezo proteins have recently been identified as ion channels mediating mechanosensory transduction in mammalian cells. Characterization of these channels has yielded important insights into mechanisms of somatosensation, as well as other mechano-associated biologic processes such as sensing of shear stress, particularly in the vasculature, and regulation of urine flow and bladder distention. Other roles for Piezo proteins have emerged, some unexpected, including participation in cellular development, volume regulation, cellular migration, proliferation, and elongation. Mutations in human Piezo proteins have been associated with a variety of disorders including hereditary xerocytosis and several syndromes with muscular contracture as a prominent feature. |
Author | Bagriantsev, Sviatoslav N. Gracheva, Elena O. Gallagher, Patrick G. |
Author_xml | – sequence: 1 givenname: Sviatoslav N. surname: Bagriantsev fullname: Bagriantsev, Sviatoslav N. organization: Department of Cellular and Molecular Physiology, Yale University School of Medicine, New Haven, Connecticut 06520 – sequence: 2 givenname: Elena O. surname: Gracheva fullname: Gracheva, Elena O. organization: Department of Cellular and Molecular Physiology, Yale University School of Medicine, New Haven, Connecticut 06520 – sequence: 3 givenname: Patrick G. surname: Gallagher fullname: Gallagher, Patrick G. email: patrick.gallagher@yale.edu organization: Departments of Pediatrics, Pathology, and Genetics, Yale University School of Medicine, New Haven, Connecticut 06520 |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/25305018$$D View this record in MEDLINE/PubMed |
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Keywords | Neuron Genetic Disease Mechanotransduction Membrane Protein Piezo2 Arthrogryposis Ion Channel Piezo1 Hereditary Xerocytosis Gordon Syndrome Somatosensation |
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Snippet | Piezo proteins have recently been identified as ion channels mediating mechanosensory transduction in mammalian cells. Characterization of these channels has... |
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SubjectTerms | Amino Acid Sequence Anemia, Hemolytic, Congenital - genetics Animals Electrophysiological Phenomena Erythrocytes - cytology Humans Hydrops Fetalis - genetics Ion Channels - chemistry Ion Channels - physiology Mice Minireviews Molecular Sequence Data Mutation Neurons, Afferent - metabolism Osteoclasts - cytology Phylogeny Protein Structure, Tertiary Sequence Homology, Amino Acid |
Title | Piezo Proteins: Regulators of Mechanosensation and Other Cellular Processes |
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