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- Sebastian Brähler
- Department of Pathology and Immunology and
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- Haiyang Yu
- Department of Pathology and Immunology and
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- Hani Suleiman
- Department of Pathology and Immunology and
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- Gokul M. Krishnan
- Department of Pathology and Immunology and
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- Brian T. Saunders
- Department of Pathology and Immunology and
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- Jeffrey B. Kopp
- Kidney Diseases Branch, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, Maryland
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- Jeffrey H. Miner
- Division of Nephrology, Washington University School of Medicine, St. Louis, Missouri; and
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- Bernd H. Zinselmeyer
- Department of Pathology and Immunology and
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- Andrey S. Shaw
- Department of Pathology and Immunology and
説明
<jats:p>In glomerular disease, podocyte injury results in a dramatic change in cell morphology known as foot process effacement. Remodeling of the actin cytoskeleton through the activity of small GTPases was identified as a key mechanism in effacement, with increased membrane activity and motility <jats:italic toggle="yes">in vitro</jats:italic>. However, whether podocytes are stationary or actively moving cells <jats:italic toggle="yes">in vivo</jats:italic> remains debated. Using intravital and kidney slice two–photon imaging of the three-dimensional structure of mouse podocytes, we found that uninjured podocytes remained nonmotile and maintained a canopy-shaped structure over time. On expression of constitutively active Rac1, however, podocytes changed shape by retracting processes and clearly exhibited domains of increased membrane activity. Constitutive activation of Rac1 also led to podocyte detachment from the glomerular basement membrane, and we detected detached podocytes crawling on the surface of the tubular epithelium and occasionally, in contact with peritubular capillaries. Podocyte membrane activity also increased in the inflammatory environment of immune complex–mediated GN. Our results provide evidence that podocytes transition from a static to a dynamic state <jats:italic toggle="yes">in vivo</jats:italic>, shedding new light on mechanisms in foot process effacement.</jats:p>
収録刊行物
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- Journal of the American Society of Nephrology
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Journal of the American Society of Nephrology 27 (11), 3285-3290, 2016-04-01
Ovid Technologies (Wolters Kluwer Health)