Literature DB >> 16546566

Stretch, tension and adhesion - adaptive mechanisms of the actin cytoskeleton in podocytes.

Nicole Endlich1, Karlhans Endlich.   

Abstract

Podocytes form an epithelial layer on the outer aspect of the basement membrane of glomerular capillaries. The interdigitating pattern of podocyte foot processes (PFPs) generates a unique and extremely long cell-cell contact area - the filtration slit. Thus, the interdigitating PFPs are the morphological basis for the high hydraulic conductivity of the glomerular capillaries. Any disturbance in this interdigitating pattern results in a drop of glomerular filtration rate impairing renal function. PFPs are based on the actin cytoskeleton, consisting of a subplasmalemmal network and a central core of filament bundles. Besides giving PFPs their morphology, the actin cytoskeleton anchors cell-cell contact and cell-matrix proteins in podocytes. Several human genetic diseases as well as transgenic mouse models provide evidence for the crucial role of the actin cytoskeleton in podocytes. Varying flow rates of the filtrate, increased glomerular capillary pressure in glomerular hypertension, and varying activation states of contractile proteins in PFPs impose a mechanical load on the actin cytoskeleton, challenging the intricate arrangement of PFPs and podocyte adhesion. Here we review data about the actin cytoskeleton of podocytes and the response of podocytes to mechanical load. From these data possible mechanisms are emerging how the actin cytoskeleton may allow podocytes to adapt to states of increased mechanical load.

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Year:  2005        PMID: 16546566     DOI: 10.1016/j.ejcb.2005.09.006

Source DB:  PubMed          Journal:  Eur J Cell Biol        ISSN: 0171-9335            Impact factor:   4.492


  25 in total

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Review 7.  Mechanical challenges and cytoskeletal impairments in focal segmental glomerulosclerosis.

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Journal:  Am J Physiol Renal Physiol       Date:  2018-01-24

Review 8.  New insights into molecular mechanisms of diabetic kidney disease.

Authors:  Shawn S Badal; Farhad R Danesh
Journal:  Am J Kidney Dis       Date:  2014-02       Impact factor: 8.860

9.  Homocysteine and Hypertension in Diabetes: Does PPARgamma Have a Regulatory Role?

Authors:  Utpal Sen; Suresh C Tyagi
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10.  Biomechanical strain causes maladaptive gene regulation, contributing to Alport glomerular disease.

Authors:  Daniel T Meehan; Duane Delimont; Linda Cheung; Marisa Zallocchi; Steven C Sansom; J David Holzclaw; Velidi Rao; Dominic Cosgrove
Journal:  Kidney Int       Date:  2009-08-26       Impact factor: 10.612

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