4.2 Review

Podocyte polarity signalling

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出版社

LIPPINCOTT WILLIAMS & WILKINS
DOI: 10.1097/MNH.0b013e32832e316d

关键词

planar cell polarity; podocyte; polarity; proteinuria; slit diaphragm

资金

  1. Deutsche Forschungsgemeinschaft DFG [SI 1303/3-1]
  2. Deutsche Nierenstiftung [HU 1016/2-1, SFB 592]
  3. Excellence Initiative of the German Federal and State Governments [EXC 294]

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Purpose of review The glomerular filtration barrier is a unique structure characterized by a specialized three-dimensional framework of podocytes. This review is aimed at describing the latest advances made in the understanding of polarity signalling pathways regulating the formation and the maintenance of the complex podocyte architecture. Recent findings Podocytes are composed of a large cell body that extends primary and secondary processes. An apicobasal polarity axis allows for podocyte orientation between the urinary space and the glomerular basement membrane. Recent studies document that conserved polarity protein complexes such as the partitioning defective 3 (Par3), partitioning defective 6 (Ill and atypical protein kinase C (all complex are essential regulators of podocyte morphology. Glomerular development, slit diaphragm targeting and apicobasolateral distribution of molecules seem to be tightly regulated by these polarity signalling pathways. Summary Accumulating evidence indicates that conserved polarity protein complexes are essential for normal podocyte morphology and differentiation. The diseased podocyte, which typically presents with foot process effacement, might require these molecular guideposts when recovering from stress and when restoring normal podocyte morphology.

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