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EPB41L5 Controls Podocyte Extracellular Matrix Assembly by Adhesome-dependent Force Transmission
  • Language: en

EPB41L5 Controls Podocyte Extracellular Matrix Assembly by Adhesome-dependent Force Transmission

  • Type: Book
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  • Published: 2021
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  • Publisher: Unknown

Abstract: The integrity of the kidney filtration barrier essentially relies on the balanced interplay of podocytes and the glomerular basement membrane (GBM). Here, we show by analysis of in vitro and in vivo models that a loss of the podocyte-specific FERM-domain protein EPB41L5 results in impaired extracellular matrix (ECM) assembly. By using quantitative proteomics analysis of the secretome and matrisome, we demonstrate a shift in ECM composition characterized by diminished deposition of core GBM components, such as LAMA5. Integrin adhesome proteomics reveals that EPB41L5 recruits PDLIM5 and ACTN4 to integrin adhesion complexes (IACs). Consecutively, EPB41L5 knockout podocytes show insufficient maturation of integrin adhesion sites, which translates into impaired force transmission and ECM assembly. These observations build the framework for a model in which EPB41L5 functions as a cell-type-specific regulator of the podocyte adhesome and controls a localized adaptive module in order to prevent podocyte detachment and thereby ensures GBM integrity

Quantification of Nanoscale Forces in Lectin-mediated Bacterial Attachment and Uptake Into Giant Liposomes
  • Language: en

Quantification of Nanoscale Forces in Lectin-mediated Bacterial Attachment and Uptake Into Giant Liposomes

  • Type: Book
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  • Published: 2021
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  • Publisher: Unknown

Abstract: Interactions of the bacterial lectin LecA with the host cells glycosphingolipid Gb3 have been shown to be crucial for the cellular uptake of the bacterium Pseudomonas aeruginosa. LecA-induced Gb3 clustering, referred to as lipid zipper mechanism, leads to full membrane engulfment of the bacterium. Here, we aim for a nanoscale force characterization of this mechanism using two complementary force probing techniques, atomic force microscopy (AFM) and optical tweezers (OT). The LecA-Gb3 interactions are reconstituted using giant unilamellar vesicles (GUVs), a well-controlled minimal system mimicking the plasma membrane and nanoscale forces between either bacteria (PAO1 wild-type and L...

FERMT2 Links Cortical Actin Structures, Plasma Membrane Tension and Focal Adhesion Function to Stabilize Podocyte Morphology
  • Language: en

FERMT2 Links Cortical Actin Structures, Plasma Membrane Tension and Focal Adhesion Function to Stabilize Podocyte Morphology

  • Type: Book
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  • Published: 2018
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  • Publisher: Unknown

Abstract: Simplification and retraction of podocyte protrusions, generally termed as foot process effacement, is a uniform pathological pattern observed in the majority of glomerular disease, including focal segmental glomerulosclerosis. However, it is still incompletely understood how the interaction of cortical actin structures, actomyosin contractility and focal adhesions, is being orchestrated to control foot process morphology in health and disease. By uncovering the functional role of fermitin family member 2 (FERMT2 or kindlin-2) in podocytes, we provide now evidence, how cell-extracellular matrix (ECM) interactions modulate membrane tension and actomyosin contractility. A genetic mod...

Using the Drosophila Nephrocyte to Model Podocyte Function and Disease
  • Language: en
A Multi-layered Quantitative in Vivo Expression Atlas of the Podocyte Unravels Kidney Disease Candidate Genes
  • Language: en

A Multi-layered Quantitative in Vivo Expression Atlas of the Podocyte Unravels Kidney Disease Candidate Genes

  • Type: Book
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  • Published: 2018
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  • Publisher: Unknown

Abstract: Damage to and loss of glomerular podocytes has been identified as the culprit lesion in progressive kidney diseases. Here, we combine mass spectrometry-based proteomics with mRNA sequencing, bioinformatics, and hypothesis-driven studies to provide a comprehensive and quantitative map of mammalian podocytes that identifies unanticipated signaling pathways. Comparison of the in vivo datasets with proteomics data from podocyte cell cultures showed a limited value of available cell culture models. Moreover, in vivo stable isotope labeling by amino acids uncovered surprisingly rapid synthesis of mitochondrial proteins under steady-state conditions that was perturbed under autophagy-deficient, disease-susceptible conditions. Integration of acquired omics dimensions suggested FARP1 as a candidate essential for podocyte function, which could be substantiated by genetic analysis in humans and knockdown experiments in zebrafish. This work exemplifies how the integration of multi-omics datasets can identify a framework of cell-type-specific features relevant for organ health and disease

Biallelic Loss of Function Variants in PPP1R21 Cause a Neurodevelopmental Syndrome with Impaired Endocytic Function
  • Language: en

Biallelic Loss of Function Variants in PPP1R21 Cause a Neurodevelopmental Syndrome with Impaired Endocytic Function

  • Type: Book
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  • Published: 2019
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  • Publisher: Unknown

Abstract: Next-generation sequencing (NGS) has been instrumental in solving the genetic basis of rare inherited diseases, especially neurodevelopmental syndromes. However, functional workup is essential for precise phenotype definition and to understand the underlying disease mechanisms. Using whole exome (WES) and whole genome sequencing (WGS) in four independent families with hypotonia, neurodevelopmental delay, facial dysmorphism, loss of white matter, and thinning of the corpus callosum, we identified four previously unreported homozygous truncating PPP1R21 alleles: c.347delT p.(Ile116Lysfs*25), c.2170_2171insGGTA p.(Ile724Argfs*8), c.1607dupT p.(Leu536Phefs*7), c.2063delA p.(Lys688Serfs...

A YAP/TAZ-ARHGAP29-RhoA Signaling Axis Regulates Podocyte Protrusions and Integrin Adhesions
  • Language: en

A YAP/TAZ-ARHGAP29-RhoA Signaling Axis Regulates Podocyte Protrusions and Integrin Adhesions

  • Type: Book
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  • Published: 2023
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  • Publisher: Unknown

Abstract: Glomerular disease due to podocyte malfunction is a major factor in the pathogenesis of chronic kidney disease. Identification of podocyte-specific signaling pathways is therefore a prerequisite to characterizing relevant disease pathways and developing novel treatment approaches. Here, we employed loss of function studies for EPB41L5 (Yurt) as a central podocyte gene to generate a cell type-specific disease model. Loss of Yurt in fly nephrocytes caused protein uptake and slit diaphragm defects. Transcriptomic and proteomic analysis of human EPB41L5 knockout podocytes demonstrated impaired mechanotransduction via the YAP/TAZ signaling pathway. Further analysis of specific inhibitio...