Talin1 dysfunction is genetically linked to systemic capillary leak syndrome.
Kostourou, V.; Elephant, N.; Nikolopoulou, P.; Papadaki, V.; Oz-Levi, D.; Rouni, G.; Sion-Sarid, R.; Edwards, W. J.; Arapatzi, C.; Yanovsky-Dagan, S.; Cowell, A. R.; Meiner, V.; Vainstein, V.; Grammenoudi, S.; Lancet, D.; Gould, B. T.; Harel, T.
Show abstract
Systemic capillary leak syndrome (SCLS) is a rare life-threatening disorder due to profound vascular leak. The trigger and the cause of the disease is currently unknown and there is no specific treatment. Here, we identified a rare heterozygous splice-site variant in the TLN1 gene in a familial SCLS case, suggestive of autosomal dominant inheritance with incomplete penetrance. Talin1 has a key role in cell adhesions by activating and linking integrins to the actin cytoskeleton. This variant causes in-frame skipping of exon 54 and is predicted to affect talins c-terminal actin binding site (ABS3). Modelling the SCLS-TLN1 variant by mimicking the actin-binding disruption in TLN1 heterozygous endothelial cells resulted in disorganized endothelial adherens junctions. Mechanistically, we established that disruption of talins ABS3 sequestrates talins interacting partner, vinculin, at cell-extracellular matrix adhesions, leading to destabilization of the endothelial barrier. We propose that pathogenic variant in TLN1 underlie SCLS, providing insight into the molecular mechanism of the disease which can be explored for future therapeutic interventions. SUMMARYSystemic capillary leak syndrome (SCLS) is a rare potentially lethal disease with unknown etiology and non-specific treatment. Here, we established a heterozygous splice variant of talin1, a key cell adhesion protein, as a genetic link to a familial SCLS case.
Matching journals
The top 9 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A loss-of-function cysteine mutant in fibulin-3 (EFEMP1) forms aberrant extracellular disulfide-linked homodimers and alters extracellular matrix composition 96%
- Imaging-based evaluation of pathogenicity by novel DNM2 variants associated with centronuclear myopathy 93%
- Spectrum of pathogenic variants and multiple founder effects in amelogenesis imperfecta associated with MMP20 93%
Similar papers in this journal
- Arpin deficiency increases actomyosin contractility and vascular permeability 95%
- Coalescent RNA-localizing and transcriptional activities of SAM68 modulate adhesion and subendothelial basement membrane assembly 94%
- Claudin5 protects the peripheral endothelial barrier in an organ and vessel type-specific manner 94%
Similar papers in this journal
- Chloride intracellular channel (CLIC) protein function in S1P-induced Rac1 activation requires membrane localization of the C-terminus, but not thiol-transferase nor ion channel activities. 95%
- NRP2 as an emerging angiogenic player; promoting endothelial cell adhesion and migration by regulating recycling of α5 integrin. 92%
- Induced Arp2/3 complex depletion increases FMNL2/3 formin expression and filopodia formation 92%
Similar papers in this journal
- Functional analysis of cell lines derived from SMAD3-related Loeys-Dietz Syndrome patients provides insights into genotype-phenotype relations 93%
- Loss of CHCHD2 and CHCHD10 activates OMA1 peptidase to disrupt mitochondrial cristae phenocopying patient mutations in vivo 92%
- Specific OCRL1 patient mutations differentially impact Lowe Syndrome cellular phenotypes 92%
Similar papers in this journal
- The concerted action of SEPT9 and EPLIN modulates the adhesion and migration of human fibroblasts 93%
- Regulation of Liprin-α phase separation by CASK is disrupted by a mutation in its CaM kinase domain 93%
- The ADAM17 sheddase complex regulator iTAP modulates inflammation, epithelial repair, and tumor growth 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.