Biallelic mutations in LAMA5 disrupts a skeletal noncanonical focal adhesion pathway and produces a distinct bent bone dysplasia.
Loading...
Files
Identifiers
Publication date
Reading date
Authors
Barad, Maya
Csukasi, Fabiana
Kunova-Bosakova, Michaela
Martin, Jorge H.
Zhang, Wenjuan
Taylor, Paige
Lachman, Ralph
Zieba, Jennifer
Bamshad, Michael
Nickerson, Deborah
Collaborators
Advisors
Tutors
Editors
Journal Title
Journal ISSN
Volume Title
Publisher
Elsevier
Share
Center
Department/Institute
Abstract
Background
Beyond its structural role in the skeleton, the extracellular matrix (ECM), particularly basement membrane proteins, facilitates communication with intracellular signaling pathways and cell to cell interactions to control differentiation, proliferation, migration and survival. Alterations in extracellular proteins cause a number of skeletal disorders, yet the consequences of an abnormal ECM on cellular communication remains less well understood
Methods
Clinical and radiographic examinations defined the phenotype in this unappreciated bent bone skeletal disorder. Exome analysis identified the genetic alteration, confirmed by Sanger sequencing. Quantitative PCR, western blot analyses, immunohistochemistry, luciferase assay for WNT signaling were employed to determine RNA, proteins levels and localization, and dissect out the underlying cell signaling abnormalities. Migration and wound healing assays examined cell migration properties.
Findings
This bent bone dysplasia resulted from biallelic mutations in LAMA5, the gene encoding the alpha-5 laminin basement membrane protein. This finding uncovered a mechanism of disease driven by ECM-cell interactions between alpha-5-containing laminins, and integrin-mediated focal adhesion signaling, particularly in cartilage. Loss of LAMA5 altered β1 integrin signaling through the non-canonical kinase PYK2 and the skeletal enriched SRC kinase, FYN. Loss of LAMA5 negatively impacted the actin cytoskeleton, vinculin localization, and WNT signaling.
Interpretation
This newly described mechanism revealed a LAMA5-β1 Integrin-PYK2-FYN focal adhesion complex that regulates skeletogenesis, impacted WNT signaling and, when dysregulated, produced a distinct skeletal disorder.
Description
Bibliographic citation
Maya Barad, Fabiana Csukasi, Michaela Bosakova, Jorge H. Martin, Wenjuan Zhang, S. Paige Taylor, Ralph S. Lachman, Jennifer Zieba, Michael Bamshad, Deborah Nickerson, Jessica X. Chong, Daniel H. Cohn, Pavel Krejci, Deborah Krakow, Ivan Duran, Biallelic mutations in LAMA5 disrupts a skeletal noncanonical focal adhesion pathway and produces a distinct bent bone dysplasia, eBioMedicine, Volume 62, 2020, 103075, ISSN 2352-3964, https://doi.org/10.1016/j.ebiom.2020.103075.






