[F31] Investigating the role of AP-1 during craniofacial ligament regeneration
Ente: National Institute of Dental and Craniofacial Research
Scadenza: 2028-08-31
Importo max: $50,914
Paese: US
Descrizione
PROJECT SUMMARY/ABSTRACT
Ligaments are dense connective tissue structures that provide stability to joints and enable movement.
Ligament injury induces a healing response that is characterized by the formation of a fibrotic scar. This scar
tissue is often weaker and lacks the biochemical and biomechanical properties of the native structure. To date,
there are no effective treatment strategies that can promote a regenerative response to repair ligaments following
injury. To enhance ligament healing, it is important to understand the cellular mechanisms that promote scar-
free ligament regeneration. Our lab has developed a novel injury model to study scar-free ligament regeneration
by utilizing the highly regenerative zebrafish as a model organism. We demonstrate that zebrafish have the
capacity to regenerate their craniofacial interopercular mandibular (IOM) ligament following transection without
forming a fibrotic scar. Craniofacial ligament regeneration in zebrafish is driven by a series of fate changes where
pre-existing ligamentocytes in the left-over ligament stubs lose their ligament cell fate characteristics and
undergo dedifferentiation. Dedifferentiated ligamentocytes give rise to a regenerative mesenchymal cell
population that bridges the injury gap then undergoes redifferentiation by reestablishing ligament cell fate. Our
single nuclei assay for transposase accessible chromatin sequencing (snATAC-seq) dataset derived from cranial
neural crest derived cells reveal that regions with increased accessibility in ligamentocytes and regenerative
mesenchymal cells after injury have enriched transcription factor binding sites corresponding to AP-1, Fos::Jun
motifs. AP-1 transcription factors consist primarily of Fos and Jun proteins and are immediate-early genes that
are expressed after connective tissue injury in poorly regenerative species. Preliminary experiments demonstrate
that the phosphorylation of Jun increases following ligament injury. This suggests Jun is transcriptionally active
and likely forming complexes with Fos proteins. Furthermore, inhibition of Jun phosphorylation prevents
ligamentocyte dedifferentiation. This preliminary data showcases an important role of AP-1 during the early
stages of ligament regeneration. However, the role of AP-1 during regeneration in during connective tissue
regeneration in zebrafish and scar formation in poorly regenerative species remain unclear. To further investigate
the role of AP-1 during ligament regeneration, I aim to utilize chemical and genetic approaches to test the
requirement of AP-1 for craniofacial ligament regeneration. Additionally, I aim to identify novel targets of AP-1
whose activation is specific to zebrafish ligament regeneration but remain inactive during scarred connective
tissue healing. Through combined genetic and cross species analysis, we will provide a broad
mechanistic insight as to how AP-1 functions during zebrafish craniofacial ligament regeneration and
how it diffe
Istituzione: COLUMBIA UNIVERSITY HEALTH SCIENCES
PI: Safiyah Teran-Sari Ali
Progetto: 1F31DE036094-01
Settori: National Institute of Dental and Craniofacial Research
Vai al bando originale
Registrati gratis su Bandolo per trovare bandi compatibili con la tua azienda.