Dynamically regulated focal adhesions coordinate endothelial cell remodelling in developing vasculature

Author:

Chau Tevin C. Y.1ORCID,Keyser Mikaela S.1ORCID,Da Silva Jason A.1,Morris Elysse K.1ORCID,Yordanov Teodor E.1ORCID,Duscyz Kinga P.1,Paterson Scott2,Yap Alpha S.1ORCID,Hogan Benjamin M.23ORCID,Lagendijk Anne Karine14ORCID

Affiliation:

1. Institute for Molecular Bioscience, The University of Queensland 1 Division of Cell and Developmental Biology , , St Lucia, Queensland 4072 , Australia

2. Peter MacCallum Cancer Centre and The PeterMac Callum Department of Oncology, The University of Melbourne 2 Organogenesis and Cancer Program , , Melbourne, Victoria 3000 , Australia

3. The University of Melbourne 3 Department of Anatomy and Physiology , , Parkville, Victoria 3010 , Australia

4. The University of Queensland 4 School of Biomedical Sciences , , Brisbane, Queensland 4072 , Australia

Abstract

ABSTRACT The assembly of a mature vascular network involves coordinated endothelial cell (EC) shape changes, including the process of EC elongation. How EC elongation is dynamically regulated in vivo is not fully understood. Here, we have generated a zebrafish mutant that is deficient for the integrin adaptor protein Talin 1 (Tln1). Using a new focal adhesion (FA) marker line expressing endothelial Vinculinb-eGFP, we demonstrate that EC FAs function dynamically and are lost in our tln1 mutants, allowing us to uncouple the primary roles of FAs in EC morphogenesis from the secondary effects that occur due to systemic vessel failure or loss of blood flow. Tln1 loss led to compromised F-actin rearrangements, perturbed EC elongation and disrupted cell-cell junction linearisation in vessel remodelling. Finally, chemical induction of actin polymerisation restored actin dynamics and EC elongation during vascular morphogenesis. Together, we identify that FAs are essential for EC elongation and junction linearisation in flow-pressured vessels and that they influence actin polymerisation in cellular morphogenesis. These observations can explain the severely compromised vessel beds and vascular leakage observed in mutant models that lack integrin signalling. This article has an associated ‘The people behind the papers’ interview.

Funder

University of Queensland

National Health and Medical Research Council

Australian Research Council

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

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