Javascript must be enabled to continue!
Filopodia are dispensable for endothelial tip cell guidance
View through CrossRef
Actin filaments are instrumental in driving processes such as migration, cytokinesis and endocytosis and provide cells with mechanical support. During angiogenesis, actin-rich filopodia protrusions have been proposed to drive endothelial tip cell functions by translating guidance cues into directional migration and mediating new contacts during anastomosis. To investigate the structural organisation, dynamics and functional importance of F-actin in endothelial cells (ECs) during angiogenesis in vivo, we generated a transgenic zebrafish line expressing Lifeact-EGFP in ECs. Live imaging identifies dynamic and transient F-actin-based structures, such as filopodia, contractile ring and cell cortex, and more persistent F-actin-based structures, such as cell junctions. For functional analysis, we used low concentrations of Latrunculin B that preferentially inhibited F-actin polymerisation in filopodia. In the absence of filopodia, ECs continued to migrate, albeit at reduced velocity. Detailed morphological analysis reveals that ECs generate lamellipodia that are sufficient to drive EC migration when filopodia formation is inhibited. Vessel guidance continues unperturbed during intersegmental vessel development in the absence of filopodia. Additionally, hypersprouting induced by loss of Dll4 and attraction of aberrant vessels towards ectopic sources of Vegfa165 can occur in the absence of endothelial filopodia protrusion. These results reveal that the induction of tip cells and the integration of endothelial guidance cues do not require filopodia. Anastomosis, however, shows regional variations in filopodia requirement, suggesting that ECs might rely on different protrusive structures depending on the nature of the environment or of angiogenic cues.
Title: Filopodia are dispensable for endothelial tip cell guidance
Description:
Actin filaments are instrumental in driving processes such as migration, cytokinesis and endocytosis and provide cells with mechanical support.
During angiogenesis, actin-rich filopodia protrusions have been proposed to drive endothelial tip cell functions by translating guidance cues into directional migration and mediating new contacts during anastomosis.
To investigate the structural organisation, dynamics and functional importance of F-actin in endothelial cells (ECs) during angiogenesis in vivo, we generated a transgenic zebrafish line expressing Lifeact-EGFP in ECs.
Live imaging identifies dynamic and transient F-actin-based structures, such as filopodia, contractile ring and cell cortex, and more persistent F-actin-based structures, such as cell junctions.
For functional analysis, we used low concentrations of Latrunculin B that preferentially inhibited F-actin polymerisation in filopodia.
In the absence of filopodia, ECs continued to migrate, albeit at reduced velocity.
Detailed morphological analysis reveals that ECs generate lamellipodia that are sufficient to drive EC migration when filopodia formation is inhibited.
Vessel guidance continues unperturbed during intersegmental vessel development in the absence of filopodia.
Additionally, hypersprouting induced by loss of Dll4 and attraction of aberrant vessels towards ectopic sources of Vegfa165 can occur in the absence of endothelial filopodia protrusion.
These results reveal that the induction of tip cells and the integration of endothelial guidance cues do not require filopodia.
Anastomosis, however, shows regional variations in filopodia requirement, suggesting that ECs might rely on different protrusive structures depending on the nature of the environment or of angiogenic cues.
Related Results
Filopodia numbers impact chemotactic migration speed
Filopodia numbers impact chemotactic migration speed
Summary
Migrating cells sense and respond to external chemical and physical cues, enabling them to efficiently reach their destinations. Filopodi...
Regulation of filopodia by transmembrane agrin
Regulation of filopodia by transmembrane agrin
Filopodial activity is implicated in control of growth and movement in many cell types. Neuronal filopodia are involved in control of axon guidance, neurite branching and in synaps...
Complex Collision Tumors: A Systematic Review
Complex Collision Tumors: A Systematic Review
Abstract
Introduction: A collision tumor consists of two distinct neoplastic components located within the same organ, separated by stromal tissue, without histological intermixing...
MARS-seq2.0: an experimental and analytical pipeline for indexed sorting combined with single-cell RNA sequencing v1
MARS-seq2.0: an experimental and analytical pipeline for indexed sorting combined with single-cell RNA sequencing v1
Human tissues comprise trillions of cells that populate a complex space of molecular phenotypes and functions and that vary in abundance by 4–9 orders of magnitude. Relying solely ...
Susceptibility towards Irradiation-Induced Bone Marrow (BM) Dysplasia in Vivo Is Determined by the BM Vasculogenic Phenotype: Correlation with MDS Patients BM Samples
Susceptibility towards Irradiation-Induced Bone Marrow (BM) Dysplasia in Vivo Is Determined by the BM Vasculogenic Phenotype: Correlation with MDS Patients BM Samples
Abstract
Bone marrow (BM) endothelial cells regulate hematopoiesis by promoting mobilization, survival and proliferation of hematopoietic progenitors. Interfering wi...
Breast Cancer Susceptibility Gene 2 Deficiency Exacerbates Angiotensin‐II‐induced Endothelial Dysfunction and Apoptosis
Breast Cancer Susceptibility Gene 2 Deficiency Exacerbates Angiotensin‐II‐induced Endothelial Dysfunction and Apoptosis
BackgroundGerm‐line mutations in the tumour suppressor genes BRCA1 and BRCA2 (BReast CAncer susceptibility genes 1 & 2) predispose carriers to breast cancer. BRCA1 and BRCA2 he...
Endothelial Cell‐Secreted Semaphorin 3F Promotes Proximal Tubule Cell Maturation and Polarization
Endothelial Cell‐Secreted Semaphorin 3F Promotes Proximal Tubule Cell Maturation and Polarization
Endothelial cells secrete trophic factors that contribute to the maturation of surrounding tissues. The notion of the microvasculature as niche for local differentiation and homeos...
Eicosanoid regulation of angiogenesis: role of endothelial arachidonate 12-lipoxygenase
Eicosanoid regulation of angiogenesis: role of endothelial arachidonate 12-lipoxygenase
AbstractAngiogenesis, the formation of new capillaries from preexisting blood vessels, is a multistep, highly orchestrated process involving vessel sprouting, endothelial cell migr...

