Abstract

Mutations in the NF1 tumor suppressor gene are linked to arteriopathy. Nf1 heterozygosity (Nf1+/–) results in robust neointima formation, similar to humans, and myeloid-restricted Nf1+/– recapitulates this phenotype via MEK-ERK activation. Here we define the contribution of myeloid subpopulations to NF1 arteriopathy. Neutrophils from WT and Nf1+/– mice were functionally assessed in the presence of MEK and farnesylation inhibitors in vitro and neutrophil recruitment to lipopolysaccharide was assessed in WT and Nf1+/– mice. Littermate 12–15 week-old male wildtype and Nf1+/– mice were subjected to carotid artery ligation and provided either a neutrophil depleting antibody (1A8), liposomal clodronate to deplete monocytes/macrophages, or PD0325901 and neointima size was assessed 28 days after injury. Bone marrow transplant experiments assessed monocyte/macrophage mobilization during neointima formation. Nf1+/– neutrophils exhibit enhanced proliferation, migration, and adhesion via p21Ras activation of MEK in vitro and in vivo. Neutrophil depletion suppresses circulating Ly6Clow monocytes and enhances neointima size, while monocyte/macrophage depletion and deletion of CCR2 in bone marrow cells abolish neointima formation in Nf1+/– mice. Taken together, these findings suggest that neurofibromin-MEK-ERK activation in circulating neutrophils and monocytes during arterial remodeling is nuanced and points to important cross-talk between these populations in the pathogenesis of NF1 arteriopathy.

Highlights

  • Mutations in the Neurofibromatosis type 1 (NF1) tumor suppressor gene are linked to arteriopathy

  • In response to granulocyte colony-stimulating factor (G-CSF), Nf1+/– neutrophils exhibit a marked increase in proliferation, adhesion, and migration when compared with WT neutrophils (Fig. 1A–C)

  • In order to interrogate the role of neurofibromin-deficient neutrophils in neointima formation, we provided WT and Nf1+/– mice with a purified monoclonal antibody directed against the Ly6G antigen (1A8) once daily for the first 5 days after carotid artery injury

Read more

Summary

Introduction

Mutations in the NF1 tumor suppressor gene are linked to arteriopathy. Nf1 heterozygosity (Nf1+/–) results in robust neointima formation, similar to humans, and myeloid-restricted Nf1+/– recapitulates this phenotype via MEK-ERK activation. Neutrophil depletion suppresses circulating ­Ly6Clow monocytes and enhances neointima size, while monocyte/macrophage depletion and deletion of CCR2 in bone marrow cells abolish neointima formation in Nf1+/– mice Taken together, these findings suggest that neurofibromin-MEK-ERK activation in circulating neutrophils and monocytes during arterial remodeling is nuanced and points to important cross-talk between these populations in the pathogenesis of NF1 arteriopathy. Commencement of the MEK inhibitor treatment one week after arterial injury lead to an even more potent suppression of neointima size in Nf1+/– mice and significantly reduced the number of myeloid cells (e.g. neutrophils and macrophages) within Nf1+/– ­neointimas[7] Taken together, these observations strongly suggest that perturbations in neurofibrominMEK-ERK signaling promote myeloid-cell mediated VSMC proliferation and arterial stenosis, but little is known about the interaction between discrete myeloid subpopulations and VSMCs and whether targeting individual populations is advantageous to prevent or treat NF1 arteriopathy. We demonstrate that monocytes/macrophages are the major drivers of arterial stenosis in Nf1+/– mice

Methods
Results
Conclusion
Full Text
Paper version not known

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call

Disclaimer: All third-party content on this website/platform is and will remain the property of their respective owners and is provided on "as is" basis without any warranties, express or implied. Use of third-party content does not indicate any affiliation, sponsorship with or endorsement by them. Any references to third-party content is to identify the corresponding services and shall be considered fair use under The CopyrightLaw.