Endothelial Insulin Receptors Promote VEGF-A Signaling via ERK1/2 and Sprouting Angiogenesis.
Andrew M N WalkerNele WarmkeBen MercerNicole T WattRomana MughalJessica SmithStacey GallowayNatalie J HaywoodTaha SoomroKathryn J GriffinStephen B WheatcroftNadira Y YuldashevaDavid J BeechPeter CarmelietMark T KearneyRichard M CubbonPublished in: Endocrinology (2021)
Endothelial insulin receptors (Insr) promote sprouting angiogenesis, although the underpinning cellular and molecular mechanisms are unknown. Comparing mice with whole-body insulin receptor haploinsufficiency (Insr+/-) against littermate controls, we found impaired limb perfusion and muscle capillary density after inducing hind-limb ischemia; this was in spite of increased expression of the proangiogenic growth factor Vegfa. Insr+/- neonatal retinas exhibited reduced tip cell number and branching complexity during developmental angiogenesis, which was also found in separate studies of mice with endothelium-restricted Insr haploinsufficiency. Functional responses to vascular endothelial growth factor A (VEGF-A), including in vitro angiogenesis, were also impaired in aortic rings and pulmonary endothelial cells from Insr+/- mice. Human umbilical vein endothelial cells with shRNA-mediated knockdown of Insr also demonstrated impaired functional angiogenic responses to VEGF-A. VEGF-A signaling to Akt and endothelial nitric oxide synthase was intact, but downstream signaling to extracellular signal-reduced kinase 1/2 (ERK1/2) was impaired, as was VEGF receptor-2 (VEGFR-2) internalization, which is required specifically for signaling to ERK1/2. Hence, endothelial insulin receptors facilitate the functional response to VEGF-A during angiogenic sprouting and are required for appropriate signal transduction from VEGFR-2 to ERK1/2.
Keyphrases
- vascular endothelial growth factor
- endothelial cells
- signaling pathway
- type diabetes
- high glucose
- growth factor
- cell proliferation
- nitric oxide synthase
- nitric oxide
- pi k akt
- glycemic control
- high fat diet induced
- heart failure
- stem cells
- single cell
- left ventricular
- insulin resistance
- magnetic resonance imaging
- metabolic syndrome
- pulmonary artery
- coronary artery
- aortic valve
- bone marrow
- magnetic resonance