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Hematopoietic G-protein-coupled receptor kinase 2 deficiency decreases atherosclerotic lesion formation in LDL receptor-knockout mice. | LitMetric

AI Article Synopsis

  • Leukocyte chemotaxis plays a key role in the formation and progression of atherosclerosis, influenced by G-protein-coupled receptors and GRK2.
  • A study on LDL receptor-deficient mice with a partial deficiency of GRK2 showed a significant reduction in plaque development and changes in immune cell composition, indicating myeloid cells as crucial players in this process.
  • The research suggests that targeting hematopoietic GRK2 could be a potential strategy for preventing the advancement of atherosclerosis.

Article Abstract

Leukocyte chemotaxis is deemed instrumental in initiation and progression of atherosclerosis. It is mediated by G-protein-coupled receptors (e.g., CCR2 and CCR5), the activity of which is controlled by G-protein-coupled receptor kinases (GRKs). In this study, we analyzed the effect of hematopoietic deficiency of a potent regulator kinase of chemotaxis (GRK2) on atherogenesis. LDL receptor-deficient (LDLr(-/-)) mice with heterozygous hematopoietic GRK2 deficiency, generated by bone marrow transplantation (n=15), displayed a dramatic attenuation of plaque development, with 79% reduction in necrotic core and increased macrophage content. Circulating monocytes decreased and granulocytes increased in GRK2(+/-) chimeras, which could be attributed to diminished granulocyte colony-forming units in bone marrow. Collectively, these data pointed to myeloid cells as major mediators of the impaired atherogenic response in GRK2(+/-) chimeras. LDLr(-/-) mice with macrophage/granulocyte-specific GRK2 deficiency (LysM-Cre GRK2(flox/flox); n=8) failed to mimic the aforementioned phenotype, acquitting these cells as major responsible subsets for GRK2 deficiency-associated atheroprotection. To conclude, even partial hematopoietic GRK2 deficiency prevents atherosclerotic lesion progression beyond the fatty streak stage, identifying hematopoietic GRK2 as a potential target for intervention in atherosclerosis.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3528319PMC
http://dx.doi.org/10.1096/fj.12-205351DOI Listing

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