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Role and Implications of the CXCL12/CXCR4/CXCR7 Axis in Atherosclerosis: Still a Debate

Overview
Journal Ann Med
Publisher Informa Healthcare
Specialty General Medicine
Date 2021 Sep 8
PMID 34494495
Citations 22
Authors
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Abstract

Atherosclerosis is one of the leading causes of mortality and morbidity worldwide. Chemokines and their receptors are implicated in the pathogenesis of atherosclerosis. CXCL12 is a member of the chemokine family exerting a myriad role in atherosclerosis through its classical CXCR4 and atypical ACKR3 (CXCR7) receptors. The modulatory and regulatory functional spectrum of CXCL12/CXCR4/ACKR3 axis in atherosclerosis spans from proatherogenic, prothrombotic and proinflammatory to atheroprotective, plaque stabilizer and dyslipidemia rectifier. This diverse continuum is executed in a wide range of biological units including endothelial cells (ECs), progenitor cells, macrophages, monocytes, platelets, lymphocytes, neutrophils and vascular smooth muscle cells (VSMCs) through complex heterogeneous and homogenous coupling of CXCR4 and ACKR3 receptors, employing different downstream signalling pathways, which often cross-talk among themselves and with other signalling interactomes. Hence, a better understanding of this structural and functional heterogeneity and complex phenomenon involving CXCL12/CXCR4/ACKR3 axis in atherosclerosis would not only help in formulation of novel therapeutics, but also in elucidation of the CXCL12 ligand and its receptors, as possible diagnostic and prognostic biomarkers.Key messagesThe role of CXCL12 is proatherogenic in atherosclerosis development and progression.The CXCL12 receptors, CXCR4 and ACKR3 perform both proatherogenic and athero-protective functions in various cell typesDue to functional heterogeneity and cross talk of CXCR4 and ACKR3 at receptor level and downstream pathways, regional boosting with specific temporal and spatial modulators of CXCL12, CXCR4 and ACKR3 need to be explored.

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References
1.
LaRocca T, Fabris F, Chen J, Benhayon D, Zhang S, McCollum L . Na+/Ca2+ exchanger-1 protects against systolic failure in the Akitains2 model of diabetic cardiomyopathy via a CXCR4/NF-κB pathway. Am J Physiol Heart Circ Physiol. 2012; 303(3):H353-67. PMC: 3423163. DOI: 10.1152/ajpheart.01198.2011. View

2.
Decaillot F, Kazmi M, Lin Y, Ray-Saha S, Sakmar T, Sachdev P . CXCR7/CXCR4 heterodimer constitutively recruits beta-arrestin to enhance cell migration. J Biol Chem. 2011; 286(37):32188-97. PMC: 3173186. DOI: 10.1074/jbc.M111.277038. View

3.
Gomes A, Carvalho T, Serpa J, Torre C, Dias S . Hypercholesterolemia promotes bone marrow cell mobilization by perturbing the SDF-1:CXCR4 axis. Blood. 2009; 115(19):3886-94. DOI: 10.1182/blood-2009-08-240580. View

4.
Wang J, He L, Combs C, Roderiquez G, Norcross M . Dimerization of CXCR4 in living malignant cells: control of cell migration by a synthetic peptide that reduces homologous CXCR4 interactions. Mol Cancer Ther. 2006; 5(10):2474-83. DOI: 10.1158/1535-7163.MCT-05-0261. View

5.
Kobayashi K, Sato K, Kida T, Omori K, Hori M, Ozaki H . Stromal cell-derived factor-1α/C-X-C chemokine receptor type 4 axis promotes endothelial cell barrier integrity via phosphoinositide 3-kinase and Rac1 activation. Arterioscler Thromb Vasc Biol. 2014; 34(8):1716-22. DOI: 10.1161/ATVBAHA.114.303890. View