Literature DB >> 25032954

Chemokine (C-X-C motif) receptor 4 and atypical chemokine receptor 3 regulate vascular α₁-adrenergic receptor function.

Harold H Bach1, Yee M Wong2, Abhishek Tripathi2, Amanda M Nevins3, Richard L Gamelli2, Brian F Volkman3, Kenneth L Byron4, Matthias Majetschak1.   

Abstract

Chemokine (C-X-C motif) receptor (CXCR) 4 and atypical chemokine receptor (ACKR) 3 ligands have been reported to modulate cardiovascular function in various disease models. The underlying mechanisms, however, remain unknown. Thus, it was the aim of the present study to determine how pharmacological modulation of CXCR4 and ACKR3 regulate cardiovascular function. In vivo administration of TC14012, a CXCR4 antagonist and ACKR3 agonist, caused cardiovascular collapse in normal animals. During the cardiovascular stress response to hemorrhagic shock, ubiquitin, a CXCR4 agonist, stabilized blood pressure, whereas coactivation of CXCR4 and ACKR3 with CXC chemokine ligand 12 (CXCL12), or blockade of CXCR4 with AMD3100 showed opposite effects. While CXCR4 and ACKR3 ligands did not affect myocardial function, they selectively altered vascular reactivity upon α1-adrenergic receptor (AR) activation in pressure myography experiments. CXCR4 activation with ubiquitin enhanced α1-AR-mediated vasoconstriction, whereas ACKR3 activation with various natural and synthetic ligands antagonized α1-AR-mediated vasoconstriction. The opposing effects of CXCR4 and ACKR3 activation by CXCL12 could be dissected pharmacologically. CXCR4 and ACKR3 ligands did not affect vasoconstriction upon activation of voltage-operated Ca(2+) channels or endothelin receptors. Effects of CXCR4 and ACKR3 agonists on vascular α1-AR responsiveness were independent of the endothelium. These findings suggest that CXCR4 and ACKR3 modulate α1-AR reactivity in vascular smooth muscle and regulate hemodynamics in normal and pathological conditions. Our observations point toward CXCR4 and ACKR3 as new pharmacological targets to control vasoreactivity and blood pressure.

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Year:  2014        PMID: 25032954      PMCID: PMC4212013          DOI: 10.2119/molmed.2014.00101

Source DB:  PubMed          Journal:  Mol Med        ISSN: 1076-1551            Impact factor:   6.354


  66 in total

Review 1.  Seven-transmembrane-spanning receptors and heart function.

Authors:  Howard A Rockman; Walter J Koch; Robert J Lefkowitz
Journal:  Nature       Date:  2002-01-10       Impact factor: 49.962

2.  The N- and C-terminal fragments of ubiquitin are important for the antimicrobial activities.

Authors:  Anne-Estelle Kieffer; Yannick Goumon; Olivier Ruh; Sylvette Chasserot-Golaz; Gérard Nullans; Claire Gasnier; Dominique Aunis; Marie-Héléne Metz-Boutigue
Journal:  FASEB J       Date:  2003-02-19       Impact factor: 5.191

Review 3.  Receptor crosstalk. Implications for cardiovascular function, disease and therapy.

Authors:  Nduna Dzimiri
Journal:  Eur J Biochem       Date:  2002-10

4.  Nonspecific CXCR7 antibodies.

Authors:  Robert D Berahovich; Mark E T Penfold; Thomas J Schall
Journal:  Immunol Lett       Date:  2010-08-06       Impact factor: 3.685

5.  β2-Adrenergic receptor signaling in the cardiac myocyte is modulated by interactions with CXCR4.

Authors:  Thomas J LaRocca; Martina Schwarzkopf; Perry Altman; Shihong Zhang; Achla Gupta; Ivone Gomes; Zikiar Alvin; Hunter C Champion; Georges Haddad; Roger J Hajjar; Lakshmi A Devi; Alison D Schecter; Sima T Tarzami
Journal:  J Cardiovasc Pharmacol       Date:  2010-11       Impact factor: 3.105

6.  The murine chemokine CXCL11 (IFN-inducible T cell alpha chemoattractant) is an IFN-gamma- and lipopolysaccharide-inducible glucocorticoid-attenuated response gene expressed in lung and other tissues during endotoxemia.

Authors:  D P Widney; Y R Xia; A J Lusis; J B Smith
Journal:  J Immunol       Date:  2000-06-15       Impact factor: 5.422

7.  Pharmacokinetics and safety of AMD-3100, a novel antagonist of the CXCR-4 chemokine receptor, in human volunteers.

Authors:  C W Hendrix; C Flexner; R T MacFarland; C Giandomenico; E J Fuchs; E Redpath; G Bridger; G W Henson
Journal:  Antimicrob Agents Chemother       Date:  2000-06       Impact factor: 5.191

8.  Pathogenic properties of the N-terminal region of cardiac myosin binding protein-C in vitro.

Authors:  Suresh Govindan; Jason Sarkey; Xiang Ji; Nagalingam R Sundaresan; Mahesh P Gupta; Pieter P de Tombe; Sakthivel Sadayappan
Journal:  J Muscle Res Cell Motil       Date:  2012-04-17       Impact factor: 2.698

9.  Chemokine receptor inhibition by AMD3100 is strictly confined to CXCR4.

Authors:  Sigrid Hatse; Katrien Princen; Gary Bridger; Erik De Clercq; Dominique Schols
Journal:  FEBS Lett       Date:  2002-09-11       Impact factor: 4.124

10.  Antagonism of CXCR7 attenuates chronic hypoxia-induced pulmonary hypertension.

Authors:  Ecaterina Sartina; Cleide Suguihara; Shalini Ramchandran; Patrick Nwajei; Myra Rodriguez; Eneida Torres; Dorothy Hehre; Carlos Devia; Matthew J Walters; Mark E T Penfold; Karen C Young
Journal:  Pediatr Res       Date:  2012-02-15       Impact factor: 3.756

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  22 in total

1.  Pharmacological targeting of chemokine (C-X-C motif) receptor 4 in porcine polytrauma and hemorrhage models.

Authors:  Harold H Bach; Yee M Wong; Heather M LaPorte; Richard L Gamelli; Matthias Majetschak
Journal:  J Trauma Acute Care Surg       Date:  2016-01       Impact factor: 3.313

2.  Effects of the Kv7 voltage-activated potassium channel inhibitor linopirdine in rat models of haemorrhagic shock.

Authors:  Sean P Nassoiy; Favin S Babu; Heather M LaPorte; Kenneth L Byron; Matthias Majetschak
Journal:  Clin Exp Pharmacol Physiol       Date:  2018-04-27       Impact factor: 2.557

3.  Cardiovascular Responsiveness to Vasopressin and α1-Adrenergic Receptor Agonists After Burn Injury.

Authors:  Ann E Evans; P Geoff Vana; Heather M LaPorte; Richard H Kennedy; Richard L Gamelli; Matthias Majetschak
Journal:  J Burn Care Res       Date:  2017 Mar/Apr       Impact factor: 1.845

4.  Chemokine (C-X-C motif) receptor 4 regulates lung endothelial barrier permeability during resuscitation from hemorrhagic shock.

Authors:  F S Babu; H M LaPorte; S P Nassoiy; M Majetschak
Journal:  Physiol Res       Date:  2019-06-06       Impact factor: 1.881

5.  Extracellular ubiquitin modulates cardiac fibroblast phenotype and function via its interaction with CXCR4.

Authors:  Stephanie L C Scofield; Christopher R Daniels; Suman Dalal; Jonathan A Millard; Mahipal Singh; Krishna Singh
Journal:  Life Sci       Date:  2018-09-05       Impact factor: 5.037

6.  Pharmacological modulation of C-X-C motif chemokine receptor 4 influences development of acute respiratory distress syndrome after lung ischaemia-reperfusion injury.

Authors:  Sean P Nassoiy; Favin S Babu; Heather M LaPorte; Matthias Majetschak
Journal:  Clin Exp Pharmacol Physiol       Date:  2017-09-20       Impact factor: 2.557

7.  A Requirement for Metamorphic Interconversion in the Antimicrobial Activity of Chemokine XCL1.

Authors:  Amanda M Nevins; Akshay Subramanian; Jazma L Tapia; David P Delgado; Robert C Tyler; Davin R Jensen; André J Ouellette; Brian F Volkman
Journal:  Biochemistry       Date:  2016-06-28       Impact factor: 3.162

8.  Mineralocorticoid receptor antagonism reverses diabetes-related coronary vasodilator dysfunction: A unique vascular transcriptomic signature.

Authors:  Scott M Brown; Alex I Meuth; J Wade Davis; R Scott Rector; Shawn B Bender
Journal:  Pharmacol Res       Date:  2018-06-02       Impact factor: 7.658

9.  Ubiquitin Urine Levels in Burn Patients.

Authors:  Yee M Wong; Heather M LaPorte; Lauren J Albee; Todd A Baker; Harold H Bach; P Geoff Vana; Ann E Evans; Richard L Gamelli; Matthias Majetschak
Journal:  J Burn Care Res       Date:  2017 Jan/Feb       Impact factor: 1.845

10.  Exogenous ubiquitin attenuates hypoxia/reoxygenation-induced cardiac myocyte apoptosis via the involvement of CXCR4 and modulation of mitochondrial homeostasis.

Authors:  Suman Dalal; Christopher R Daniels; Ying Li; Gary L Wright; Mahipal Singh; Krishna Singh
Journal:  Biochem Cell Biol       Date:  2020-01-22       Impact factor: 3.626

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