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Identification and functional characterization of arginine vasopressin receptor 1A : atypical chemokine receptor 3 heteromers in vascular smooth muscle.
Albee, Lauren J; LaPorte, Heather M; Gao, Xianlong; Eby, Jonathan M; Cheng, You-Hong; Nevins, Amanda M; Volkman, Brian F; Gaponenko, Vadim; Majetschak, Matthias.
Afiliação
  • Albee LJ; Burn and Shock Trauma Research Institute, Department of Surgery, Loyola University Chicago Stritch School of Medicine, 2160 S. 1st Avenue, Maywood, IL 60153, USA.
  • LaPorte HM; Burn and Shock Trauma Research Institute, Department of Surgery, Loyola University Chicago Stritch School of Medicine, 2160 S. 1st Avenue, Maywood, IL 60153, USA.
  • Gao X; Burn and Shock Trauma Research Institute, Department of Surgery, Loyola University Chicago Stritch School of Medicine, 2160 S. 1st Avenue, Maywood, IL 60153, USA.
  • Eby JM; Burn and Shock Trauma Research Institute, Department of Surgery, Loyola University Chicago Stritch School of Medicine, 2160 S. 1st Avenue, Maywood, IL 60153, USA.
  • Cheng YH; Burn and Shock Trauma Research Institute, Department of Surgery, Loyola University Chicago Stritch School of Medicine, 2160 S. 1st Avenue, Maywood, IL 60153, USA.
  • Nevins AM; Department of Biochemistry, Medical College of Wisconsin, Milwaukee, WI 53226, USA.
  • Volkman BF; Department of Biochemistry, Medical College of Wisconsin, Milwaukee, WI 53226, USA.
  • Gaponenko V; Department of Biochemistry and Molecular Genetics, University of Illinois at Chicago, Chicago, IL 60607, USA.
  • Majetschak M; Burn and Shock Trauma Research Institute, Department of Surgery, Loyola University Chicago Stritch School of Medicine, 2160 S. 1st Avenue, Maywood, IL 60153, USA mmajetschak@luc.edu.
Open Biol ; 8(1)2018 01.
Article em En | MEDLINE | ID: mdl-29386406
Recent observations suggest that atypical chemokine receptor (ACKR)3 and chemokine (C-X-C motif) receptor (CXCR)4 regulate human vascular smooth muscle function through hetero-oligomerization with α1-adrenoceptors. Here, we show that ACKR3 also regulates arginine vasopressin receptor (AVPR)1A. We observed that ACKR3 agonists inhibit arginine vasopressin (aVP)-induced inositol trisphosphate (IP3) production in human vascular smooth muscle cells (hVSMCs) and antagonize aVP-mediated constriction of isolated arteries. Proximity ligation assays, co-immunoprecipitation and bioluminescence resonance energy transfer experiments suggested that recombinant and endogenous ACKR3 and AVPR1A interact on the cell surface. Interference with ACKR3 : AVPR1A heteromerization using siRNA and peptide analogues of transmembrane domains of ACKR3 abolished aVP-induced IP3 production. aVP stimulation resulted in ß-arrestin 2 recruitment to AVPR1A and ACKR3. While ACKR3 activation failed to cross-recruit ß-arrestin 2 to AVPR1A, the presence of ACKR3 reduced the efficacy of aVP-induced ß-arrestin 2 recruitment to AVPR1A. AVPR1A and ACKR3 co-internalized upon agonist stimulation in hVSMC. These data suggest that AVPR1A : ACKR3 heteromers are constitutively expressed in hVSMC, provide insights into molecular events at the heteromeric receptor complex, and offer a mechanistic basis for interactions between the innate immune and vasoactive neurohormonal systems. Our findings suggest that ACKR3 is a regulator of vascular smooth muscle function and a possible drug target in diseases associated with impaired vascular reactivity.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Receptores de Vasopressinas / Receptores CXCR / Multimerização Proteica / Músculo Liso Vascular Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Receptores de Vasopressinas / Receptores CXCR / Multimerização Proteica / Músculo Liso Vascular Idioma: En Ano de publicação: 2018 Tipo de documento: Article