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HIPPO-Integrin-linked Kinase Cross-Talk Controls Self-Sustaining Proliferation and Survival in Pulmonary Hypertension.
Kudryashova, Tatiana V; Goncharov, Dmitry A; Pena, Andressa; Kelly, Neil; Vanderpool, Rebecca; Baust, Jeff; Kobir, Ahasanul; Shufesky, William; Mora, Ana L; Morelli, Adrian E; Zhao, Jing; Ihida-Stansbury, Kaori; Chang, Baojun; DeLisser, Horace; Tuder, Rubin M; Kawut, Steven M; Silljé, Herman H W; Shapiro, Steven; Zhao, Yutong; Goncharova, Elena A.
Afiliação
  • Kudryashova TV; 1 Heart, Lung, Blood and Vascular Medicine Institute.
  • Goncharov DA; 1 Heart, Lung, Blood and Vascular Medicine Institute.
  • Pena A; 1 Heart, Lung, Blood and Vascular Medicine Institute.
  • Kelly N; 2 Department of Medicine, and.
  • Vanderpool R; 1 Heart, Lung, Blood and Vascular Medicine Institute.
  • Baust J; 1 Heart, Lung, Blood and Vascular Medicine Institute.
  • Kobir A; 1 Heart, Lung, Blood and Vascular Medicine Institute.
  • Shufesky W; 3 Department of Surgery and Immunology, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania.
  • Mora AL; 1 Heart, Lung, Blood and Vascular Medicine Institute.
  • Morelli AE; 2 Department of Medicine, and.
  • Zhao J; 3 Department of Surgery and Immunology, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania.
  • Ihida-Stansbury K; 2 Department of Medicine, and.
  • Chang B; 4 Department of Pathology and Laboratory Medicine.
  • DeLisser H; 5 Pulmonary Vascular Disease Program.
  • Tuder RM; 1 Heart, Lung, Blood and Vascular Medicine Institute.
  • Kawut SM; 2 Department of Medicine, and.
  • Silljé HH; 5 Pulmonary Vascular Disease Program.
  • Shapiro S; 6 Department of Medicine, and.
  • Zhao Y; 7 Division of Pulmonary Sciences and Critical Care Medicine, University of Colorado Denver, Aurora, Colorado; and.
  • Goncharova EA; 5 Pulmonary Vascular Disease Program.
Am J Respir Crit Care Med ; 194(7): 866-877, 2016 Oct 01.
Article em En | MEDLINE | ID: mdl-27119551
ABSTRACT
RATIONALE Enhanced proliferation and impaired apoptosis of pulmonary arterial vascular smooth muscle cells (PAVSMCs) are key pathophysiologic components of pulmonary vascular remodeling in pulmonary arterial hypertension (PAH).

OBJECTIVES:

To determine the role and therapeutic relevance of HIPPO signaling in PAVSMC proliferation/apoptosis imbalance in PAH.

METHODS:

Primary distal PAVSMCs, lung tissue sections from unused donor (control) and idiopathic PAH lungs, and rat and mouse models of SU5416/hypoxia-induced pulmonary hypertension (PH) were used. Immunohistochemical, immunocytochemical, and immunoblot analyses and transfection, infection, DNA synthesis, apoptosis, migration, cell count, and protein activity assays were performed in this study. MEASUREMENTS AND MAIN

RESULTS:

Immunohistochemical and immunoblot analyses demonstrated that the HIPPO central component large tumor suppressor 1 (LATS1) is inactivated in small remodeled pulmonary arteries (PAs) and distal PAVSMCs in idiopathic PAH. Molecular- and pharmacology-based analyses revealed that LATS1 inactivation and consequent up-regulation of its reciprocal effector Yes-associated protein (Yap) were required for activation of mammalian target of rapamycin (mTOR)-Akt, accumulation of HIF1α, Notch3 intracellular domain and ß-catenin, deficiency of proapoptotic Bim, increased proliferation, and survival of human PAH PAVSMCs. LATS1 inactivation and up-regulation of Yap increased production and secretion of fibronectin that up-regulated integrin-linked kinase 1 (ILK1). ILK1 supported LATS1 inactivation, and its inhibition reactivated LATS1, down-regulated Yap, suppressed proliferation, and promoted apoptosis in PAH, but not control PAVSMCs. PAVSM in small remodeled PAs from rats and mice with SU5416/hypoxia-induced PH showed down-regulation of LATS1 and overexpression of ILK1. Treatment of mice with selective ILK inhibitor Cpd22 at Days 22-35 of SU5416/hypoxia exposure restored LATS1 signaling and reduced established pulmonary vascular remodeling and PH.

CONCLUSIONS:

These data report inactivation of HIPPO/LATS1, self-supported via Yap-fibronectin-ILK1 signaling loop, as a novel mechanism of self-sustaining proliferation and apoptosis resistance of PAVSMCs in PAH and suggest a new potential target for therapeutic intervention.
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Texto completo: 1 Coleções: 01-internacional Contexto em Saúde: 1_ASSA2030 / 2_ODS3 Base de dados: MEDLINE Idioma: En Revista: Am J Respir Crit Care Med Ano de publicação: 2016 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Contexto em Saúde: 1_ASSA2030 / 2_ODS3 Base de dados: MEDLINE Idioma: En Revista: Am J Respir Crit Care Med Ano de publicação: 2016 Tipo de documento: Article