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Single-cell and Spatial Transcriptomics Identified Fatty Acid-binding Proteins Controlling Endothelial Glycolytic and Arterial Programming in Pulmonary Hypertension.
Liu, Bin; Yi, Dan; Li, Shuai; Ramirez, Karina; Xia, Xiaomei; Cao, Yanhong; Zhao, Hanqiu; Tripathi, Ankit; Qiu, Shenfeng; Kala, Mrinalini; Rafikov, Ruslan; Gu, Haiwei; de Jesus Perez, Vinicio; Lemay, Sarah-Eve; Glembotski, Christopher C; Knox, Kenneth S; Bonnet, Sebastien; Kalinichenko, Vladimir V; Zhao, You-Yang; Fallon, Michael B; Boucherat, Olivier; Dai, Zhiyu.
Afiliação
  • Liu B; Division of Pulmonary, Critical Care and Sleep, University of Arizona, Phoenix, AZ, USA.
  • Yi D; Department of Internal Medicine, College of Medicine-Phoenix, University of Arizona, Phoenix, AZ, USA.
  • Li S; Translational Cardiovascular Research Center, College of Medicine-Phoenix, University of Arizona, Phoenix, AZ, USA.
  • Ramirez K; Division of Pulmonary, Critical Care and Sleep, University of Arizona, Phoenix, AZ, USA.
  • Xia X; Department of Internal Medicine, College of Medicine-Phoenix, University of Arizona, Phoenix, AZ, USA.
  • Cao Y; Translational Cardiovascular Research Center, College of Medicine-Phoenix, University of Arizona, Phoenix, AZ, USA.
  • Zhao H; Division of Pulmonary, Critical Care and Sleep, University of Arizona, Phoenix, AZ, USA.
  • Tripathi A; Department of Internal Medicine, College of Medicine-Phoenix, University of Arizona, Phoenix, AZ, USA.
  • Qiu S; Division of Pulmonary, Critical Care and Sleep, University of Arizona, Phoenix, AZ, USA.
  • Kala M; Department of Internal Medicine, College of Medicine-Phoenix, University of Arizona, Phoenix, AZ, USA.
  • Rafikov R; Division of Pulmonary, Critical Care and Sleep, University of Arizona, Phoenix, AZ, USA.
  • Gu H; Department of Internal Medicine, College of Medicine-Phoenix, University of Arizona, Phoenix, AZ, USA.
  • de Jesus Perez V; Division of Pulmonary, Critical Care and Sleep, University of Arizona, Phoenix, AZ, USA.
  • Lemay SE; Department of Internal Medicine, College of Medicine-Phoenix, University of Arizona, Phoenix, AZ, USA.
  • Glembotski CC; Division of Pulmonary, Critical Care and Sleep, University of Arizona, Phoenix, AZ, USA.
  • Knox KS; Department of Internal Medicine, College of Medicine-Phoenix, University of Arizona, Phoenix, AZ, USA.
  • Bonnet S; Division of Pulmonary, Critical Care and Sleep, University of Arizona, Phoenix, AZ, USA.
  • Kalinichenko VV; Department of Internal Medicine, College of Medicine-Phoenix, University of Arizona, Phoenix, AZ, USA.
  • Zhao YY; Translational Cardiovascular Research Center, College of Medicine-Phoenix, University of Arizona, Phoenix, AZ, USA.
  • Fallon MB; Department of Internal Medicine, College of Medicine-Phoenix, University of Arizona, Phoenix, AZ, USA.
  • Boucherat O; Department of Medicine, Indiana University College of Medicine, Indianapolis, IN, USA.
  • Dai Z; College of Health Solutions, Arizona State University, Phoenix, AZ, USA.
bioRxiv ; 2024 Apr 15.
Article em En | MEDLINE | ID: mdl-38370670
ABSTRACT
Pulmonary arterial hypertension (PAH) is a devastating disease characterized by obliterative vascular remodeling and persistent increase of vascular resistance, leading to right heart failure and premature death. Understanding the cellular and molecular mechanisms will help develop novel therapeutic approaches for PAH patients. Single-cell RNA sequencing (scRNAseq) analysis found that both FABP4 and FABP5 were highly induced in endothelial cells (ECs) of Egln1Tie2Cre (CKO) mice, which was also observed in pulmonary arterial ECs (PAECs) from idiopathic PAH (IPAH) patients, and in whole lungs of pulmonary hypertension (PH) rats. Plasma levels of FABP4/5 were upregulated in IPAH patients and directly correlated with severity of hemodynamics and biochemical parameters using plasma proteome analysis. Genetic deletion of both Fabp4 and 5 in CKO mice (Egln1Tie2Cre/Fabp4-5-/- ,TKO) caused a reduction of right ventricular systolic pressure (RVSP) and RV hypertrophy, attenuated pulmonary vascular remodeling and prevented the right heart failure assessed by echocardiography, hemodynamic and histological analysis. Employing bulk RNA-seq and scRNA-seq, and spatial transcriptomic analysis, we showed that Fabp4/5 deletion also inhibited EC glycolysis and distal arterial programming, reduced ROS and HIF-2α expression in PH lungs. Thus, PH causes aberrant expression of FABP4/5 in pulmonary ECs which leads to enhanced ECs glycolysis and distal arterial programming, contributing to the accumulation of arterial ECs and vascular remodeling and exacerbating the disease.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article