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Mining the Plasma Proteome for Insights into the Molecular Pathology of Pulmonary Arterial Hypertension

Authors :
Lars Harbaum
Christopher J. Rhodes
John Wharton
Allan Lawrie
Jason H. Karnes
Ankit A. Desai
William C. Nichols
Marc Humbert
David Montani
Barbara Girerd
Olivier Sitbon
Mario Boehm
Tatyana Novoyatleva
Ralph T. Schermuly
H. Ardeschir Ghofrani
Mark Toshner
David G. Kiely
Luke S. Howard
Emilia M. Swietlik
Stefan Gräf
Maik Pietzner
Nicholas W. Morrell
Martin R. Wilkins
L Southgate
RD Machado
J Martin
WH Ouwehand
MW Pauciulo
A Arora
K Lutz
F Ahmad
SL Archer
R Argula
ED Austin
D Badesch
S Bakshi
C Barnett
R Benza
N Bhatt
CD Burger
M Chakinala
J Elwing
T Fortin
RP Frantz
A Frost
JGN Garcia
J Harley
H He
NS Hill
R Hirsch
D Ivy
J Klinger
T Lahm
K Marsolo
LJ Martin
SD Nathan
RJ Oudiz
Z Rehman
I Robbins
DM Roden
EB Rosenzweig
G Saydain
R Schilz
RW Simms
M Simon
H Tang
AY Tchourbanov
T Thenappan
F Torres
AK Walsworth
RE Walter
RJ White
J Wilt
D Yung
R Kittles
J Aman
J Knight
KB Hanscombe
H Gall
A Ulrich
HJ Bogaard
C Church
JG Coghlan
R Condliffe
PA Corris
C Danesino
CG Elliott
A Franke
S Ghio
JSR Gibbs
AC Houweling
G Kovacs
M Laudes
RV MacKenzie Ross
S Moledina
M Newnham
A Olschewski
H Olschewski
AJ Peacock
J Pepke-Zaba
L Scelsi
W Seeger
CM Shaffer
O Sitbon
J Suntharalingam
C Treacy
A Vonk Noordegraaf
Q Waisfisz
SJ Wort
RC Trembath
M Germain
I Cebola
J Ferrer
P Amouyel
S Debette
M Eyries
F Soubrier
DA Trégouët
Harbaum, Lars [0000-0002-9422-6195]
Lawrie, Allan [0000-0003-4192-9505]
Montani, David [0000-0002-9358-6922]
Sitbon, Olivier [0000-0002-1942-1951]
Gräf, Stefan [0000-0002-1315-8873]
Wilkins, Martin R [0000-0003-3926-1171]
Apollo - University of Cambridge Repository
British Heart Foundation
The Academy of Medical Sciences
Publication Year :
2022
Publisher :
American Thoracic Society, 2022.

Abstract

Rationale: Pulmonary arterial hypertension (PAH) is characterized by structural remodeling of pulmonary arteries and arterioles. Underlying biological processes are likely reflected in a perturbation of circulating proteins. Objectives: To quantify and analyze the plasma proteome of patients with PAH using inherited genetic variation to inform on underlying molecular drivers. Methods: An aptamer-based assay was used to measure plasma proteins in 357 patients with idiopathic or heritable PAH, 103 healthy volunteers, and 23 relatives of patients with PAH. In discovery and replication subgroups, the plasma proteomes of PAH and healthy individuals were compared, and the relationship to transplantation-free survival in PAH was determined. To examine causal relationships to PAH, protein quantitative trait loci (pQTL) that influenced protein levels in the patient population were used as instruments for Mendelian randomization (MR) analysis. Measurements and Main Results: From 4,152 annotated plasma proteins, levels of 208 differed between patients with PAH and healthy subjects, and 49 predicted long-term survival. MR based on cis-pQTL located in proximity to the encoding gene for proteins that were prognostic and distinguished PAH from health estimated an adverse effect for higher levels of netrin-4 (odds ratio [OR], 1.55; 95% confidence interval [CI], 1.16-2.08) and a protective effect for higher levels of thrombospondin-2 (OR, 0.83; 95% CI, 0.74-0.94) on PAH. Both proteins tracked the development of PAH in previously healthy relatives and changes in thrombospondin-2 associated with pulmonary arterial pressure at disease onset. Conclusions: Integrated analysis of the plasma proteome and genome implicates two secreted matrix-binding proteins, netrin-4 and thrombospondin-2, in the pathobiology of PAH.

Details

Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....f363dc083e705c01eb9c6d70a4b67afd