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Selective activation of the unfolded protein response and proteolytic pathways in sarcopenic limb muscles of bronchiectasis patients.

Created on 16 Sep 2026

Authors

Adriana Núñez-Robainas, Alberto Solano, Salvatore Marsico, Mariela Alvarado-Miranda, Maria Cinta Cumpli-Gargallo, Marina Sáinz-Hernández, José María Maiques, Esther Barreiro

Published in

ERJ open research. Volume 12. Issue 2. Epub Apr 27, 2026.

Abstract

Sarcopenia contributes significantly to decreased exercise tolerance, reduced quality of life and worse overall prognosis, independent of lung function severity in chronic respiratory disease including bronchiectasis. Endoplasmic reticulum (ER) stress and the unfolded protein response (UPR) contribute to muscle wasting. We hypothesised that ER stress is increased in muscles of bronchiectasis patients with sarcopenia.
In the vastus lateralis (VL) of patients with bronchiectasis and sarcopenia (n=20) and healthy controls (n=10), markers indicative of ER stress, key components of the UPR signalling network, including activating transcription factor 6 (ATF6), protein kinase RNA-like ER kinase and inositol-requiring enzyme 1, and molecular indicators of proteolytic activity and autophagy were measured. Patients and controls were clinically evaluated. Patients were clinically stable, nonsmokers and had mild to moderate disease severity (bronchiectasis severity index score), and exhibited significantly reduced body weight, body mass index (BMI), fat-free mass index (FFMI), quadriceps maximal voluntary contraction (QMVC), handgrip strength and exercise capacity compared to the age- and sex-matched controls.
In the VL of patients compared to the controls, ER stress markers activating transcription factor 4 (ATF4) and X-box binding protein (XBP1) levels and those of atrogin-1, muscle ring finger 1, 20S proteasome C8 subunit and nucleoporin p-62 increased, while inverse correlations were detected between muscle protein atrogin-1 levels and BMI, FFMI and nondominant QMVC.
Bronchiectasis patients with sarcopenia exhibit marked skeletal muscle impairment, systemic inflammation and selective activation of the ATF4 and XBP1 arms of the UPR. These molecular alterations were accompanied by increased proteolysis and signs of impaired autophagy. Targeting these pathways may offer novel therapeutic strategies to preserve muscle mass and function in bronchiectasis, ultimately improving quality of life and clinical outcomes.

PMID:
42111389
Bibliographic data and abstract were imported from PubMed on 16 Sep 2026.

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