M'Kacher Radhia, Jaillet Madeleine, Colicchio Bruno, Vasarmidi Eirini, Mailleux Arnaud, Dieterlen Alain, Kannengiesser Caroline, Borie Claire, Oudrhiri Noufissa, Junker Steffen, Voisin Philippe, Jeandidier Eric, Carde Patrice, Fenech Michael, Bennaceur-Griscelli Annelise, Crestani Bruno, Borie Raphael
Cell Environment DNA Damage R&D, Genopole, F-91058 Evry, France.
Inserm U1152, Laboratoire d'Excellence INFLAMEX, Université de Paris, F-75018 Paris, France.
Biomedicines. 2022 Jan 28;10(2):310. doi: 10.3390/biomedicines10020310.
Idiopathic pulmonary fibrosis (IPF) is associated with several hallmarks of aging including telomere shortening, which can result from germline mutations in telomere related genes (TRGs). Here, we assessed the length and stability of telomeres as well as the integrity of chromosomes in primary lung fibroblasts from 13 IPF patients (including seven patients with pathogenic variants in TRGs) and seven controls. Automatized high-throughput detection of telomeric FISH signals highlighted lower signal intensity in lung fibroblasts from IPF patients, suggesting a telomere length defect in these cells. The increased detection of telomere loss and terminal deletion in IPF cells, particularly in TRG-mutated cells (IPF-TRG), supports the notion that these cells have unstable telomeres. Furthermore, fibroblasts from IPF patients with TRGs mutations exhibited dicentric chromosomes and anaphase bridges. Collectively, our study indicates that fibroblasts from IPF patients exhibit telomere and chromosome instability that likely contribute to the physiopathology.
特发性肺纤维化(IPF)与包括端粒缩短在内的多种衰老特征相关,端粒缩短可能由端粒相关基因(TRGs)的种系突变引起。在此,我们评估了13例IPF患者(包括7例TRGs有致病性变异的患者)和7例对照的原代肺成纤维细胞中端粒的长度和稳定性以及染色体的完整性。端粒荧光原位杂交(FISH)信号的自动化高通量检测突出显示,IPF患者肺成纤维细胞中的信号强度较低,表明这些细胞存在端粒长度缺陷。IPF细胞中端粒丢失和末端缺失的检测增加,特别是在TRG突变细胞(IPF-TRG)中,支持了这些细胞端粒不稳定的观点。此外,TRGs突变的IPF患者的成纤维细胞表现出双着丝粒染色体和后期桥。总的来说,我们的研究表明,IPF患者的成纤维细胞表现出端粒和染色体不稳定,这可能导致其病理生理学变化。