发病机制
脂褐素
溶酶体
自噬
半乳糖凝集素
医学
慢性阻塞性肺病
细胞生物学
衰老
生物
肺
免疫学
内科学
病理
生物化学
细胞凋亡
酶
作者
Jun Araya,Nayuta Saito,Yusuke Hosaka,Akihiro Ichikawa,Tsukasa Kadota,Yu Fujita,Shunsuke Minagawa,Hiromichi Hara,Shota Fujimoto,Hironori Kawamoto,Naoaki Watanabe,Akihiko Ito,Keitaro Okuda,Hanae Miyagawa,Junko Watanabe,Daisuke Takekoshi,Hirofumi Utsumi,Masahiro Yoshida,Mitsuo Hashimoto,Hiroshi Wakui
出处
期刊:Journal of Immunology
[American Association of Immunologists]
日期:2021-06-16
卷期号:207 (1): 65-76
被引量:19
标识
DOI:10.4049/jimmunol.2001364
摘要
Insufficient autophagic degradation has been implicated in accelerated cellular senescence during chronic obstructive pulmonary disease (COPD) pathogenesis. Aging-linked and cigarette smoke (CS)-induced functional deterioration of lysosomes may be associated with impaired autophagy. Lysosomal membrane permeabilization (LMP) is indicative of damaged lysosomes. Galectin-3 and tripartite motif protein (TRIM) 16 play a cooperative role in recognizing LMP and inducing lysophagy, a lysosome-selective autophagy, to maintain lysosome function. In this study, we sought to examine the role of TRIM16-mediated lysophagy in regulating CS-induced LMP and cellular senescence during COPD pathogenesis by using human bronchial epithelial cells and lung tissues. CS extract (CSE) induced lysosomal damage via LMP, as detected by galectin-3 accumulation. Autophagy was responsible for modulating LMP and lysosome function during CSE exposure. TRIM16 was involved in CSE-induced lysophagy, with impaired lysophagy associated with lysosomal dysfunction and accelerated cellular senescence. Airway epithelial cells in COPD lungs showed an increase in lipofuscin, aggresome and galectin-3 puncta, reflecting accumulation of lysosomal damage with concomitantly reduced TRIM16 expression levels. Human bronchial epithelial cells isolated from COPD patients showed reduced TRIM16 but increased galectin-3, and a negative correlation between TRIM16 and galectin-3 protein levels was demonstrated. Damaged lysosomes with LMP are accumulated in epithelial cells in COPD lungs, which can be at least partly attributed to impaired TRIM16-mediated lysophagy. Increased LMP in lung epithelial cells may be responsible for COPD pathogenesis through the enhancement of cellular senescence.
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