Ontology highlight
ABSTRACT: Background
Although recent studies provide mechanistic understanding to the pathogenesis of radiation induced lung injury (RILI), rare therapeutics show definitive promise for treating this disease. Type II alveolar epithelial cells (AECII) injury in various manner results in an inflammation response to initiate RILI.Results
Here, we reported that radiation (IR) up-regulated the TNKS1BP1, causing progressive accumulation of the cellular senescence by up-regulating EEF2 in AECII and lung tissue of RILI mice. Senescent AECII induced Senescence-Associated Secretory Phenotype (SASP), consequently activating fibroblasts and macrophages to promote RILI development. In response to IR, elevated TNKS1BP1 interacted with and decreased CNOT4 to suppress EEF2 degradation. Ectopic expression of EEF2 accelerated AECII senescence. Using a model system of TNKS1BP1 knockout (KO) mice, we demonstrated that TNKS1BP1 KO prevents IR-induced lung tissue senescence and RILI.Conclusions
Notably, this study suggested that a regulatory mechanism of the TNKS1BP1/CNOT4/EEF2 axis in AECII senescence may be a potential strategy for RILI.
SUBMITTER: Zhu J
PROVIDER: S-EPMC11308570 | biostudies-literature | 2024 Aug
REPOSITORIES: biostudies-literature
Zhu Jiaojiao J Ao Xingkun X Liu Yuhao Y Zhou Shenghui S Hou Yifan Y Yan Ziyan Z Zhou Lin L Chen Huixi H Wang Ping P Liang Xinxin X Xie Dafei D Gao Shanshan S Zhou Ping-Kun PK Gu Yongqing Y
Respiratory research 20240807 1
<h4>Background</h4>Although recent studies provide mechanistic understanding to the pathogenesis of radiation induced lung injury (RILI), rare therapeutics show definitive promise for treating this disease. Type II alveolar epithelial cells (AECII) injury in various manner results in an inflammation response to initiate RILI.<h4>Results</h4>Here, we reported that radiation (IR) up-regulated the TNKS1BP1, causing progressive accumulation of the cellular senescence by up-regulating EEF2 in AECII a ...[more]