Bo Liu, Yulong Yu, Wan Qin, Li Yang, Minxiao Yi, Lingyan Xiao, Yongbiao Huang, Xiao Zhou, Shiying Yu, Yihua Wang, Cong-Yi Wang, Yang Tang, Xianglin Yuan
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引用次数: 0
Abstract
Radiation pneumonitis (RP) is characterized by inflammation and is associated with autophagy. However, the relationship between functional genetic variants of autophagy-related genes and radiation pneumonitis remains unknow. In this study we aimed to investigate whether genetic variants of genes involved in autophagy are associated with radiation pneumonitis. Genotyping was conducted on a total of 301 patients for thirteen single nucleotide polymorphisms (SNPs) of 5 genes in the autophagy pathway using MassArray and Sanger sequencing. Two radiation oncologists independently measured the degree of RP by chest X-ray or CT. The multivariate Cox hazard analysis and multiple testing showed that ATG7: rs2122031 GA/GG significantly decreased the risk of RP ≥ grade 3 (HR=0.369, 95% CI: 0.189-0.720, P=0.003, Pc=0.039). Furthermore, qRT-PCR and immunohistochemical analysis demonstrated that the ATG7: rs2122031 AA genotypes were related to decreased expression of ATG7. Loss of autophagy by deletion of ATG7 in fibroblasts or conditional ATG7 knockout mice was proven to increase radiation pneumonitis. Single-cell RNA-seq revealed regulation of autophagy related genes enriched after irradiation stress in conditional ATG7 knockout mice. Our findings indicated that genetic variants of ATG7 were associated with RP and may therefore be used to predict RP before radiotherapy. Loss of ATG7 was also shown to promote RP, which suggested that ATG7 may be an intervention target for RP. This article is open access and distributed under the terms of the Creative Commons Attribution 4.0 International License (https://creativecommons.org/licenses/by/4.0/).
期刊介绍:
The American Journal of Respiratory Cell and Molecular Biology publishes papers that report significant and original observations in the area of pulmonary biology. The focus of the Journal includes, but is not limited to, cellular, biochemical, molecular, developmental, genetic, and immunologic studies of lung cells and molecules.