[Mechanism of melatonin regulating the expression level of rhythm genes to alleviate interstitial pulmonary fibrosis].

Q3 Medicine
北京大学学报(医学版) Pub Date : 2024-12-18
Bingle Li, Lingyan Zhu, Yongfu Wang, Li Bai
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引用次数: 0

Abstract

Objective: To investigate the intervention of melatonin (MT) in the expression of circadian genes in patients with pulmonary fibrosis and to analyze the mechanism by which it alleviates the progression of pulmonary fibrosis.

Methods: By utilizing the Gene Expression Omnibus (GEO) database, we identified differentially expressed circadian genes between patients with pulmonary fibrosis and controls. We analyzed the correlation between circadian genes and pulmonary function as well as genes related to pulmonary fibrosis. A bleomycin-induced mouse model of pulmonary fibrosis (BLM group) was constructed to observe the expression differences of PER2 and CRY2 by sequencing and immunohistochemical staining in the BLM group and after MT intervention (BLM+MT group). Hematoxylin and eosin (HE) staining and Masson staining were used to observe the effects of MT on fibrosis. We used Western blot to detect the expression of P-smad2/3 in lung epithelial cells induced by transforming growth factor β (TGF-β). Reverse transcription quantitative real-time PCR technology was employed to investigate the rhythmic expression changes of circadian genes in the control group, TGF-β group, and TGF-β+MT group. Finally, luzindole, a MT receptor antagonist, was used to intervene in TGF-β+MT group, and Western blot was used to explore the receptor dependence of MT in alleviating TGF-β-induced epithelial-mesenchymal transition.

Results: (1) Analysis of the GEO dataset (GSE) revealed a negative correlation between circadian genes PER2 and CRY2 and the expression of TGF-β, and a positive correlation with pulmonary function indicators in patients. (2) Transcriptome sequencing analysis of lung tissue in BLM group found that the expression of PER2 and CRY2 was significantly reduced compared with the normal group. Histopathological staining results showed that the lung tissue structure of the normal group was intact and clear, with thin alveolar septa; in the BLM group, there was a large increase in collagen fibers and disordered alveolar structure; compared with the BLM group, the BLM+MT group had reduced collagen fiber proliferation and inflammatory cell infiltration; the expression of PER2 and CRY2 in the BLM group was lower than in the normal group, and the expression in the BLM+MT group was increased compared with the BLM group. (3) In vitro lung epithelial cell experiments with TGF-β intervention showed that compared with the control group, the expression of P-smad2/3 increased in the TGF-β group, and MT intervention inhibited the inducing effect of TGF-β on P-smad2/3, while intervention with the MT receptor antagonist reversed this phenomenon. The results indicated that MT could inhibit the activation of the TGF-β pathway, and this process was dependent on MT receptors. (4) The 48-hour rhythm experiment in lung epithelial cells showed that the mRNA rhythm of PER2 and CRY2 in the TGF-β+MT group was close to 24 hours and showed a trend towards restoring the rhythm of the control group, while the addition of the MT receptor blocker tended to make the rhythm duration and amplitude of both groups approach that of the TGF-β group.

Conclusion: MT, by binding to its receptors, can restore the periodic expression of the circadian genes PER2 and CRY2, thereby inhibiting the activation of the TGF-β classical pathway and suppressing the pathological process of epithelial-mesenchymal transition in pulmonary fibrosis. This finding provides new molecular targets and potential therapeutic strategies for the treatment of pulmonary fibrosis.

[褪黑素调节节律基因表达水平减轻间质性肺纤维化的机制]。
目的:探讨褪黑素(melatonin, MT)对肺纤维化患者昼夜节律基因表达的干预作用,并分析其缓解肺纤维化进展的机制。方法:利用基因表达综合数据库(Gene Expression Omnibus, GEO),我们鉴定了肺纤维化患者和对照组之间差异表达的昼夜节律基因。我们分析了昼夜节律基因与肺功能以及肺纤维化相关基因之间的相关性。构建博来霉素诱导的肺纤维化小鼠模型(BLM组),通过测序和免疫组化染色观察PER2和CRY2在BLM组和MT干预后(BLM+MT组)的表达差异。采用苏木精伊红(HE)染色和马松染色观察MT对纤维化的影响。采用Western blot法检测P-smad2/3在TGF-β诱导的肺上皮细胞中的表达。采用反转录实时荧光定量PCR技术研究对照组、TGF-β组和TGF-β+MT组昼夜节律基因的节律性表达变化。最后采用MT受体拮抗剂luzindole对TGF-β+MT组进行干预,并采用Western blot方法探讨MT在缓解TGF-β诱导的上皮-间质转化中的受体依赖性。结果:(1)GEO数据集(GSE)分析显示,昼夜节律基因PER2和CRY2与TGF-β表达呈负相关,与患者肺功能指标呈正相关。(2) BLM组肺组织转录组测序分析发现,与正常组相比,PER2和CRY2的表达明显降低。组织病理学染色结果显示,正常组肺组织结构完整清晰,肺泡隔薄;BLM组胶原纤维大量增加,肺泡结构紊乱;与BLM组比较,BLM+MT组胶原纤维增殖和炎症细胞浸润减少;PER2、CRY2在BLM组的表达低于正常组,BLM+MT组的表达高于BLM组。(3) TGF-β干预肺上皮细胞体外实验显示,与对照组相比,TGF-β组P-smad2/3表达升高,MT干预抑制了TGF-β对P-smad2/3的诱导作用,而MT受体拮抗剂干预逆转了这一现象。结果表明,MT可抑制TGF-β通路的激活,该过程依赖于MT受体。(4)肺上皮细胞48小时节律实验显示,TGF-β+MT组PER2和CRY2 mRNA节律接近24小时,有恢复对照组节律的趋势,而MT受体阻滞剂的加入则有使两组节律持续时间和幅度趋近于TGF-β组的趋势。结论:MT通过与其受体结合,可以恢复昼夜节律基因PER2和CRY2的周期性表达,从而抑制TGF-β经典通路的激活,抑制肺纤维化上皮-间质转化的病理过程。这一发现为肺纤维化的治疗提供了新的分子靶点和潜在的治疗策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
北京大学学报(医学版)
北京大学学报(医学版) Medicine-Medicine (all)
CiteScore
0.80
自引率
0.00%
发文量
9815
期刊介绍: Beijing Da Xue Xue Bao Yi Xue Ban / Journal of Peking University (Health Sciences), established in 1959, is a national academic journal sponsored by Peking University, and its former name is Journal of Beijing Medical University. The coverage of the Journal includes basic medical sciences, clinical medicine, oral medicine, surgery, public health and epidemiology, pharmacology and pharmacy. Over the last few years, the Journal has published articles and reports covering major topics in the different special issues (e.g. research on disease genome, theory of drug withdrawal, mechanism and prevention of cardiovascular and cerebrovascular diseases, stomatology, orthopaedic, public health, urology and reproductive medicine). All the topics involve latest advances in medical sciences, hot topics in specific specialties, and prevention and treatment of major diseases. The Journal has been indexed and abstracted by PubMed Central (PMC), MEDLINE/PubMed, EBSCO, Embase, Scopus, Chemical Abstracts (CA), Western Pacific Region Index Medicus (WPR), JSTChina, and almost all the Chinese sciences and technical index systems, including Chinese Science and Technology Paper Citation Database (CSTPCD), Chinese Science Citation Database (CSCD), China BioMedical Bibliographic Database (CBM), CMCI, Chinese Biological Abstracts, China National Academic Magazine Data-Base (CNKI), Wanfang Data (ChinaInfo), etc.
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