腰椎间盘退变中骨形态发生蛋白、DNA甲基化和肠道微生物群相互作用:一项多组学孟德尔随机研究

IF 3.4 3区 医学 Q1 ORTHOPEDICS JOR Spine Pub Date : 2024-12-20 DOI:10.1002/jsp2.70027
Xiang-Yu Li, Peng-Yun Wang, Qi-Jun Wang, Dong-Fan Wang, Shuai-Kang Wang, Yu Wang, Wei-Guo Zhu, Wei Wang, Chao Kong, Shi-Bao Lu, Xiao-Long Chen
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引用次数: 0

摘要

背景腰椎间盘退变(LDD)是腰痛中普遍存在的症状。许多不同的病因可以解释LDD的过程,如骨形态发生蛋白(BMPs)、DNA甲基化和肠道微生物群。直到最近,LDD过程背后的机制一直是难以捉摸的。方法从GeneCards数据库中提取bmp相关基因。LDD转录组数据集来自Gene Expression Omnibus。我们使用线性回归和荟萃分析来筛选和整合LDD中与bmp相关的差异表达基因。LDD的全基因组关联研究(GWASs)来自FinnGen和UKBB。通过基于汇总数据的孟德尔随机化(SMR)方法鉴定血液中表达数量性状位点(eqtl)和DNA甲基化数量性状位点,并优先考虑与LDD风险相关的可能的血液BMP基因及其调控元件。整合肠道eQTLs和粪便微生物QTLs (mbQTLs),通过SMR和共定位分析揭示宿主肠道组织中BMP基因表达与肠道微生物群之间潜在的相互作用。使用GWAS目录(GCST90246169)验证SMR结果。结果对5个数据集的荟萃分析显示,113个BMP基因在LDD和对照组织中存在差异表达。通过三步SMR法选择7个基因作为LDD的候选致病基因:CREB1、BMP6、PTCH1、GLI1、MEG3、GALNS和NF1。SMR分析还揭示了5种可能的肠道基因:HFE、MET、MAPK3、NPC1和GDF5。通过eQTL-mbQTL共定位验证了肠道微生物群与肠组织中BMP基因表达的相关性。结论多组学研究表明BMP与LDD相关基因受DNA甲基化调控。肠道基因表达和肠道菌群之间存在遗传差异。这些发现为未来新的治疗靶点提供了证据。
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Bone morphogenetic proteins, DNA methylation, and gut microbiota interaction in lumbar disc degeneration: A multi-omics Mendelian randomization study

Background

Lumbar disc degeneration (LDD) is a ubiquitous finding in low back pain. Many different etiology factors may explain the LDD process, such as bone morphogenetic proteins (BMPs), DNA methylation, and gut microbiota. Until recently the mechanisms underlying the LDD process have been elusive.

Methods

BMP-related genes were extracted from the GeneCards database. The LDD transcriptome dataset was obtained from the Gene Expression Omnibus. We used linear regression and meta-analysis to screen and integrate the differentially expressed genes associated with BMPs in LDD. Genome-wide association studies (GWASs) of LDD were from FinnGen and UKBB. The expression quantitative trait loci (eQTLs) and DNA methylation quantitative trait loci from the blood were identified via the summary data-based Mendelian randomization (SMR) method, and the possible blood BMP genes and their regulatory elements associated with the risk of LDD were prioritized. Intestinal eQTLs and fecal microbial QTLs (mbQTLs) were integrated, and the potential interactions between BMP gene expression in host intestinal tissue and the gut microbiota were revealed through SMR and colocalization analysis. The GWAS catalog (GCST90246169) was used to validate SMR results.

Results

A meta-analysis of five datasets revealed that 113 BMP genes were differentially expressed between LDD and control tissues. Seven genes were selected as candidate pathogenic genes of LDD via the three-step SMR method: CREB1, BMP6, PTCH1, GLI1, MEG3, GALNS, and NF1. SMR analysis also revealed five possible gut genes: HFE, MET, MAPK3, NPC1, and GDF5. The correlation between the gut microbiota and BMP gene expression in intestinal tissues was verified by eQTL-mbQTL colocalization.

Conclusion

This multi-omics study revealed that the BMP genes associated with LDD are regulated by DNA methylation. There are genetic differences between gut gene expression and the gut microbiota. These findings provide evidence for new therapeutic targets in the future.

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来源期刊
JOR Spine
JOR Spine ORTHOPEDICS-
CiteScore
6.40
自引率
18.90%
发文量
42
审稿时长
10 weeks
期刊最新文献
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