Department of Forensic Medicine, Medical College of Soochow University, Suzhou, China.
Medical College of Soochow University, Suzhou, China.
PeerJ. 2024 Mar 19;12:e17139. doi: 10.7717/peerj.17139. eCollection 2024.
The prevention and prediction of sudden cardiac death (SCD) present persistent challenges, prompting exploration into common genetic variations for potential insights. T-box 5 (TBX5), a critical cardiac transcription factor, plays a pivotal role in cardiovascular development and function. This study systematically examined variants within the 500-bp region downstream of the TBX5 gene, focusing on their potential impact on susceptibility to SCD associated with coronary artery disease (SCD-CAD) in four different Chinese Han populations.
In a comprehensive case-control analysis, we explored the association between rs11278315 and SCD-CAD susceptibility using a cohort of 553 controls and 201 SCD-CAD cases. Dual luciferase reporter assays and genotype-phenotype correlation studies using human cardiac tissue samples as well as integrated in silicon analysis were applied to explore the underlining mechanism.
Binary logistic regression results underscored a significantly reduced risk of SCD-CAD in individuals harboring the deletion allele (odds ratio = 0.70, 95% CI [0.55-0.88], = 0.0019). Consistent with the lower transcriptional activity of the deletion allele observed in dual luciferase reporter assays, genotype-phenotype correlation studies on human cardiac tissue samples affirmed lower expression levels associated with the deletion allele at both mRNA and protein levels. Furthermore, our investigation revealed intriguing insights into the role of rs11278315 in TBX5 alternative splicing, which may contribute to alterations in its ultimate functional effects, as suggested by sQTL analysis. Gene ontology analysis and functional annotation further underscored the potential involvement of TBX5 in alternative splicing and cardiac-related transcriptional regulation.
In summary, our current dataset points to a plausible correlation between rs11278315 and susceptibility to SCD-CAD, emphasizing the potential of rs11278315 as a genetic risk marker for aiding in molecular diagnosis and risk stratification of SCD-CAD.
预防和预测心源性猝死(SCD)仍然存在挑战,促使人们探索常见的遗传变异,以获得潜在的见解。T 盒 5(TBX5)是一种关键的心脏转录因子,在心血管发育和功能中起着至关重要的作用。本研究系统地研究了 TBX5 基因下游 500bp 区域内的变异,重点研究了它们对四个不同的中国汉族人群中与冠状动脉疾病相关的心源性猝死(SCD-CAD)易感性的潜在影响。
在一项全面的病例对照分析中,我们使用一组 553 名对照和 201 名 SCD-CAD 病例,探讨了 rs11278315 与 SCD-CAD 易感性之间的关联。应用双荧光素酶报告基因检测和基因型-表型相关性研究,以及基于硅的综合分析,探讨潜在的作用机制。
二项逻辑回归结果表明,携带缺失等位基因的个体患 SCD-CAD 的风险显著降低(比值比=0.70,95%置信区间[0.55-0.88],=0.0019)。与双荧光素酶报告基因检测中观察到的缺失等位基因转录活性降低一致,对人类心脏组织样本的基因型-表型相关性研究证实,缺失等位基因在 mRNA 和蛋白质水平上的表达水平较低。此外,我们的研究还揭示了 rs11278315 在 TBX5 可变剪接中的作用的有趣见解,这可能导致其最终功能效应的改变,正如 sQTL 分析所表明的那样。基因本体分析和功能注释进一步强调了 TBX5 在可变剪接和心脏相关转录调控中的潜在作用。
总之,我们目前的数据集表明 rs11278315 与 SCD-CAD 易感性之间可能存在相关性,强调 rs11278315 作为 SCD-CAD 分子诊断和风险分层的遗传风险标志物的潜力。