Association between HOTAIR lncRNA Polymorphisms and Coronary Artery Disease Susceptibility
In-Jai Kim1, Jeong-Yong Lee2, Hyeon-Woo Park2
1CHA Bundang Medical Center, Department of Cardiology, CHA University, Seongnam 13496, Korea.
Insights
This study investigated the link between HOTAIR gene polymorphisms and coronary artery disease (CAD). Certain HOTAIR genetic variations were found to be associated with an increased risk of developing CAD, suggesting potential diagnostic biomarkers.
Area of Science:
- Genetics
- Cardiovascular Disease Research
- Molecular Biology
Background:
- Coronary artery disease (CAD) is a leading cause of mortality globally, characterized by plaque buildup in coronary arteries.
- The HOX transcript antisense RNA gene (HOTAIR), a long non-coding RNA, is implicated in various cancers and may play a role in cardiovascular conditions.
Purpose of the Study:
- To investigate the association between specific single nucleotide polymorphisms (SNPs) in the HOTAIR gene and the susceptibility to coronary artery disease (CAD).
- To evaluate the potential of HOTAIR polymorphisms as novel biomarkers for CAD diagnosis.
Main Methods:
- Genotype frequency analysis of six HOTAIR SNPs (rs4759314, rs1899663, rs920778, rs7958904, rs12826786, rs874945) in 442 CAD patients and 418 controls.
- Statistical analyses including Student's t-test, adjusted odds ratio (AOR) with 95% confidence intervals (CIs), and ANOVA were employed.
- Baseline characteristics like hypertension and diabetes mellitus were compared between groups.
Main Results:
- Significant differences in hypertension and diabetes mellitus were observed between control subjects and CAD patients.
- The rs4759314 A>G, rs1899663 G>T, and rs12826786 C>T genotypes showed a strong association with CAD susceptibility.
- HOTAIR polymorphisms, their combinations, and haplotypes were found to influence disease occurrence and are linked to clinical factors contributing to susceptibility.
Conclusions:
- The study suggests that specific HOTAIR gene polymorphisms are associated with an increased risk of developing coronary artery disease.
- These identified HOTAIR polymorphisms may serve as potential novel biomarkers for the diagnosis of CAD.
- Further research is warranted to validate these findings and explore the underlying mechanisms.
Abstract:
Coronary artery disease (CAD), one of the most frequent causes of mortality, is the most common type of cardiovascular disease. This condition is characterized by the accumulation of plaques in the coronary artery, leading to blockage of blood flow to the heart. The main symptom of CAD is chest pain caused by blockage of the coronary artery and shortness of breath. HOX transcript antisense RNA gene (HOTAIR) is a long non-coding RNA which is well-known as an oncogene involved in various cancers, such as lung, breast, colorectal, and gastric cancer. We selected six single nucleotide polymorphisms, rs4759314 A>G, rs1899663 G>T, rs920778 T>C, rs7958904 G>C, rs12826786 C>T, and rs874945 C>T, for genotype frequency analysis and assessed the frequency of HOTAIR gene polymorphisms in 442 CAD patients and 418 randomly selected control subjects. To analyze the differences between these two populations, we performed a Student's t-test, adjusted odds ratio (AOR), 95% confidence intervals (CIs), and ANOVA analysis. According to our baseline characteristic analysis, control subjects and CAD patients were significantly different in hypertension and diabetes mellitus. We also found that the rs4759314 A>G, rs1899663 G>T, and rs12826786 C>T genotypes were strongly associated with CAD susceptibility (AA vs. AG+GG: AOR = 0.608, 95% CI = 0.393-0.940, p = 0.025; GG vs. TT: AOR = 2.276, 95% CI = 1.125-4.607, p = 0.022; CC vs. CT+TT: AOR = 1.366, 95% CI = 1.027-1.818, p = 0.032, respectively). Our data also demonstrated that the genotype of HOTAIR polymorphisms, genotype combination, and haplotype analysis affect disease occurrence. Moreover, these polymorphisms are linked to clinical factors that contribute to disease susceptibility. In conclusion, results from our study suggest that HOTAIR polymorphisms may be useful novel biomarkers for diagnosing CAD.
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