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Published on: June 7, 2013
CLOCK gene 3'UTR and exon 9 polymorphisms show a strong association with essential hypertension in a North Indian
Shreya Sopori1, Kavinay Kavinay1, Sonali Bhan1
1Centre for Molecular Biology, Central University of Jammu, Jammu, UT Jammu and Kashmir, 181143, India.
Insights
This study found that variations in the CLOCK gene are linked to essential hypertension (EH) in North India. These genetic factors may increase susceptibility to EH, particularly in males.
Area of Science:
- Genetics
- Cardiovascular Health
- Chronobiology
Background:
- Hypertension (HTN) affects over 1.2 billion adults globally, with 46% unaware of their condition.
- Essential hypertension (EH), the most common type, has complex genetic and environmental causes.
- Circadian rhythm genes are implicated in blood pressure regulation, but data from Indian populations are lacking.
Purpose of the Study:
- To investigate the association between polymorphisms in circadian rhythm genes (CLOCK and BMAL1/ARNTL) and essential hypertension (EH) in a North Indian population.
- To explore potential sex-specific differences in genetic susceptibility to EH.
Main Methods:
- A case-control study involving 405 EH patients and 505 healthy controls from North India.
- Genotyping of three single nucleotide variants: CLOCK (rs1801260, rs34789226) and BMAL1/ARNTL (rs6486121) using RFLP.
- Statistical analysis using logistic regression, codominant, dominant, and recessive models, and haplotype analysis.
Main Results:
- Significant associations were found between EH and two CLOCK gene variants (rs1801260 in 3'UTR and rs34789226 in Exon 9) across various genetic models.
- A nonsignificant association was observed for the BMAL1/ARNTL intronic variant (rs6486121).
- Specific genotypes and haplotypes were more prevalent in hypertensive males, suggesting increased susceptibility.
Conclusions:
- This is the first study to report a link between circadian rhythm gene polymorphisms and EH in an Indian population.
- CLOCK gene variants (3'UTR and Exon 9) are significantly associated with EH, highlighting their role in the condition's etiology.
- Certain genetic factors appear to confer higher susceptibility to EH in males.
Background:
Hypertension (HTN) is a medical condition characterized by persistent systolic and diastolic blood pressures of ≥ 140 mmHg and ≥ 90 mmHg, respectively. With more than 1200 million adult patients aged 30-79 years worldwide according to the latest WHO data, HTN is a major health risk factor; more importantly, 46% of patients are unaware of this condition. Essential hypertension (EH), also known as primary hypertension, is the predominant subtype and has a complex etiology that involves both genetic and non-genetic factors. Majority of living organisms are influenced by the light and dark cycle of a day and respond to these changes through an intricate clock referred to as the "biological clock" or "circadian rhythm". The connection between circadian rhythm and blood pressure is well established, with many studies supporting the role of circadian rhythm gene mutation(s)/polymorphism(s) in EH. To date, no such data are available from any Indian population.
Methods:
This case‒control study was conducted on 405 EH patients and 505 healthy controls belonging to the Jammu region of North India after an informed consent was obtained from the participants. A total of three single nucleotide variants, two in the CLOCK gene (rs1801260 and rs34789226) and one in the BMAL1/ARNTL gene (rs6486121), were selected for genotyping. Genotyping was performed via the RFLP technique, and the applicable statistical analyses were performed via the SPSS and SNPStats programs.
Results:
Logistic regression analysis revealed a statistically significant association of both CLOCK gene variants rs1801260 (T > C 3'UTR) and rs34789226 (C > T Exon 9) and a nonsignificant association of the BMAL1/ARNTL intronic variant rs6486121 (C > T) with EH. The 3'UTR variant showed a statistically significant association under the codominant (p < 0.0001), dominant (p < 0.0001), and recessive (p = 0.0004) models. In contrast, the exon 9 variant showed a statistically significant negative association under the codominant (p = 0.003) and dominant (p = 0.015) models only. The rs6486121/rs1801260 and rs1801260/rs34789226/rs6486121 haplotypes showed significant differences in their distribution between cases and controls (p < 0.0001). Certain genotypes and haplotypes were found more common in hypertensive males than females.
Conclusion:
This is a first report linking circadian rhythm gene polymorphisms with EH in any Indian population. The statistically significant association of the CLOCK gene 3'UTR and exon 9 polymorphisms with EH, highlight the potential role of this gene and probably other genes of the circadian pathway in the etiology of EH in the study population. Additionally, our study also revealed that certain genotypes are making males more susceptible to EH.
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