Association of endothelial nitric oxide synthase gene variants with preeclampsia

被引:0
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作者
Ghazala Shaheen
Sarwat Jahan
Nousheen Bibi
Asmat Ullah
Rani Faryal
Ali Almajwal
Tayyaba Afsar
Dara Al-disi
Mahmoud Abulmeaty
Abdulaziz Abdullah Al Khuraif
Mohammed Arshad
Suhail Razak
机构
[1] Quaid-I-Azam University,Department of Animal Sciences, Faculty of Biological Sciences
[2] Shaheed Benazir Bhutto Women University,Department of Bioinformatics
[3] Community Health Sciences,College of Applied Medical Sciences
[4] King Saud University,Department of Biochemistry, Faculty of Biological Sciences
[5] Quaid-I-Azam University,Department of Microbiology, Faculty of Biological Sciences
[6] Quaid-I-Azam University,Dental Biomaterials Research Chair, Dental Health Department, College of Applied Medical Sciences
[7] King Saud University,undefined
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Preeclampsia; Endothelial nitric oxide synthase gene; Nitric oxide; Variants;
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摘要
Preeclampsia (PE) is a complex pregnancy hypertensive disorder with multifaceted etiology characterized by increased hypertension and proteinuria after 20 weeks of gestation. The present study was directed to determine the role of eNOS in susceptibility to PE and the association of c.894G > T (p.(Glu298Asp), intron 4b/4a, g.-786 T > C and other possible variants of eNOS gene with preeclampsia in Pakistani population. Computational analysis of identified variants in the coding and non-coding region of the eNOS gene was also conducted to determine the change in gene regulation and further protein stability. A total of 600 women were evaluated, 188 with mild and 112 with PE with severe features PE with 300 normotensive pregnant women. NO levels and genotyping following sequencing was conducted for eNOS gene variants. Further insilico studies were performed to get insights into the structural and functional impact of identifies mutation on eNOS protein as well as on protein regulation. Data from the current study suggest that there might be other risk variants of the eNOS gene (g.2051G > A and g.1861G > A) and lower levels of serum NO that confers in an increased risk of PE. The detailed computational investigation further confirmed the deformities and changes in protein flexibility upon Glu298Asp. These structural alterations might be associated with preeclampsia. Variants in the promoter region of the eNOS gene further validate the change in gene regulation for the onset of disease. Identification of key structural and functional features in eNOS protein and gene regulatory region might be used for designing specific drugs for therapeutic purpose.
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