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Single Nucleotide Polymorphism and Asthma: From Conformational Variations to Structural Alternations

Publish Year: 1393
Type: Journal paper
Language: English
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JR_MBD-1-2_001

Index date: 11 March 2025

Single Nucleotide Polymorphism and Asthma: From Conformational Variations to Structural Alternations abstract

Background: Asthma is the main reason of disability, health resource exploitation and low quality of life for those who are affected. It is estimated that nearly 300 million people in the world are suffering from asthma. Studies have identified 18 genomic regions and more than 100 genes associated with asthma. Among these candidate genes, IL-17F plays a very interesting role in asthma. This study was conducted to predict the conformational and functional impact of asthma-associated IL-17F polymorphisms on protein product of the corresponding gene using Phyre2, PolyPhen2 and SIFT softwares. Methods: In the present study, 10 significant missense SNPs (rs763780, rs144576902, rs11465553, rs368500268, rs141798304, rs2397084, rs146083682, rs200163061, rs376671742, and rs373228601) were taken from Ensembl Genome Browser database. Polymorphism-induced protein structural changes were predicted using Protein Homology analogY Recognition Engine V2.0 (PHYRE2) program. The possible impact of an amino acid substitution on the function of protein was analyzed using PolyPhen-2 (Polymorphism Phenotyping Version2) and SIFT (Sorting Intolerant From Tolerant) tools. Results: The analysis revealed mutant proteins having structural changes in the number of atoms, H-bonds, turns and helices. While wild copy has 82 H-bonds, 5 helices and 20 turns, the mutant types show considerable changes. At functional level also, substantial changes were observed between the wild protein and the mutant one. Conclusion: A single nucleotide polymorphism in the gene sequence can lead to the substantial structural and functional variations in the protein product of the gene, a process that may account for etiology of a number of complex diseases including asthma.

Single Nucleotide Polymorphism and Asthma: From Conformational Variations to Structural Alternations Keywords:

Single Nucleotide Polymorphism and Asthma: From Conformational Variations to Structural Alternations authors

Sareh Raeiszadeh Jahromi

Genetics and Genomics laboratory, Department of Studies in Zoology, University of Mysore, Mysore, India

Mahdi Bijanzadeh

Department of Medical Genetics, School of Medicine, Ahvaz Jundishapur University of Medical Sciences, Ahvaz, Iran

Mahesh P A

Department of Pulmonary Medicine, J.S.S Medical College, Mysore, India

Sangeetha Vishweswaraiah

Genetics and Genomics laboratory, Department of Studies in Zoology, University of Mysore, Mysore, India

Nallur Ramachandra

Department of Studies in Zoology, University of Mysore, Mysore, India

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Web references:[۳۴] http://www.ncbi.nlm.nih.gov/snp/[۳۵] http://www.ensembl.org/[۳۶] http://www.imperial.ac.uk/phyre/[۳۷] www.RasMol.org[۳۸] http://genetics.bwh.harvard.edu/pph۲/[۱] Adzhubei I, Jordan ...
Akdis M, Burgler S, Crameri R, Eiwegger T, Fujita H, ...
Bamshad MJ, Ng SB, Bigham AW, Tabor HK, Emond MJ, ...
Bijanzadeh M, Mahesh PA, Ramachandra NB. ۲۰۱۱. An understanding of ...
Bijanzadeh M, Ramachandra NB, Mahesh PA, Mysore RS, Kumar P, ...
Chang SH, Dong C. ۲۰۰۷. A novel heterodimeric cytokine consisting ...
Cheung PF, Wong CK, Lam CW. ۲۰۰۸. Molecular mechanisms of ...
Davoodi P, Mahesh PA, Holla AD, Vijayakumar GS, Jayaraj BS, ...
Emahazion T, Feuk L, Jobs M, Sawyer SL, Fredman D. ...
Haagerup A, Bjerke T, Schiotz PO, Binderup HG, Dahl R, ...
Hymowitz SG, Filvaroff EH, Yin JP, Lee J, Cai L, ...
John M, Au BT, Jose PJ, Lim S, Saunders M, ...
Johnson GC, Todd JA. ۲۰۰۰. Strategies in complex disease mapping. ...
Kawaguchi M, Onuchic LF, Li XD, Essayan DM, Schroeder J, ...
Kruse S, Mao XQ, Heinzmann A, Blattmann S, Roberts MH, ...
Lai E, Riley J, Purvis I, Roses A. ۱۹۹۸. A ...
Larché M, Robinson DS, Kay AB. ۲۰۰۳. The role of ...
Liang SC, Long AJ, Bennett F, Whitters MJ, Karim R, ...
Lummus ZL, Alam R, Bernstein JA, Bernstein DI. ۱۹۹۸. Diisocyanate ...
Mahdi B, Mahesh PA, Mysore RS, Kumar P, Jayaraj BS, ...
Masoli M, Fabian D, Holt S, Beasley R. ۲۰۰۴. The ...
Mukherjee AB, Zhang Z. ۲۰۱۱. Allergic asthma: influence of genetic ...
Ng PC, Henikoff S. ۲۰۰۳. SIFT: Predicting amino acid changes ...
Ober C, Hoffjan S. ۲۰۰۶. Asthma genetics ۲۰۰۶: the long ...
Ramensky V, Bork P, Sunyaev S. ۲۰۰۲. Human non-synonymous SNPs: ...
Ramsey CD, Lazarus R, Camargo CA Jr, Weiss ST, Celedon ...
Redington AE, Madden J, Frew AJ, Djukanovic R, RocheWR, et ...
Risch N, Merikangas K. ۱۹۹۶. The future of genetic studies ...
Risch NJ. ۲۰۰۰. Searching for genetic determinants in the new ...
Shihab HA, Gough J, Mort M, Cooper DN, Day IN, ...
Starnes T, Robertson MJ, Sledge G, Kelich S, Nakshatri H, ...
Wjst M, Fischer G, Immervoll T, Jung M, Saar K, ...
Zheng XY, Guan WJ, Mao C, Chen HF, Ding H, ...
Web references:[۳۴] http://www.ncbi.nlm.nih.gov/snp/[۳۵] http://www.ensembl.org/[۳۶] http://www.imperial.ac.uk/phyre/[۳۷] www.RasMol.org[۳۸] http://genetics.bwh.harvard.edu/pph۲/ ...
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