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dc.contributor.authorAslan, Tolga
dc.contributor.authorYenenler-Kutlu, Asli
dc.contributor.authorGerlevik, Umut
dc.contributor.authorAKTUĞLU ZEYBEK, Ayşe Çiğdem
dc.contributor.authorKIYKIM, Ertuğrul
dc.contributor.authorSEZERMAN, Osman Uğur
dc.contributor.authorBİRGÜL İYİSON, NECLA
dc.date.accessioned2021-12-10T13:19:19Z
dc.date.available2021-12-10T13:19:19Z
dc.identifier.citationAslan T., Yenenler-Kutlu A., Gerlevik U., AKTUĞLU ZEYBEK A. Ç. , KIYKIM E., SEZERMAN O. U. , BİRGÜL İYİSON N., "Identifying and elucidating the roles of Y198N and Y204F mutations in the PAH enzyme through molecular dynamic simulations", JOURNAL OF BIOMOLECULAR STRUCTURE & DYNAMICS, 2021
dc.identifier.issn0739-1102
dc.identifier.othervv_1032021
dc.identifier.otherav_febb6548-8c57-4ae0-b087-21a10895e1e4
dc.identifier.urihttp://hdl.handle.net/20.500.12627/175928
dc.identifier.urihttps://doi.org/10.1080/07391102.2021.1921619
dc.description.abstractPhenylketonuria is an autosomal recessive disorder caused by mutations in the phenylalanine hydroxylase gene. In phenylketonuria causes various symptoms including severe mental retardation. PAH gene of a classical Phenylketonuria patient was sequenced, and two novel heterozygous mutations, p.Y198N and p.Y204F, were found. This study aimed to reveal the impacts of these variants on the structural stability of the PAH enzyme. In-silico analyses using prediction tools and molecular dynamics simulations were performed. Mutations were introduced to the wild type catalytic monomer and full length tetramer crystal structures. Variant pathogenicity analyses predicted p.Y198N to be damaging, and p.Y204F to be benign by some prediction tools and damaging by others. Simulations suggested p.Y198N mutation cause significant fluctuations in the spatial organization of two catalytic residues in the temperature accelerated MD simulations with the monomer and increased root-mean-square deviations in the tetramer structure. p.Y204F causes noticeable changes in the spatial positioning of T278 suggesting a possible segregation from the catalytic site in temperature accelerated MD simulations with the monomer. This mutation also leads to increased root-mean-square fluctuations in the regulatory domain which may lead to conformational change resulting in inhibition of dimerization and enzyme activation. Our study reports two novel mutations in the PAH gene and gives insight to their effects on the PAH activity. MD simulations did not yield conclusive results that explains the phenotype but gave plausible insight to possible effects which should be investigated further with in-silico and in-vitro studies to assess the roles of these mutations in etiology of PKU. Communicated by Ramaswamy H. Sarma
dc.language.isoeng
dc.subjectDrug Discovery
dc.subjectAging
dc.subjectGeneral Biochemistry, Genetics and Molecular Biology
dc.subjectBiochemistry
dc.subjectBiophysics
dc.subjectStructural Biology
dc.subjectBiochemistry (medical)
dc.subjectLife Sciences
dc.subjectHealth Sciences
dc.subjectBİYOKİMYA VE MOLEKÜLER BİYOLOJİ
dc.subjectMoleküler Biyoloji ve Genetik
dc.subjectYaşam Bilimleri (LIFE)
dc.subjectBİYOFİZİK
dc.subjectBiyoloji ve Biyokimya
dc.subjectTıp
dc.subjectSağlık Bilimleri
dc.subjectTemel Tıp Bilimleri
dc.subjectBiyofizik
dc.subjectBiyokimya
dc.subjectYaşam Bilimleri
dc.subjectMoleküler Biyoloji ve Genetik
dc.subjectSitogenetik
dc.subjectTemel Bilimler
dc.subjectBiochemistry, Genetics and Molecular Biology (miscellaneous)
dc.subjectClinical Biochemistry
dc.subjectCancer Research
dc.subjectMolecular Biology
dc.titleIdentifying and elucidating the roles of Y198N and Y204F mutations in the PAH enzyme through molecular dynamic simulations
dc.typeMakale
dc.relation.journalJOURNAL OF BIOMOLECULAR STRUCTURE & DYNAMICS
dc.contributor.departmentBoğaziçi Üniversitesi , ,
dc.contributor.firstauthorID2634400


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