Publication:
Epistatic effects between amino acid insertions and substitutions mediate toxin-resistance of vertebrate Na+, K+-ATPases

dc.contributor.authorÖZBEK SARICA, PEMRA
dc.contributor.authorsMohammadi S., Özdemir H. I., Özbek Sarica P., Sumbul F., Stiller J., Deng Y., Crawford A. J., Rowland H. M., Storz J. F., Andolfatto P., et al.
dc.date.accessioned2022-12-28T14:11:26Z
dc.date.accessioned2026-01-10T19:28:16Z
dc.date.available2022-12-28T14:11:26Z
dc.date.issued2022-12-01
dc.description.abstractThe recurrent evolution of resistance to cardiotonic steroids (CTS) across diverse animals most frequently involves convergent amino-acid substitutions in the H1-H2 extracellular loop of Na+, K + -ATPase (NKA). Previous work revealed that hystricognath rodents (e.g. chinchilla) and pterocliform birds (sandgrouse) have convergently evolved amino-acid insertions in the H1-H2 loop, but their functional significance was not known. Using protein engineering, we show that these insertions have distinct effects on CTS resistance in homologs of each of the two species that strongly depend on intramolecular interactions with other residues. Removing the insertion in the chinchilla NKA unexpectedly increases CTS resistance and decreases NKA activity. In the sandgrouse NKA, the amino acid insertion and substitution Q111R both contribute to an augmented CTS resistance without compromising ATPase activity levels. Molecular docking simulations provide additional insight into the biophysical mechanisms responsible for the context-specific mutational effects on CTS insensitivity of the enzyme. Our results highlight the diversity of genetic substrates that underlie CTS insensitivity in vertebrate NKA and reveal how amino-acid insertions can alter the phenotypic effects of point mutations at key sites in the same protein domain.
dc.identifier.citationMohammadi S., Özdemir H. I., Özbek Sarica P., Sumbul F., Stiller J., Deng Y., Crawford A. J., Rowland H. M., Storz J. F., Andolfatto P., et al., "Epistatic effects between amino acid insertions and substitutions mediate toxin-resistance of vertebrate Na+, K+-ATPases", MOLECULAR BIOLOGY AND EVOLUTION, cilt.1, sa.1, ss.100-102, 2022
dc.identifier.doi10.1093/molbev/msac258
dc.identifier.endpage102
dc.identifier.issn0737-4038
dc.identifier.issue1
dc.identifier.startpage100
dc.identifier.urihttps://academic.oup.com/mbe/advance-article/doi/10.1093/molbev/msac258/6874786
dc.identifier.urihttps://hdl.handle.net/11424/284544
dc.identifier.volume1
dc.language.isoeng
dc.relation.ispartofMOLECULAR BIOLOGY AND EVOLUTION
dc.rightsinfo:eu-repo/semantics/openAccess
dc.subjectKimya Mühendisliği ve Teknolojisi
dc.subjectMühendislik ve Teknoloji
dc.subjectChemical Engineering and Technology
dc.subjectEngineering and Technology
dc.subjectMühendislik, Bilişim ve Teknoloji (ENG)
dc.subjectMühendislik
dc.subjectMÜHENDİSLİK, KİMYASAL
dc.subjectEngineering, Computing & Technology (ENG)
dc.subjectENGINEERING
dc.subjectENGINEERING, CHEMICAL
dc.subjectAkışkan Akışı ve Transfer İşlemleri
dc.subjectKolloid ve Yüzey Kimyası
dc.subjectKimyasal Sağlık ve Güvenlik
dc.subjectKataliz
dc.subjectKimya Mühendisliği (çeşitli)
dc.subjectGenel Kimya Mühendisliği
dc.subjectFizik Bilimleri
dc.subjectFluid Flow and Transfer Processes
dc.subjectColloid and Surface Chemistry
dc.subjectChemical Health and Safety
dc.subjectCatalysis
dc.subjectChemical Engineering (miscellaneous)
dc.subjectGeneral Chemical Engineering
dc.subjectPhysical Sciences
dc.subjectNa+ K+ -ATPase
dc.subjectcardiotonic steroids
dc.subjectchinchilla
dc.subjectsandgrouse
dc.subjectindel evolution.
dc.titleEpistatic effects between amino acid insertions and substitutions mediate toxin-resistance of vertebrate Na+, K+-ATPases
dc.typearticle
dspace.entity.typePublication

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