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dc.contributor.authorRuokolainen, Visa
dc.date.accessioned2020-10-14T12:54:51Z
dc.date.available2020-10-14T12:54:51Z
dc.date.issued2020
dc.identifier.isbn978-951-39-8345-1
dc.identifier.urihttps://jyx.jyu.fi/handle/123456789/72171
dc.description.abstractEnteroviruses are small, non-enveloped viruses with a positive sense single stranded RNA genome. They cause different diseases in humans, usually with symptoms of common cold, but also more severe acute and chronic infections such as encephalitis and type 1 diabetes. Although the structure and infection pathway of many entero-viruses is rather well-known, many important details remain unresolved. For some enteroviruses receptor binding or low pH has been shown to convert them from an intact to an intermediate particle, which is needed for successful infection. However, B-species enteroviruses do not rely on the same factors e.g. low pH for efficient infec-tion. Furthermore, the decisive factor releasing the enterovirus genome, is still un-known. Learning these missing factors is important for understanding the virus in-fection in more detail, that in turn provides basis for developing antiviral strategies. This study concentrates on two B-species enteroviruses, echovirus 1 and cox-sackievirus A9, aiming to resolve if physiological factors, serum albumin and ion changes during the virus infection, trigger the virus transformation from intact to altered particles, and possibly further to genome release. We found that both factors contribute to formation of an intermediate particle of both viruses. Furthermore, spe-cific changes in the ionic milieu led to the final genome release. The studied factors resulted in rather similar changes in their cryo-EM structures that are found for other enteroviruses primed using factors such as heat, low pH and receptor binding. However, we found that priming the coxsackievirus A9 using ion changes or albu-min resulted in slightly different changes in virus capsid proteins: albumin resulted in more stable virus intermediate particle, whereas ions altered the virus capsid into a stage closer to the genome release. In the third part of this study, the aim was to develop a novel tool for live cell imaging of enterovirus entry and uncoating. We first solved the structure of intercalating RNA dye SYBR green II, modified it for better fluorescent properties and different binding capabilities, and finally verified its supe-riority in virus uncoating assays.en
dc.format.mimetypeapplication/pdf
dc.language.isoeng
dc.publisherJyväskylän yliopisto
dc.relation.ispartofseriesJYU Dissertations
dc.relation.haspart<b>Artikkeli I:</b> Ruokolainen, V., Domanska, A., Laajala, M., Pelliccia, M., Butcher, S. J., & Marjomäki, V. (2019). Extracellular albumin and endosomal ions prime enterovirus particles for uncoating that can be prevented by fatty acid saturation. <i>Journal of Virology, 93 (17), e00599-19.</i> <a href="https://doi.org/10.1128/JVI.00599-19"target="_blank"> DOI: 10.1128/JVI.00599-19</a>
dc.relation.haspart<b>Artikkeli II:</b> Ruokolainen, Visa; Laajala, Mira; Marjomäki, Varpu (2020). Real-time Fluorescence Measurement of Enterovirus Uncoating. <i>Bio-protocol, 10 (7), e3582.</i> <a href="https://doi.org/10.21769/BioProtoc.3582"target="_blank"> DOI: 10.21769/BioProtoc.3582</a>
dc.relation.haspart<b>Artikkeli III:</b> Domanska A., Ruokolainen V., Plavec Z., Löflund B., Soliymani R.,Butcher S. J., Marjomäki V. Albumin and Cationic Ions Can Seperately Prime Coxsackievirus A9 for Uncoating. <i>Manuscript.</i>
dc.relation.haspart<b>Artikkeli IV:</b> Saarnio, Ville K.; Salorinne, Kirsi; Ruokolainen, Visa P.; Nilsson, Jesper R.; Tero, Tiia-Riikka; Oikarinen, Sami; Wilhelmsson, L. Marcus; Lahtinen, Tanja M.; Marjomäki, Varpu S. (2020). Development of functionalized SYBR green II related cyanine dyes for viral RNA detection. <i>Dyes and Pigments, 177, 108282.</i> <a href="https://doi.org/10.1016/j.dyepig.2020.108282"target="_blank"> DOI: 10.1016/j.dyepig.2020.108282</a>
dc.rightsIn Copyright
dc.subjectenterovirukset
dc.subjectECHO-virukset
dc.subjectinfektiot
dc.subjectsolufysiologia
dc.subjectalbumiinit
dc.subjectionit
dc.subjectmerkkiaineet
dc.subjectfluoresenssimikroskopia
dc.subjectalbumin
dc.subjectenterovirus uncoating
dc.subjectfluorescence measurement
dc.subjectgenome release
dc.subjectintercalating fluorophore
dc.subjectintermediate particle
dc.subjections
dc.subject.otheralbuminen
dc.subject.otherenterovirus uncoatingen
dc.subject.otherfluorescence measurementen
dc.subject.othergenome releaseen
dc.subject.otherintercalating fluorophoreen
dc.subject.otherintermediate particleen
dc.subject.otheralbumiinifi
dc.subject.otherenterovirusten avautuminenfi
dc.subject.otherfluoresenssimittausfi
dc.subject.otherperimän vapautuminenfi
dc.subject.otherinterkaloituva fluoroforifi
dc.subject.otherviruksen välimuotopartikkelifi
dc.titleStudying Factors that Contribute to Uncoating of Enteroviruses
dc.typedoctoral thesis
dc.identifier.urnURN:ISBN:978-951-39-8345-1
dc.contributor.tiedekuntaFaculty of Mathematics and Scienceen
dc.contributor.tiedekuntaMatemaattis-luonnontieteellinen tiedekuntafi
dc.contributor.yliopistoUniversity of Jyväskyläen
dc.contributor.yliopistoJyväskylän yliopistofi
dc.type.coarhttp://purl.org/coar/resource_type/c_db06
dc.relation.issn2489-9003
dc.rights.copyright© The Author & University of Jyväskylä
dc.rights.accesslevelopenAccess
dc.type.publicationdoctoralThesis
dc.subject.ysoenterovirusesen
dc.subject.ysovirusesen
dc.subject.ysoionsen
dc.subject.ysoenteroviruksetfi
dc.subject.ysoviruksetfi
dc.subject.ysoionitfi
dc.format.contentfulltext
dc.rights.urlhttps://rightsstatements.org/page/InC/1.0/


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