0000000000093490

AUTHOR

Paula Turkki

showing 13 related works from this author

Echovirus 1 internalization negatively regulates epidermal growth factor receptor downregulation

2017

We have demonstrated previously that the human picornavirus Echovirus 1 (EV1) triggers an infectious internalization pathway that follows closely, but seems to stay separate, from the epidermal growth factor receptor (EGFR) pathway triggered by epidermal growth factor (EGF). Here, we confirmed by using live and confocal microscopy that EGFR and EV1 vesicles are following intimately each other but are distinct entities with different degradation kinetics. We show here that despite being sorted to different pathways and located in distinct endosomes, EV1 inhibits EGFR downregulation. Simultaneous treatment with EV1 and EGF led to an accumulation of EGFR in cytoplasmic endosomes, which was evi…

enterovirussignalingendosytoosiepidermal growth factor receptor (EGFR)pilaantuminen
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Slow infection due to lowering amount of intact versus empty particles is a characteristic feature of Coxsackievirus B5, dictated by the structural p…

2019

Enterovirus B species typically cause a rapid cytolytic infection leading to efficient release of progeny viruses. However, they are also capable of persistent infections in tissues, which are suggested to contribute to severe chronic states such as myocardial inflammation and type 1 diabetes. In order to understand the factors contributing to differential infection strategies, we constructed a chimera by combining the capsid proteins from a fast cytolysis causing echovirus 1 (EV1) with non-structural proteins from Coxsackievirus B5 (CVB5) showing persistent infection in RD cells. The results showed that the chimera behaved similar to the parental EV1 leading to efficient cytolysis in both …

enteroviruksetproteiinitinfektiotkapsidi
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Cellular factors promoting efficient baculovirus internalization and gene delivery into human cells

2013

integriinitreseptoritechovirus-1integrinvirus internalizationelinkiertobakuloviruksetendocytosissyndekaanitECHO-viruksetBaculovirusendosytoosiinternalisaatiosyndecan
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Reply to "Heparan Sulfate in Baculovirus Binding and Entry of Mammalian Cells"

2014

(1), we investigated the interaction ofbaculovirus and mammalian cell surface heparan sulfate pro-teoglycans (HSPG). The data show that baculovirus requiresHSPG sulfation, particularly N- and 6-O-sulfation, to bind andtransduce mammalian cells. We also show that baculovirus asso-ciates specifically with syndecan-1 (SDC-1) but not with othersyndecans or glypicans.As discussed in the article, HS has previously been shown to beinvolved in glycoprotein 64 (gp64)-mediated baculovirus bindingonto mammalian cells. Heparin and heparinase I and II treatmentof cells have also been shown to prevent the virus binding (2, 3).The role of HS in baculovirus entry was further studied in ourarticle (1). Bindi…

BaculoviridaevirusesImmunologyVirus AttachmentGene deliveryMicrobiologySyndecan 1chemistry.chemical_compoundSulfationVirologymedicineHumansReceptorLetters to the Editorchemistry.chemical_classificationproteiinibiologyHeparan sulfateHeparinVirus Internalizationbiology.organism_classificationMolecular biologychemistryInsect ScienceReceptors VirusSyndecan-1GlycoproteinproteinBaculoviridaemedicine.drug
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Clathrin-independent entry of baculovirus triggers uptake of E. coli in non-phagocytic human cells

2008

The prototype baculovirus, Autographa californica multiple nucleopolyhedrovirus, an insect pathogen, holds great potential as a gene therapy vector. To develop transductional targeting and gene delivery by baculovirus, we focused on characterizing the nature and regulation of its uptake in human cancer cells. Baculovirus entered the cells along fluid-phase markers from the raft areas into smooth-surfaced vesicles devoid of clathrin. Notably, regulators associated with macropinocytosis, namely EIPA, Pak1, Rab34, and Rac1, had no significant effect on viral transduction, and the virus did not induce fluid-phase uptake. The internalization and nuclear uptake was, however, affected by mutants o…

RHOASciencevirusesmedia_common.quotation_subjecteducationGene deliveryClathrinCell LineMembrane Lipids03 medical and health sciencesPhagocytosisCell Biology/Membranes and SortingViral entryVirologyEscherichia coliBiochemistry/Cell Signaling and Trafficking StructuresHumansInternalization030304 developmental biologymedia_commonAdenosine Triphosphatases0303 health sciencesMultidisciplinaryBase SequencebiologyADP-Ribosylation FactorsQ030302 biochemistry & molecular biologyHEK 293 cellsRTransfectionMolecular biologyClathrinEndocytosisNucleopolyhedroviruses3. Good healthCell biologyvirologiaADP-Ribosylation Factor 6Cell culturebiology.proteinMedicineRNA InterferenceResearch Article
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6- O - and N -Sulfated Syndecan-1 Promotes Baculovirus Binding and Entry into Mammalian Cells

2013

ABSTRACT Baculoviruses are insect-specific viruses commonly found in nature. They are not able to replicate in mammalian cells but can transduce them when equipped with an appropriate mammalian cell active expression cassette. Although the viruses have been studied in several types of mammalian cells from different origins, the receptor that baculovirus uses to enter or interact with mammalian cells has not yet been identified. Due to the wide tropism of the virus, the receptor has been suggested to be a generally found cell surface molecule. In this article, we investigated the interaction of baculovirus and mammalian cell surface heparan sulfate proteoglycans (HSPG) in more detail. Our da…

BaculoviridaebiologyvirusesImmunologyCellGene deliverybiology.organism_classificationMicrobiologyVirus-Cell InteractionsCell biologySyndecan 1Transduction (genetics)medicine.anatomical_structureCell cultureVirologyInsect SciencemedicineExpression cassetteTropismJournal of Virology
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Infectious Entry Pathway of Enterovirus B Species

2015

Enterovirus B species (EV-B) are responsible for a vast number of mild and serious acute infections. They are also suspected of remaining in the body, where they cause persistent infections contributing to chronic diseases such as type I diabetes. Recent studies of the infectious entry pathway of these viruses revealed remarkable similarities, including non-clathrin entry of large endosomes originating from the plasma membrane invaginations. Many cellular factors regulating the efficient entry have recently been associated with macropinocytic uptake, such as Rac1, serine/threonine p21-activated kinase (Pak1), actin, Na/H exchanger, phospholipace C (PLC) and protein kinase Cα (PKCα). Another…

coxsackievirus A9EchovirusEndosomelcsh:QR1-502Virus AttachmentEndosomesReviewCoxsackievirusEndocytosismedicine.disease_causelcsh:Microbiology03 medical and health sciencesVirologymedicineReceptorProtein kinase A030304 developmental biology0303 health sciencesbiologyKinase030302 biochemistry & molecular biologyechovirusVirus Internalizationbiology.organism_classificationVirologyEndocytosisEnterovirus B Human3. Good healthCell biologyInfectious DiseasesHost-Pathogen InteractionsEnterovirusentrycoxsackievirus B3signalingViruses
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Purification and characterization of the mda-7 tumor suppressor protein expressed in insect cells

2008

solutohjelmoitunut solukuolemaIL-24mda-7apoptosishyönteisetcancer therapysyöpätauditcancer cell
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Human enterovirus group B viruses rely on vimentin dynamics for efficient processing of viral nonstructural proteins

2020

We report that several viruses from the human enterovirus group B cause massive vimentin rearrangements during lytic infection. Comprehensive studies suggested that viral protein synthesis was triggering the vimentin rearrangements. Blocking the host cell vimentin dynamics with IDPN did not significantly affect the production of progeny viruses and only moderately lowered the synthesis of structural proteins such as VP1. In contrast, the synthesis of the non-structural proteins 2A, 3C, and 3D was drastically lowered. This led to attenuation of the cleavage of the host cell substrates PABP and G3BP1 and reduced caspase activation, thus leading to prolonged cell survival. Furthermore, the loc…

enteroviruksetKasvibiologia mikrobiologia virologia - Plant biology microbiology virologyisäntäsolutBiolääketieteet - Biomedicinevirusesproteiinitinfektiot
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Cell Susceptibility to Baculovirus Transduction and Echovirus Infection Is Modified by Protein Kinase C Phosphorylation and Vimentin Organization

2013

ABSTRACT Some cell types are more susceptible to viral gene transfer or virus infection than others, irrespective of the number of viral receptors or virus binding efficacy on their surfaces. In order to characterize the cell-line-specific features contributing to efficient virus entry, we studied two cell lines (Ea.hy926 and MG-63) that are nearly nonpermissive to insect-specific baculovirus (BV) and the human enterovirus echovirus 1 (EV1) and compared their characteristics with those of a highly permissive (HepG2) cell line. All the cell lines contained high levels of viral receptors on their surfaces, and virus binding was shown to be efficient. However, in nonpermissive cells, BV and it…

Protein Kinase C-alphaImmunologyVimentinProtein Kinase C-epsilonBiologyModels BiologicalMicrobiologyFilamentous actinCell LineSyndecan 1MiceTransduction (genetics)Transduction GeneticViral entryVirologyAnimalsHumansVimentinPhosphorylationProtein kinase CVirulenceHEK 293 cellsHep G2 CellsVirus InternalizationMolecular biologyvirologyCulture MediaEnterovirus B HumanVirus-Cell InteractionsHEK293 CellsvirologiaCell cultureInsect ScienceHost-Pathogen Interactionsbiology.proteinReceptors VirusSyndecan-1Integrin alpha2beta1BaculoviridaeJournal of Virology
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Echovirus 1 internalization negatively regulates epidermal growth factor receptor downregulation

2016

We have demonstrated previously that the human picornavirus Echovirus 1 (EV1) triggers an infectious internalization pathway that follows closely, but seems to stay separate, from the epidermal growth factor receptor (EGFR) pathway triggered by epidermal growth factor (EGF). Here, we confirmed by using live and confocal microscopy that EGFR and EV1 vesicles are following intimately each other but are distinct entities with different degradation kinetics. We show here that despite being sorted to different pathways and located in distinct endosomes, EV1 inhibits EGFR downregulation. Simultaneous treatment with EV1 and EGF led to an accumulation of EGFR in cytoplasmic endosomes, which was evi…

0301 basic medicine030102 biochemistry & molecular biologybiologyEndosomemedia_common.quotation_subjectImmunologyMicrobiologyClathrinCell biology03 medical and health sciences030104 developmental biologyDownregulation and upregulationEpidermal growth factorVirologybiology.proteinEpidermal growth factor receptorInternalizationA431 cellsProtein kinase Cmedia_commonCellular Microbiology
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Slow Infection due to Lowering the Amount of Intact versus Empty Particles Is a Characteristic Feature of Coxsackievirus B5 Dictated by the Structura…

2019

Enterovirus B species typically cause a rapid cytolytic infection leading to efficient release of progeny viruses. However, they are also capable of persistent infections in tissues, which are suggested to contribute to severe chronic states such as myocardial inflammation and type 1 diabetes. In order to understand the factors contributing to differential infection strategies, we constructed a chimera by combining the capsid proteins from fast-cytolysis-causing echovirus 1 (EV1) with nonstructural proteins from coxsackievirus B5 (CVB5), which shows persistent infection in RD cells. The results showed that the chimera behaved similarly to parental EV1, leading to efficient cytolysis in both…

EchovirusBiolääketieteet - BiomedicinevirusesImmunologyViral Nonstructural ProteinsCoxsackievirusVirus Replicationmedicine.disease_causeMicrobiologyVirusChimera (genetics)CapsidCell Line TumorVirologyEnterovirus InfectionsmedicineHumansviral structural proteinsvirus-host interactionsViral Structural Proteinsbiologyenterovirusviral nonstructural proteinsbiology.organism_classificationVirologyVirus-Cell InteractionsEnterovirus B HumanCytolysisCapsidLytic cycleKasvibiologia mikrobiologia virologia - Plant biology microbiology virologyInsect ScienceHost-Pathogen InteractionsEnterovirusinfection kinetics
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6-O sulfated and N-sulfated Syndecan-1 promotes baculovirus binding and entry into mammalian cells.

2013

Baculoviruses are insect-specific viruses commonly found in nature. They are not able to replicate in mammalian cells but can transduce them when equipped with an appropriate mammalian cell active expression cassette. Although the viruses have been studied in several types of mammalian cells from different origins, the receptor that baculovirus uses to enter or interact with mammalian cells has not yet been identified. Due to the wide tropism of the virus, the receptor has been suggested to be a generally found cell surface molecule. In this article, we investigated the interaction of baculovirus and mammalian cell surface heparan sulfate proteoglycans (HSPG) in more detail. Our data show t…

virologiavirusesvirology
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