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dc.contributor.advisorŽurovec, Michal
dc.contributor.authorVu, Trang Thanh
dc.date.accessioned2024-03-12T08:12:10Z
dc.date.available2024-03-12T08:12:10Z
dc.date.issued2020
dc.date.submitted2019-12-11
dc.identifier.urihttps://dspace.jcu.cz/handle/20.500.14390/42720
dc.description.abstractRecombinant proteins derived from Bombyx mori Ser-2 gene and Drosophila melanogaster Sgs3 gene were expressed in bacterial expression systems, purified and partially characterised. The identity of the expressed recombinant proteins was verified by mass spectroscopy. The recombinant proteins were tested for their ability to coat hydrophobic surfaces and sequentially serve as a substrate for the attachment of cells in tissue culture. The quality of the recombinant protein surface coating was examined by scanning electron microscopy. The results show that further optimisation for the purification, solubilization and refolding of these recombinant proteins is needed to incorporate their potential as biomaterials in the future.cze
dc.formativ p., 39p. (50704 characters)
dc.formativ p., 39p. (50704 characters)
dc.language.isoeng
dc.publisherJihočeská univerzitacze
dc.rightsBez omezení
dc.subjectproteinscze
dc.subjectrecombinantcze
dc.subjectexpressioncze
dc.subjectbombyxcze
dc.subjectdrosophilacze
dc.subjectproteinseng
dc.subjectrecombinanteng
dc.subjectexpressioneng
dc.subjectbombyxeng
dc.subjectdrosophilaeng
dc.titleExpression and purification of adhesive recombinant proteins, sericin 2 and salivary gland secretion 3cze
dc.title.alternativeExpression and purification of adhesive recombinant proteins, sericin 2 and salivary gland secretion 3eng
dc.typebakalářská prácecze
dc.identifier.stag55703
dc.description.abstract-translatedRecombinant proteins derived from Bombyx mori Ser-2 gene and Drosophila melanogaster Sgs3 gene were expressed in bacterial expression systems, purified and partially characterised. The identity of the expressed recombinant proteins was verified by mass spectroscopy. The recombinant proteins were tested for their ability to coat hydrophobic surfaces and sequentially serve as a substrate for the attachment of cells in tissue culture. The quality of the recombinant protein surface coating was examined by scanning electron microscopy. The results show that further optimisation for the purification, solubilization and refolding of these recombinant proteins is needed to incorporate their potential as biomaterials in the future.eng
dc.date.accepted2020-01-28
dc.description.departmentPřírodovědecká fakultacze
dc.thesis.degree-disciplineBiological Chemistrycze
dc.thesis.degree-grantorJihočeská univerzita. Přírodovědecká fakultacze
dc.thesis.degree-nameBc.
dc.thesis.degree-programBiochemistrycze
dc.description.gradeDokončená práce s úspěšnou obhajoboucze
dc.contributor.refereeDuhita Anindita, Paulina


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