Zobrazeno 1 - 6
of 6
pro vyhledávání: '"Danguole Ziogiene"'
Autor:
Gytis Dudas, Samuel L. Hong, Barney I. Potter, Sébastien Calvignac-Spencer, Frédéric S. Niatou-Singa, Thais B. Tombolomako, Terence Fuh-Neba, Ulrich Vickos, Markus Ulrich, Fabian H. Leendertz, Kamran Khan, Carmen Huber, Alexander Watts, Ingrida Olendraitė, Joost Snijder, Kim N. Wijnant, Alexandre M.J.J. Bonvin, Pascale Martres, Sylvie Behillil, Ahidjo Ayouba, Martin Foudi Maidadi, Dowbiss Meta Djomsi, Celestin Godwe, Christelle Butel, Aistis Šimaitis, Miglė Gabrielaitė, Monika Katėnaitė, Rimvydas Norvilas, Ligita Raugaitė, Giscard Wilfried Koyaweda, Jephté Kaleb Kandou, Rimvydas Jonikas, Inga Nasvytienė, Živilė Žemeckienė, Dovydas Gečys, Kamilė Tamušauskaitė, Milda Norkienė, Emilija Vasiliūnaitė, Danguolė Žiogienė, Albertas Timinskas, Marius Šukys, Mantas Šarauskas, Gediminas Alzbutas, Adrienne Amuri Aziza, Eddy Kinganda Lusamaki, Jean-Claude Makangara Cigolo, Francisca Muyembe Mawete, Emmanuel Lokilo Lofiko, Placide Mbala Kingebeni, Jean-Jacques Muyembe Tamfum, Marie Roseline Darnycka Belizaire, René Ghislain Essomba, Marie Claire Okomo Assoumou, Akenji Blaise Mboringong, Alle Baba Dieng, Dovilė Juozapaitė, Salome Hosch, Justino Obama, Mitoha Ondo’o Ayekaba, Daniel Naumovas, Arnoldas Pautienius, Clotaire Donatien Rafaï, Astra Vitkauskienė, Rasa Ugenskienė, Alma Gedvilaitė, Darius Čereškevičius, Vaiva Lesauskaitė, Lukas Žemaitis, Laimonas Griškevičius, Guy Baele
Publikováno v:
Nature Communications, Vol 12, Iss 1, Pp 1-12 (2021)
Here, the authors describe the emergence and spread of a new potential SARS-CoV-2 variant of interest, B.1.620. They show that this lineage, first identified in Lithuania, has established local transmission in Europe on multiple occasions and likely
Externí odkaz:
https://doaj.org/article/cc0bb235253c4659bb2f7877056cfe39
Autor:
Danguole Ziogiene, Andrius Burdulis, Albertas Timinskas, Ruta Zinkeviciute, Emilija Vasiliunaite, Milda Norkiene, Alma Gedvilaite
Publikováno v:
PLoS ONE, Vol 19, Iss 11, p e0313330 (2024)
Protein glycosylation is a fundamental modification crucial for numerous intra- and extracellular functions in all eukaryotes. The phosphorylated dolichol (Dol-P) is utilized in N-linked protein glycosylation and other glycosylation pathways. Dolicho
Externí odkaz:
https://doaj.org/article/c69563437803498e886173a4511ee2fe
Autor:
Alma Gedvilaite, Indre Kucinskaite-Kodze, Rita Lasickiene, Albertas Timinskas, Ausra Vaitiekaite, Danguole Ziogiene, Aurelija Zvirbliene
Publikováno v:
Viruses, Vol 7, Iss 8, Pp 4204-4229 (2015)
Recombinant virus-like particles (VLPs) represent a promising tool for protein engineering. Recently, trichodysplasia spinulosa-associated polyomavirus (TSPyV) viral protein 1 (VP1) was efficiently produced in yeast expression system and shown to sel
Externí odkaz:
https://doaj.org/article/1cb98587aebd40baa8a5859876641063
Publikováno v:
FEMS yeast research. 19(3)
Although there are similarities in the core steps of the secretion pathway from yeast to higher eukaryotes, significant functional differences exist even among diverse yeast species. Here, we used next-generation sequencing to identify two mutations
Autor:
Ausra Vaitiekaite, Rita Lasickiene, Danguole Ziogiene, Alma Gedvilaite, Indre Kucinskaite-Kodze, Aurelija Zvirbliene, Albertas Timinskas
Publikováno v:
Viruses; Volume 7; Issue 8; Pages: 4204-4229
Viruses, Vol 7, Iss 8, Pp 4204-4229 (2015)
Viruses, Basel : MDPI AG, 2015, vol. 7, iss. 8, p. 4204-4229
Viruses
Volume 7
Issue 8
Pages 4204-4229
Viruses, Vol 7, Iss 8, Pp 4204-4229 (2015)
Viruses, Basel : MDPI AG, 2015, vol. 7, iss. 8, p. 4204-4229
Viruses
Volume 7
Issue 8
Pages 4204-4229
Recombinant virus-like particles (VLPs) represent a promising tool for protein engineering. Recently, trichodysplasia spinulosa-associated polyomavirus (TSPyV) viral protein 1 (VP1) was efficiently produced in yeast expression system and shown to sel
Autor:
Danguole Ziogiene, Alma Gedvilaite, Kestutis Sasnauskas, Milda Norkiene, Jomante Stonyte, Egle Mazeike
Publikováno v:
BMC biotechnology, London : BioMed Central Ltd., 2015, vol. 15, art. no. 68, p. [1-14]
BMC Biotechnology
BMC Biotechnology
Background: Eleven new human polyomaviruses (HPyVs) have been identified in the last decade. Serological studies show that these novel HPyVs sub-clinically infect humans at an early age. The routes of infection, entry pathways, and cell tropism of ne
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::4c24d8f694e9606116f4970ee33792d6
https://repository.vu.lt/VU:ELABAPDB13960140&prefLang=en_US
https://repository.vu.lt/VU:ELABAPDB13960140&prefLang=en_US