Thesis (Selection of subject)Thesis (Selection of subject)(version: 368)
Thesis details
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Nekonvenční sekrece bílkovin u rostlin
Thesis title in Czech: Nekonvenční sekrece bílkovin u rostlin
Thesis title in English: Unconventional protein secretion in plants
Key words: nekonveční sekrece bílkovin; endomembránový systém; exocyst; exosómy; autofagie; prevakuolární kompartment; paramurální tělíska
English key words: unconventional protein secretion; endomembrane system; exocyst; exosomes; autophagy; prevacuolar compartment; paramural bodies
Academic year of topic announcement: 2023/2024
Thesis type: Bachelor's thesis
Thesis language: čeština
Department: Department of Experimental Plant Biology (31-130)
Supervisor: prof. RNDr. Viktor Žárský, CSc.
Author: hidden - assigned and confirmed by the Study Dept.
Date of registration: 31.12.2023
Date of assignment: 25.01.2024
Confirmed by Study dept. on: 29.01.2024
Guidelines
Plant cell biology - 130P34
References
Cláudia Pereira, Gian Pietro Di Sansebastiano,
Mechanisms of membrane traffic in plant cells,
Plant Physiology and Biochemistry,
Volume 169,
2021,
Pages 102-111,
ISSN 0981-9428,
https://doi.org/10.1016/j.plaphy.2021.11.003.

Li, X., Liu, B., Wen, Y., Wang, J., Guo, Y. R., Shi, A., & Lin, L. (2024). Coordination of RAB-8 and RAB-11 during unconventional protein secretion. The Journal of cell biology, 223(2), e202306107. https://doi.org/10.1083/jcb.202306107

Farley, J. T., Eldahshoury, M. K., & de Marcos Lousa, C. (2022). Unconventional Secretion of Plant Extracellular Vesicles and Their Benefits to Human Health: A Mini Review. Frontiers in cell and developmental biology, 10, 883841. https://doi.org/10.3389/fcell.2022.883841
Preliminary scope of work
V tomto bakalářském projektu studentka shrne současné znalosti o nekonvenční sekreci bílkovin u rostlin a stručně je srovná s mnohem hlubšími znalostmi u živočošných buněk.
Preliminary scope of work in English
In this bachelor review project student will summarize current knowledge in the field of unconventional protein secretion in plants and compare it shortly also with much deeper insights in animal cells.
 
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