Ivana Malcova
Overview
Explore the profile of Ivana Malcova including associated specialties, affiliations and a list of published articles.
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Articles
15
Citations
249
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0
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Recent Articles
1.
Zmuda M, Sedlackova E, Pravdova B, Cizkova M, Dalecka M, Cerny O, et al.
mBio
. 2024 Nov;
15(12):e0192524.
PMID: 39570047
is the causative agent of whooping cough in humans, a disease that has recently experienced a resurgence. In contrast, infects the respiratory tract of various mammalian species, causing a range...
2.
Navarrete K, Bumba L, Prudnikova T, Malcova I, Allsop T, Sebo P, et al.
Microbiol Spectr
. 2023 Apr;
11(3):e0411222.
PMID: 37036369
The classical species infect the respiratory tract of mammals. While B. bronchiseptica causes rather chronic respiratory infections in a variety of mammals, the human-adapted species B. pertussis and cause an...
3.
Malcova I, Senohrabkova L, Novakova L, Hasek J
Int J Mol Sci
. 2021 Jun;
22(10).
PMID: 34068231
Stress granules (SGs) are membrane-less assemblies arising upon various stresses in eukaryotic cells. They sequester mRNAs and proteins from stressful conditions and modulate gene expression to enable cells to resume...
4.
Malcova I, Bumba L, Uljanic F, Kuzmenko D, Nedomova J, Kamanova J
J Biol Chem
. 2021 Mar;
296:100607.
PMID: 33789161
The respiratory pathogens Bordetella pertussis and Bordetella bronchiseptica employ a type III secretion system (T3SS) to inject a 69-kDa BteA effector protein into host cells. This effector is known to...
5.
Bayram J, Malcova I, Sinkovec L, Holubova J, Streparola G, Jurnecka D, et al.
PLoS Pathog
. 2020 Aug;
16(8):e1008512.
PMID: 32776984
Bordetella bronchiseptica and Bordetella pertussis are closely related respiratory pathogens that evolved from a common bacterial ancestor. While B. bronchiseptica has an environmental reservoir and mostly establishes chronic infections in...
6.
Senohrabkova L, Malcova I, Hasek J
Curr Genet
. 2019 Feb;
65(4):919-940.
PMID: 30715564
Cells have elaborated a complex strategy to maintain protein homeostasis under physiological as well as stress conditions with the aim to ensure the smooth functioning of vital processes and producing...
7.
Vasicova P, Rinnerthaler M, Haskova D, Novakova L, Malcova I, Breitenbach M, et al.
Microb Cell
. 2017 Mar;
3(5):206-214.
PMID: 28357356
Actin filaments form cortical patches and emanating cables in fermenting cells of . This pattern has been shown to be depolarized in glucose-depleted cells after formaldehyde fixation and staining with...
8.
Malcova I, Farkasovsky M, Senohrabkova L, Vasicova P, Hasek J
FEMS Yeast Res
. 2016 Mar;
16(3).
PMID: 26994102
Live-imaging analysis is performed in many laboratories all over the world. Various tools have been developed to enable protein labeling either in plasmid or genomic context in live yeast cells....
9.
Vasicova P, Lejskova R, Malcova I, Hasek J
Mol Cell Biol
. 2015 Sep;
35(22):3892-908.
PMID: 26351139
Stationary-growth-phase Saccharomyces cerevisiae yeast cultures consist of nondividing cells that undergo chronological aging. For their successful survival, the turnover of proteins and organelles, ensured by autophagy and the activation of...
10.
Grousl T, Ivanov P, Malcova I, Pompach P, Frydlova I, Slaba R, et al.
PLoS One
. 2013 Mar;
8(2):e57083.
PMID: 23451152
In response to severe environmental stresses eukaryotic cells shut down translation and accumulate components of the translational machinery in stress granules (SGs). Since they contain mainly mRNA, translation initiation factors...