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Zuzana Storchova
Zuzana Storchova
Verified email at bio.uni-kl.de
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Cited by
Year
Guidelines for the use and interpretation of assays for monitoring autophagy (4th edition)1
DJ Klionsky, AK Abdel-Aziz, S Abdelfatah, M Abdellatif, A Abdoli, S Abel, ...
autophagy 17 (1), 1-382, 2021
13142*2021
From polyploidy to aneuploidy, genome instability and cancer
Z Storchova, D Pellman
Nature reviews Molecular cell biology 5 (1), 45-54, 2004
9902004
Tetraploidy, aneuploidy and cancer
NJ Ganem, Z Storchova, D Pellman
Current opinion in genetics & development 17 (2), 157-162, 2007
8292007
Global analysis of genome, transcriptome and proteome reveals the response to aneuploidy in human cells
S Stingele, G Stoehr, K Peplowska, J Cox, M Mann, Z Storchova
Molecular systems biology 8 (1), 608, 2012
4752012
The consequences of tetraploidy and aneuploidy
Z Storchova, C Kuffer
Journal of cell science 121 (23), 3859-3866, 2008
4212008
Genome-wide genetic analysis of polyploidy in yeast
Z Storchová, A Breneman, J Cande, J Dunn, K Burbank, E O'Toole, ...
Nature 443 (7111), 541-547, 2006
3992006
The presence of extra chromosomes leads to genomic instability
V Passerini, E Ozeri-Galai, MS De Pagter, N Donnelly, S Schmalbrock, ...
Nature communications 7 (1), 10754, 2016
2812016
Kinetic analysis of protein stability reveals age-dependent degradation
E McShane, C Sin, H Zauber, JN Wells, N Donnelly, X Wang, J Hou, ...
Cell 167 (3), 803-815. e21, 2016
2772016
Proteomics reveals dynamic assembly of repair complexes during bypass of DNA cross-links
M Räschle, G Smeenk, RK Hansen, T Temu, Y Oka, MY Hein, N Nagaraj, ...
Science 348 (6234), 1253671, 2015
2202015
Single-chromosome gains commonly function as tumor suppressors
JM Sheltzer, JH Ko, JM Replogle, NCH Burgos, ES Chung, CM Meehl, ...
Cancer cell 31 (2), 240-255, 2017
2082017
The diverse consequences of aneuploidy
NK Chunduri, Z Storchová
Nature Cell Biology 21 (1), 54-62, 2019
1892019
Chromosomal instability, tolerance of mitotic errors and multidrug resistance are promoted by tetraploidization in human cells
AY Kuznetsova, K Seget, GK Moeller, MS de Pagter, JADM de Roos, ...
Cell cycle 14 (17), 2810-2820, 2015
1592015
Aneuploidy renders cancer cells vulnerable to mitotic checkpoint inhibition
Y Cohen-Sharir, JM McFarland, M Abdusamad, C Marquis, SV Bernhard, ...
Nature 590 (7846), 486-491, 2021
1572021
Suv4-20h2 mediates chromatin compaction and is important for cohesin recruitment to heterochromatin
M Hahn, S Dambacher, S Dulev, AY Kuznetsova, S Eck, S Wörz, D Sadic, ...
Genes & development 27 (8), 859-872, 2013
1342013
HSF 1 deficiency and impaired HSP 90‐dependent protein folding are hallmarks of aneuploid human cells
N Donnelly, V Passerini, M Dürrbaum, S Stingele, Z Storchová
The EMBO journal 33 (20), 2374-2387, 2014
1282014
Genomic instability in human pluripotent stem cells arises from replicative stress and chromosome condensation defects
N Lamm, U Ben-David, T Golan-Lev, Z Storchová, N Benvenisty, B Kerem
Cell stem cell 18 (2), 253-261, 2016
1202016
Chromosomal instability accelerates the evolution of resistance to anti-cancer therapies
DA Lukow, EL Sausville, P Suri, NK Chunduri, A Wieland, J Leu, JC Smith, ...
Developmental cell 56 (17), 2427-2439. e4, 2021
1162021
Unique features of the transcriptional response to model aneuploidy in human cells
M Dürrbaum, AY Kuznetsova, V Passerini, S Stingele, G Stoehr, ...
BMC genomics 15, 1-14, 2014
1092014
Defects Arising From Whole-Genome Duplications in Saccharomyces cerevisiae
AA Andalis, Z Storchova, C Styles, T Galitski, D Pellman, GR Fink
Genetics 167 (3), 1109-1121, 2004
1022004
Effects of aneuploidy on gene expression: implications for cancer
M Dürrbaum, Z Storchová
The FEBS journal 283 (5), 791-802, 2016
1002016
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Articles 1–20