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Gyula Timinszky
Gyula Timinszky
Biological Research Centre of the Hungarian Academy of Sciences
Bestätigte E-Mail-Adresse bei brc.mta.hu
Titel
Zitiert von
Zitiert von
Jahr
A macrodomain-containing histone rearranges chromatin upon sensing PARP1 activation
G Timinszky, S Till, PO Hassa, M Hothorn, G Kustatscher, B Nijmeijer, ...
Nature structural & molecular biology 16 (9), 923-929, 2009
4892009
Poly (ADP-ribosyl) ation directs recruitment and activation of an ATP-dependent chromatin remodeler
AJ Gottschalk, G Timinszky, SE Kong, J Jin, Y Cai, SK Swanson, ...
Proceedings of the National Academy of Sciences 106 (33), 13770-13774, 2009
4082009
A family of macrodomain proteins reverses cellular mono-ADP-ribosylation
G Jankevicius, M Hassler, B Golia, V Rybin, M Zacharias, G Timinszky, ...
Nature structural & molecular biology 20 (4), 508-514, 2013
3422013
Deficiency of terminal ADP‐ribose protein glycohydrolase TARG1/C6orf130 in neurodegenerative disease
R Sharifi, R Morra, C Denise Appel, M Tallis, B Chioza, G Jankevicius, ...
The EMBO journal 32 (9), 1225-1237, 2013
3112013
The zinc-finger domains of PARP1 cooperate to recognize DNA strand breaks
AAE Ali, G Timinszky, R Arribas-Bosacoma, M Kozlowski, PO Hassa, ...
Nature structural & molecular biology 19 (7), 685-692, 2012
3102012
Structures of Drosophila cryptochrome and mouse cryptochrome1 provide insight into circadian function
A Czarna, A Berndt, HR Singh, A Grudziecki, AG Ladurner, G Timinszky, ...
Cell 153 (6), 1394-1405, 2013
2122013
ADP‐ribosyltransferases, an update on function and nomenclature
B Lüscher, I Ahel, M Altmeyer, A Ashworth, P Bai, P Chang, M Cohen, ...
The FEBS journal 289 (23), 7399-7410, 2022
1792022
The recognition and removal of cellular poly (ADP‐ribose) signals
E Barkauskaite, G Jankevicius, AG Ladurner, I Ahel, G Timinszky
The FEBS journal 280 (15), 3491-3507, 2013
1402013
The poly (ADP-ribose)-dependent chromatin remodeler Alc1 induces local chromatin relaxation upon DNA damage
H Sellou, T Lebeaupin, C Chapuis, R Smith, A Hegele, HR Singh, ...
Molecular biology of the cell 27 (24), 3791-3799, 2016
1192016
A poly-ADP-ribose trigger releases the auto-inhibition of a chromatin remodeling oncogene
HR Singh, AP Nardozza, IR Möller, G Knobloch, HAV Kistemaker, ...
Molecular cell 68 (5), 860-871. e7, 2017
872017
The chromatin remodeler ALC1 underlies resistance to PARP inhibitor treatment
S Juhász, R Smith, T Schauer, D Spekhardt, H Mamar, S Zentout, ...
Science Advances 6 (51), eabb8626, 2020
742020
MacroH2A histone variants limit chromatin plasticity through two distinct mechanisms
M Kozlowski, D Corujo, M Hothorn, I Guberovic, IK Mandemaker, ...
EMBO reports 19 (10), e44445, 2018
642018
CHD3 and CHD4 recruitment and chromatin remodeling activity at DNA breaks is promoted by early poly (ADP-ribose)-dependent chromatin relaxation
R Smith, H Sellou, C Chapuis, S Huet, G Timinszky
Nucleic acids research 46 (12), 6087-6098, 2018
592018
Poly (ADP-ribose)-dependent chromatin unfolding facilitates the association of DNA-binding proteins with DNA at sites of damage
R Smith, T Lebeaupin, S Juhász, C Chapuis, O D’Augustin, S Dutertre, ...
Nucleic acids research 47 (21), 11250-11267, 2019
552019
The importin-β P446L dominant-negative mutant protein loses RanGTP binding ability and blocks the formation of intact nuclear envelope
G Timinszky, L Tirián, FT Nagy, G Tóth, A Perczel, Z Kiss-László, I Boros, ...
Journal of cell science 115 (8), 1675-1687, 2002
512002
Macro domains as metabolite sensors on chromatin
M Posavec, G Timinszky, M Buschbeck
Cellular and Molecular Life Sciences 70, 1509-1524, 2013
492013
Targeting actin inhibits repair of doxorubicin-induced DNA damage: a novel therapeutic approach for combination therapy
L Pfitzer, C Moser, F Gegenfurtner, A Arner, F Foerster, C Atzberger, ...
Cell death & disease 10 (4), 302, 2019
372019
Repression of RNA polymerase II transcription by a Drosophila oligopeptide
G Timinszky, M Bortfeld, AG Ladurner
PLoS One 3 (6), e2506, 2008
322008
Poly-ADP-ribosylation signaling during DNA damage repair
B Golia, HR Singh, G Timinszky
Front. Biosci 20, 440-457, 2015
312015
The histone chaperone sNASP binds a conserved peptide motif within the globular core of histone H3 through its TPR repeats
A Bowman, L Lercher, HR Singh, D Zinne, G Timinszky, T Carlomagno, ...
Nucleic acids research 44 (7), 3105-3117, 2016
292016
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