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Petros Kolovos

Explore the profile of Petros Kolovos including associated specialties, affiliations and a list of published articles. Areas
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Articles 48
Citations 1504
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Recent Articles
31.
Koronios K, Mavromati M, Kriemadis A, Leivaditi E, Kolovos P, Papadopoulos A
Adv Exp Med Biol . 2017 Oct; 989:129-139. PMID: 28971422
The purpose of this research is to study expectations regarding ageing (ERA) among individuals who participate in running events as well as to explore personality and demographic features as potential...
32.
Cruz-Molina S, Respuela P, Tebartz C, Kolovos P, Nikolic M, Fueyo R, et al.
Cell Stem Cell . 2017 Mar; 20(5):689-705.e9. PMID: 28285903
Poised enhancers marked by H3K27me3 in pluripotent stem cells have been implicated in the establishment of somatic expression programs during embryonic stem cell (ESC) differentiation. However, the functional relevance and...
33.
Knoch T, Wachsmuth M, Kepper N, Lesnussa M, Abuseiris A, Imam A, et al.
Epigenetics Chromatin . 2016 Dec; 9:58. PMID: 28035242
Background: The dynamic three-dimensional chromatin architecture of genomes and its co-evolutionary connection to its function-the storage, expression, and replication of genetic information-is still one of the central issues in biology....
34.
Brant L, Georgomanolis T, Nikolic M, Brackley C, Kolovos P, van IJcken W, et al.
Mol Syst Biol . 2016 Dec; 12(12):891. PMID: 27940490
Mammalian interphase chromosomes fold into a multitude of loops to fit the confines of cell nuclei, and looping is tightly linked to regulated function. Chromosome conformation capture (3C) technology has...
35.
Kolovos P, Georgomanolis T, Koeferle A, Larkin J, Brant L, Nikolicc M, et al.
Genome Res . 2016 Sep; 26(11):1478-1489. PMID: 27633323
Mammalian cells have developed intricate mechanisms to interpret, integrate, and respond to extracellular stimuli. For example, tumor necrosis factor (TNF) rapidly activates proinflammatory genes, but our understanding of how this...
36.
Stadhouders R, Cico A, Stephen T, Thongjuea S, Kolovos P, Baymaz H, et al.
Nat Commun . 2015 Nov; 6:8893. PMID: 26593974
How transcription factors (TFs) cooperate within large protein complexes to allow rapid modulation of gene expression during development is still largely unknown. Here we show that the key haematopoietic LIM-domain-binding...
37.
Ferri F, Parcelier A, Petit V, Gallouet A, Lewandowski D, Dalloz M, et al.
Nat Commun . 2015 Nov; 6:8900. PMID: 26592194
Despite its importance during viral or bacterial infections, transcriptional regulation of the interferon-β gene (Ifnb1) in activated macrophages is only partially understood. Here we report that TRIM33 deficiency results in...
38.
Caputo L, Witzel H, Kolovos P, Cheedipudi S, Looso M, Mylona A, et al.
Cell Stem Cell . 2015 Sep; 17(3):287-99. PMID: 26321200
Cardiac stem/progenitor cells hold great potential for regenerative therapies; however, the mechanisms regulating their expansion and differentiation remain insufficiently defined. Here we show that Ldb1 is a central regulator of...
39.
Tresini M, Warmerdam D, Kolovos P, Snijder L, Vrouwe M, Demmers J, et al.
Nature . 2015 Jun; 523(7558):53-8. PMID: 26106861
In response to DNA damage, tissue homoeostasis is ensured by protein networks promoting DNA repair, cell cycle arrest or apoptosis. DNA damage response signalling pathways coordinate these processes, partly by...
40.
Diermeier S, Kolovos P, Heizinger L, Schwartz U, Georgomanolis T, Zirkel A, et al.
Genome Biol . 2015 Jan; 15(12):536. PMID: 25608606
Background: The rearrangement of nucleosomes along the DNA fiber profoundly affects gene expression, but little is known about how signalling reshapes the chromatin landscape, in three-dimensional space and over time,...