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Matteo Vietri Rudan
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Comparative Hi-C reveals that CTCF underlies evolution of chromosomal domain architecture
MV Rudan, C Barrington, S Henderson, C Ernst, DT Odom, A Tanay, ...
Cell reports 10 (8), 1297-1309, 2015
7842015
Cohesin‐mediated interactions organize chromosomal domain architecture
S Sofueva, E Yaffe, WC Chan, D Georgopoulou, M Vietri Rudan, ...
The EMBO journal 32 (24), 3119-3129, 2013
4762013
Mitochondrial BCL‐2 inhibits AMBRA1‐induced autophagy
F Strappazzon, M Vietri‐Rudan, S Campello, F Nazio, F Florenzano, ...
The EMBO journal 30 (7), 1195-1208, 2011
2722011
Topoisomerase II beta interacts with cohesin and CTCF at topological domain borders
L Uusküla-Reimand, H Hou, P Samavarchi-Tehrani, MV Rudan, M Liang, ...
Genome biology 17, 1-22, 2016
2632016
An MRAS, SHOC2, and SCRIB complex coordinates ERK pathway activation with polarity and tumorigenic growth
LC Young, N Hartig, M Muñoz-Alegre, JA Oses-Prieto, S Durdu, S Bender, ...
Molecular cell 52 (5), 679-692, 2013
1242013
Genetic tailors: CTCF and cohesin shape the genome during evolution
MV Rudan, S Hadjur
Trends in Genetics 31 (11), 651-660, 2015
772015
Contribution of GATA6 to homeostasis of the human upper pilosebaceous unit and acne pathogenesis
B Oulès, C Philippeos, J Segal, M Tihy, M Vietri Rudan, AM Cujba, ...
Nature communications 11 (1), 5067, 2020
522020
Mammalian epidermis: a compendium of lipid functionality
M Vietri Rudan, FM Watt
Frontiers in physiology 12, 804824, 2022
392022
Human epidermal stem cell differentiation is modulated by specific lipid subspecies
M Vietri Rudan, A Mishra, C Klose, US Eggert, FM Watt
Proceedings of the National Academy of Sciences 117 (36), 22173-22182, 2020
272020
Comparative Hi-C reveals that CTCF underlies evolution of chromosomal domain architecture. Cell Rep 10: 1297–1309
M Vietri Rudan, C Barrington, S Henderson, C Ernst, DT Odom, A Tanay, ...
132015
Embigin is a fibronectin receptor that affects sebaceous gland differentiation and metabolism
K Sipilä, E Rognoni, J Jokinen, M Tewary, MV Rudan, S Talvi, V Jokinen, ...
Developmental Cell 57 (12), 1453-1465. e7, 2022
122022
Comparative Hi-C reveals that CTCF underlies evolution of chromosomal domain architecture. Cell Rep. 2015; 10: 1297–1309
M Vietri Rudan, C Barrington, S Henderson, C Ernst, DT Odom, A Tanay
7
Detecting spatial chromatin organization by chromosome conformation capture II: genome-wide profiling by Hi-C
M Vietri Rudan, S Hadjur, T Sexton
Population Epigenetics: Methods and Protocols, 47-74, 2017
62017
Comparative Hi-C reveals that CTCF underlies evolution of chromosomal domain architecture. Cell Rep 10 (8): 1297–1309
M Vietri Rudan, C Barrington, S Henderson, C Ernst, DT Odom, A Tanay, ...
62015
Comparative Hi-C reveals that CTCF underlies evolution of chromosomal domain architecture. Cell Rep. 2015; 10 (8): 1297–309
M Vietri Rudan, C Barrington, S Henderson, C Ernst, DT Odom, A Tanay, ...
Epub 2015/03/04. https://doi. org/10.1016/j. celrep. 2015.02. 004 PMID: 25732821, 0
6
Comparative Hi-C reveals that CTCF underlies evolution of chromosomal domain architecture. Cell Rep 2015; 10: 1297–309
M Vietri Rudan, C Barrington, S Henderson, C Ernst, DT Odom, A Tanay
2
Neutral evolution of snoRNA Host Gene long non-coding RNA affects cell fate control
M Vietri Rudan, KH Sipilä, C Philippeos, C Gânier, PG Bhosale, VA Negri, ...
The EMBO Journal 43 (18), 4049-4067, 2024
2024
Neutral evolution of snoRNA Host Gene long non-coding RNA affects cell fate control
MV Rudan, KH Sipilä, C Philippeos, C Ganier, PG Bhosale, VA Negri, ...
The EMBO Journal 43 (18), 4049, 2024
2024
Topological characteristics of cohesin-mediated mammalian regulatory domain
C Barrington, D Georgopoulou, D Pezic, MV Rudan, S Hadjur
FEBS JOURNAL 284, 28-29, 2017
2017
The evolution of chromatin folding in mammals: a role for CTCF
M Vietri Rudan
UCL (University College London), 2015
2015
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Articles 1–20