CTCF: master weaver of the genome JE Phillips, VG Corces Cell 137 (7), 1194-1211, 2009 | 1866 | 2009 |
Architectural protein subclasses shape 3D organization of genomes during lineage commitment JE Phillips-Cremins, MEG Sauria, A Sanyal, TI Gerasimova, BR Lajoie, ... Cell 153 (6), 1281-1295, 2013 | 1265 | 2013 |
CTCF: an architectural protein bridging genome topology and function CT Ong, VG Corces Nature Reviews Genetics 15 (4), 234-246, 2014 | 1246 | 2014 |
Enhancer function: new insights into the regulation of tissue-specific gene expression CT Ong, VG Corces Nature Reviews Genetics 12 (4), 283-293, 2011 | 1061 | 2011 |
Organizational principles of 3D genome architecture MJ Rowley, VG Corces Nature Reviews Genetics 19 (12), 789-800, 2018 | 991 | 2018 |
Interaction of Wnt and a Frizzled homologue triggers G-protein-linked phosphatidylinositol signalling DC Slusarski, VG Corces, RT Moon Nature 390 (6658), 410-413, 1997 | 853 | 1997 |
Phosphorylation of histone H3: a balancing act between chromosome condensation and transcriptional activation SJ Nowak, VG Corces TRENDS in Genetics 20 (4), 214-220, 2004 | 816 | 2004 |
Gene density, transcription, and insulators contribute to the partition of the Drosophila genome into physical domains C Hou, L Li, ZS Qin, VG Corces Molecular cell 48 (3), 471-484, 2012 | 561 | 2012 |
DNA position-specific repression of transcription by a Drosophila zinc finger protein. PK Geyer, VG Corces Genes & development 6 (10), 1865-1873, 1992 | 533 | 1992 |
Evolutionarily conserved principles predict 3D chromatin organization MJ Rowley, MH Nichols, X Lyu, M Ando-Kuri, ISM Rivera, K Hermetz, ... Molecular cell 67 (5), 837-852. e7, 2017 | 513 | 2017 |
Transcription and reverse transcription of retrotransposons JD Boeke, VG Corces Annual review of microbiology 43 (1), 403-434, 1989 | 445 | 1989 |
A chromatin insulator determines the nuclear localization of DNA TI Gerasimova, K Byrd, VG Corces Molecular cell 6 (5), 1025-1035, 2000 | 422 | 2000 |
A Drosophila protein that imparts directionality on a chromatin insulator is an enhancer of position-effect variegation TI Gerasimova, DA Gdula, DV Gerasimov, O Simonova, VG Corces Cell 82 (4), 587-597, 1995 | 357 | 1995 |
Widespread rearrangement of 3D chromatin organization underlies polycomb-mediated stress-induced silencing L Li, X Lyu, C Hou, N Takenaka, HQ Nguyen, CT Ong, C Cubeñas-Potts, ... Molecular cell 58 (2), 216-231, 2015 | 332 | 2015 |
An env-like protein encoded by a Drosophila retroelement: evidence that gypsy is an infectious retrovirus. SU Song, T Gerasimova, M Kurkulos, JD Boeke, VG Corces Genes & development 8 (17), 2046-2057, 1994 | 319 | 1994 |
Insulator function and topological domain border strength scale with architectural protein occupancy K Van Bortle, MH Nichols, L Li, CT Ong, N Takenaka, ZS Qin, VG Corces Genome biology 15, 1-18, 2014 | 318 | 2014 |
Separate regulatory elements are responsible for the complex pattern of tissue-specific and developmental transcription of the yellow locus in Drosophila melanogaster. PK Geyer, VG Corces Genes & Development 1 (9), 996-1004, 1987 | 307 | 1987 |
Phosphorylation of histone H3 correlates with transcriptionally active loci SJ Nowak, VG Corces Genes & development 14 (23), 3003-3013, 2000 | 306 | 2000 |
Gypsy transposition correlates with the production of a retroviral envelope‐like protein under the tissue‐specific control of the Drosophila flamenco gene. A Pelisson, SU Song, N Prud'Homme, PA Smith, A Bucheton, VG Corces The EMBO journal 13 (18), 4401-4411, 1994 | 296 | 1994 |
The centrosomal protein CP190 is a component of the gypsy chromatin insulator CY Pai, EP Lei, D Ghosh, VG Corces Molecular cell 16 (5), 737-748, 2004 | 293 | 2004 |