E2F and STAT3 provide transcriptional synergy for histone variant H2AZ activation to sustain glioblastoma chromatin accessibility and tumorigenicity
10.1038/s41418-021-00926-5
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sg-nus-scholar.10635-2382782024-04-04T00:53:31Z E2F and STAT3 provide transcriptional synergy for histone variant H2AZ activation to sustain glioblastoma chromatin accessibility and tumorigenicity Yoon, Jeehyun Grinchuk, Oleg Tirado-Magallanes, Roberto Ngian, Zhen Kai Tay, Emmy Xue Yun Chuah, You Heng Li Lee, Bernice Woon Feng, Jia Crasta, Karen Carmelina Ong, Chin Tong Benoukraf, Touati Ong, Derrick Sek Tong CANCER SCIENCE INSTITUTE OF SINGAPORE BIOLOGICAL SCIENCES PHYSIOLOGY Science & Technology Life Sciences & Biomedicine Biochemistry & Molecular Biology Cell Biology BREAST-CANCER SELF-RENEWAL GENES H3.3 PROLIFERATION PROGRESSION SENSITIVITY MECHANISMS INHIBITOR MUTATIONS 10.1038/s41418-021-00926-5 CELL DEATH AND DIFFERENTIATION 29 7 1379-1394 2023-03-21T23:59:06Z 2023-03-21T23:59:06Z 2022-01-20 2023-03-21T10:16:17Z Article Yoon, Jeehyun, Grinchuk, Oleg, Tirado-Magallanes, Roberto, Ngian, Zhen Kai, Tay, Emmy Xue Yun, Chuah, You Heng, Li Lee, Bernice Woon, Feng, Jia, Crasta, Karen Carmelina, Ong, Chin Tong, Benoukraf, Touati, Ong, Derrick Sek Tong (2022-01-20). E2F and STAT3 provide transcriptional synergy for histone variant H2AZ activation to sustain glioblastoma chromatin accessibility and tumorigenicity. CELL DEATH AND DIFFERENTIATION 29 (7) : 1379-1394. ScholarBank@NUS Repository. https://doi.org/10.1038/s41418-021-00926-5 1350-9047 1476-5403 https://scholarbank.nus.edu.sg/handle/10635/238278 en SPRINGERNATURE Elements |
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Science & Technology Life Sciences & Biomedicine Biochemistry & Molecular Biology Cell Biology BREAST-CANCER SELF-RENEWAL GENES H3.3 PROLIFERATION PROGRESSION SENSITIVITY MECHANISMS INHIBITOR MUTATIONS |
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Science & Technology Life Sciences & Biomedicine Biochemistry & Molecular Biology Cell Biology BREAST-CANCER SELF-RENEWAL GENES H3.3 PROLIFERATION PROGRESSION SENSITIVITY MECHANISMS INHIBITOR MUTATIONS Yoon, Jeehyun Grinchuk, Oleg Tirado-Magallanes, Roberto Ngian, Zhen Kai Tay, Emmy Xue Yun Chuah, You Heng Li Lee, Bernice Woon Feng, Jia Crasta, Karen Carmelina Ong, Chin Tong Benoukraf, Touati Ong, Derrick Sek Tong E2F and STAT3 provide transcriptional synergy for histone variant H2AZ activation to sustain glioblastoma chromatin accessibility and tumorigenicity |
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10.1038/s41418-021-00926-5 |
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CANCER SCIENCE INSTITUTE OF SINGAPORE |
author_facet |
CANCER SCIENCE INSTITUTE OF SINGAPORE Yoon, Jeehyun Grinchuk, Oleg Tirado-Magallanes, Roberto Ngian, Zhen Kai Tay, Emmy Xue Yun Chuah, You Heng Li Lee, Bernice Woon Feng, Jia Crasta, Karen Carmelina Ong, Chin Tong Benoukraf, Touati Ong, Derrick Sek Tong |
format |
Article |
author |
Yoon, Jeehyun Grinchuk, Oleg Tirado-Magallanes, Roberto Ngian, Zhen Kai Tay, Emmy Xue Yun Chuah, You Heng Li Lee, Bernice Woon Feng, Jia Crasta, Karen Carmelina Ong, Chin Tong Benoukraf, Touati Ong, Derrick Sek Tong |
author_sort |
Yoon, Jeehyun |
title |
E2F and STAT3 provide transcriptional synergy for histone variant H2AZ activation to sustain glioblastoma chromatin accessibility and tumorigenicity |
title_short |
E2F and STAT3 provide transcriptional synergy for histone variant H2AZ activation to sustain glioblastoma chromatin accessibility and tumorigenicity |
title_full |
E2F and STAT3 provide transcriptional synergy for histone variant H2AZ activation to sustain glioblastoma chromatin accessibility and tumorigenicity |
title_fullStr |
E2F and STAT3 provide transcriptional synergy for histone variant H2AZ activation to sustain glioblastoma chromatin accessibility and tumorigenicity |
title_full_unstemmed |
E2F and STAT3 provide transcriptional synergy for histone variant H2AZ activation to sustain glioblastoma chromatin accessibility and tumorigenicity |
title_sort |
e2f and stat3 provide transcriptional synergy for histone variant h2az activation to sustain glioblastoma chromatin accessibility and tumorigenicity |
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SPRINGERNATURE |
publishDate |
2023 |
url |
https://scholarbank.nus.edu.sg/handle/10635/238278 |
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1795374986800660480 |