High-throughput sequencing identifies STAT3 as the DNA-associated factor for p53-NF-?B-complex-dependent gene expression in human heart failure
10.1186/gm158
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sg-nus-scholar.10635-1782022024-11-11T07:58:36Z High-throughput sequencing identifies STAT3 as the DNA-associated factor for p53-NF-?B-complex-dependent gene expression in human heart failure Choy, M Movassagh, M Siggens, L Vujic, A Goddard, M Sánchez, A Perkins, N Figg, N Bennett, M Carroll, J Foo, R MEDICINE cis acting element immunoglobulin enhancer binding protein microRNA protein p53 STAT3 protein transcription factor RelA adult animal cell article chromatin immunoprecipitation complex formation controlled study gene expression gene locus gene mutation heart failure high throughput screening human human tissue male newborn nonhuman priority journal protein binding protein motif rat sequence analysis 10.1186/gm158 Genome Medicine 2 6 37 2020-10-20T08:20:09Z 2020-10-20T08:20:09Z 2010 Article Choy, M, Movassagh, M, Siggens, L, Vujic, A, Goddard, M, Sánchez, A, Perkins, N, Figg, N, Bennett, M, Carroll, J, Foo, R (2010). High-throughput sequencing identifies STAT3 as the DNA-associated factor for p53-NF-?B-complex-dependent gene expression in human heart failure. Genome Medicine 2 (6) : 37. ScholarBank@NUS Repository. https://doi.org/10.1186/gm158 1756-994X https://scholarbank.nus.edu.sg/handle/10635/178202 Attribution 4.0 International http://creativecommons.org/licenses/by/4.0/ BMC Unpaywall 20201031 |
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cis acting element immunoglobulin enhancer binding protein microRNA protein p53 STAT3 protein transcription factor RelA adult animal cell article chromatin immunoprecipitation complex formation controlled study gene expression gene locus gene mutation heart failure high throughput screening human human tissue male newborn nonhuman priority journal protein binding protein motif rat sequence analysis |
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cis acting element immunoglobulin enhancer binding protein microRNA protein p53 STAT3 protein transcription factor RelA adult animal cell article chromatin immunoprecipitation complex formation controlled study gene expression gene locus gene mutation heart failure high throughput screening human human tissue male newborn nonhuman priority journal protein binding protein motif rat sequence analysis Choy, M Movassagh, M Siggens, L Vujic, A Goddard, M Sánchez, A Perkins, N Figg, N Bennett, M Carroll, J Foo, R High-throughput sequencing identifies STAT3 as the DNA-associated factor for p53-NF-?B-complex-dependent gene expression in human heart failure |
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10.1186/gm158 |
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MEDICINE |
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MEDICINE Choy, M Movassagh, M Siggens, L Vujic, A Goddard, M Sánchez, A Perkins, N Figg, N Bennett, M Carroll, J Foo, R |
format |
Article |
author |
Choy, M Movassagh, M Siggens, L Vujic, A Goddard, M Sánchez, A Perkins, N Figg, N Bennett, M Carroll, J Foo, R |
author_sort |
Choy, M |
title |
High-throughput sequencing identifies STAT3 as the DNA-associated factor for p53-NF-?B-complex-dependent gene expression in human heart failure |
title_short |
High-throughput sequencing identifies STAT3 as the DNA-associated factor for p53-NF-?B-complex-dependent gene expression in human heart failure |
title_full |
High-throughput sequencing identifies STAT3 as the DNA-associated factor for p53-NF-?B-complex-dependent gene expression in human heart failure |
title_fullStr |
High-throughput sequencing identifies STAT3 as the DNA-associated factor for p53-NF-?B-complex-dependent gene expression in human heart failure |
title_full_unstemmed |
High-throughput sequencing identifies STAT3 as the DNA-associated factor for p53-NF-?B-complex-dependent gene expression in human heart failure |
title_sort |
high-throughput sequencing identifies stat3 as the dna-associated factor for p53-nf-?b-complex-dependent gene expression in human heart failure |
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BMC |
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2020 |
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https://scholarbank.nus.edu.sg/handle/10635/178202 |
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1821205496445534208 |