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https://hdl.handle.net/10356/170596
Title: | Core-binding factor fusion downregulation of ADAR2 RNA editing contributes to AML leukemogenesis | Authors: | Guo, Mingrui Chan, Tim Hon Man Zhou, Qiling An, Omer Li, Ying Song, Yangyang Tan, Zi Hui Ng, Vanessa Hui En Peramangalam, Philomina Sona Tan, Zhi Qing Cao, Xinang Iwanaga, Eisaku Matsuoka, Masao Ooi, Melissa G. M. Jen, Wei Ying Koh, Liang Piu Chan, Esther Tan, Lip Kun Goh, Yufen Wang, Wilson Koh, Bryan T. H. Chun, Chan Ming Fullwood, Melissa Jane Chng, Wee Joo Osato, Motomi Pulikkan, John Anto Yang, Henry Chen, Leilei Tenen, Daniel G. |
Keywords: | Science::Medicine Science::Biological sciences |
Issue Date: | 2023 | Source: | Guo, M., Chan, T. H. M., Zhou, Q., An, O., Li, Y., Song, Y., Tan, Z. H., Ng, V. H. E., Peramangalam, P. S., Tan, Z. Q., Cao, X., Iwanaga, E., Matsuoka, M., Ooi, M. G. M., Jen, W. Y., Koh, L. P., Chan, E., Tan, L. K., Goh, Y., ...Tenen, D. G. (2023). Core-binding factor fusion downregulation of ADAR2 RNA editing contributes to AML leukemogenesis. Blood, 141(25), 3078-3090. https://dx.doi.org/10.1182/blood.2022015830 | Journal: | Blood | Abstract: | Adenosine-to-inosine RNA editing, which is catalyzed by adenosine deaminases acting on RNA (ADAR) family of enzymes, ADAR1 and ADAR2, has been shown to contribute to multiple cancers. However, other than the chronic myeloid leukemia blast crisis, relatively little is known about its role in other types of hematological malignancies. Here, we found that ADAR2, but not ADAR1 and ADAR3, was specifically downregulated in the core-binding factor (CBF) acute myeloid leukemia (AML) with t(8;21) or inv(16) translocations. In t(8;21) AML, RUNX1-driven transcription of ADAR2 was repressed by the RUNX1-ETO additional exon 9a fusion protein in a dominant-negative manner. Further functional studies confirmed that ADAR2 could suppress leukemogenesis specifically in t(8;21) and inv16 AML cells dependent on its RNA editing capability. Expression of 2 exemplary ADAR2-regulated RNA editing targets coatomer subunit α and component of oligomeric Golgi complex 3 inhibits the clonogenic growth of human t(8;21) AML cells. Our findings support a hitherto, unappreciated mechanism leading to ADAR2 dysregulation in CBF AML and highlight the functional relevance of loss of ADAR2-mediated RNA editing to CBF AML. | URI: | https://hdl.handle.net/10356/170596 | ISSN: | 0006-4971 | DOI: | 10.1182/blood.2022015830 | Schools: | School of Biological Sciences | Organisations: | Cancer Science Institute of Singapore Institute of Molecular and Cell Biology, A*STAR |
Rights: | © 2023 by The American Society of Hematology. All rights reserved. This paper was published in Blood and is made available with permission of The American Society of Hematology. | Fulltext Permission: | open | Fulltext Availability: | With Fulltext |
Appears in Collections: | SBS Journal Articles |
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