KSHV transactivator-derived small peptide traps coactivators to attenuate MYC and inhibits leukemia and lymphoma cell growth
Shimoda et al. present evidence that a small functional peptide derived from the KSHV transactivator could be used to target MYC in cancer. The authors find that the peptide attenuates MYC expression, reduces cell proliferation, and selectively kills cancer cells in tissue culture and a xenograft tu...
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Nature Portfolio
2021
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oai:doaj.org-article:eaec3f23d40d4e7a83a5c5ddca22da0a2021-12-05T12:08:21ZKSHV transactivator-derived small peptide traps coactivators to attenuate MYC and inhibits leukemia and lymphoma cell growth10.1038/s42003-021-02853-02399-3642https://doaj.org/article/eaec3f23d40d4e7a83a5c5ddca22da0a2021-12-01T00:00:00Zhttps://doi.org/10.1038/s42003-021-02853-0https://doaj.org/toc/2399-3642Shimoda et al. present evidence that a small functional peptide derived from the KSHV transactivator could be used to target MYC in cancer. The authors find that the peptide attenuates MYC expression, reduces cell proliferation, and selectively kills cancer cells in tissue culture and a xenograft tumor mouse model, by blocking recruitment of coactivator complexes (Nuclear receptor coactivator 2, p300, and SWI/SNF proteins) to the MYC promoter.Michiko ShimodaYuanzhi LyuKang-Hsin WangAshish KumarHiroki MiuraJoshua F. MecklerRyan R. DavisChanikarn ChantarasrivongChie IzumiyaClifford G. TepperKen-ichi NakajimaJoseph TuscanoGustavo BarisoneYoshihiro IzumiyaNature PortfolioarticleBiology (General)QH301-705.5ENCommunications Biology, Vol 4, Iss 1, Pp 1-17 (2021) |
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DOAJ |
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DOAJ |
language |
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topic |
Biology (General) QH301-705.5 |
spellingShingle |
Biology (General) QH301-705.5 Michiko Shimoda Yuanzhi Lyu Kang-Hsin Wang Ashish Kumar Hiroki Miura Joshua F. Meckler Ryan R. Davis Chanikarn Chantarasrivong Chie Izumiya Clifford G. Tepper Ken-ichi Nakajima Joseph Tuscano Gustavo Barisone Yoshihiro Izumiya KSHV transactivator-derived small peptide traps coactivators to attenuate MYC and inhibits leukemia and lymphoma cell growth |
description |
Shimoda et al. present evidence that a small functional peptide derived from the KSHV transactivator could be used to target MYC in cancer. The authors find that the peptide attenuates MYC expression, reduces cell proliferation, and selectively kills cancer cells in tissue culture and a xenograft tumor mouse model, by blocking recruitment of coactivator complexes (Nuclear receptor coactivator 2, p300, and SWI/SNF proteins) to the MYC promoter. |
format |
article |
author |
Michiko Shimoda Yuanzhi Lyu Kang-Hsin Wang Ashish Kumar Hiroki Miura Joshua F. Meckler Ryan R. Davis Chanikarn Chantarasrivong Chie Izumiya Clifford G. Tepper Ken-ichi Nakajima Joseph Tuscano Gustavo Barisone Yoshihiro Izumiya |
author_facet |
Michiko Shimoda Yuanzhi Lyu Kang-Hsin Wang Ashish Kumar Hiroki Miura Joshua F. Meckler Ryan R. Davis Chanikarn Chantarasrivong Chie Izumiya Clifford G. Tepper Ken-ichi Nakajima Joseph Tuscano Gustavo Barisone Yoshihiro Izumiya |
author_sort |
Michiko Shimoda |
title |
KSHV transactivator-derived small peptide traps coactivators to attenuate MYC and inhibits leukemia and lymphoma cell growth |
title_short |
KSHV transactivator-derived small peptide traps coactivators to attenuate MYC and inhibits leukemia and lymphoma cell growth |
title_full |
KSHV transactivator-derived small peptide traps coactivators to attenuate MYC and inhibits leukemia and lymphoma cell growth |
title_fullStr |
KSHV transactivator-derived small peptide traps coactivators to attenuate MYC and inhibits leukemia and lymphoma cell growth |
title_full_unstemmed |
KSHV transactivator-derived small peptide traps coactivators to attenuate MYC and inhibits leukemia and lymphoma cell growth |
title_sort |
kshv transactivator-derived small peptide traps coactivators to attenuate myc and inhibits leukemia and lymphoma cell growth |
publisher |
Nature Portfolio |
publishDate |
2021 |
url |
https://doaj.org/article/eaec3f23d40d4e7a83a5c5ddca22da0a |
work_keys_str_mv |
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