HoxC5 and miR-615-3p target newly evolved genomic regions to repress hTERT and inhibit tumorigenesis

The expression of telomerase catalytic subunit hTERT is frequently upregulated in many cancers. Here, the authors show HoxC5 and miR-615-3p can negatively regulate hTERT to impede tumorigenesis by targeting the newly evolved cis-regulatory genomic elements of hTERT.

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Autores principales: TingDong Yan, Wen Fong Ooi, Aditi Qamra, Alice Cheung, DongLiang Ma, Gopinath Meenakshi Sundaram, Chang Xu, Manjie Xing, LaiFong Poon, Jing Wang, Yan Ping Loh, Jess Hui Jie Ho, Joscelyn Jun Quan Ng, Muhammad Khairul Ramlee, Luay Aswad, Steve G. Rozen, Sujoy Ghosh, Frederic A. Bard, Prabha Sampath, Vinay Tergaonkar, James O. J. Davies, Jim R. Hughes, Eyleen Goh, Xuezhi Bi, Melissa Jane Fullwood, Patrick Tan, Shang Li
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Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/277e679dd3d749c1b6f4ca18ea150063
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spelling oai:doaj.org-article:277e679dd3d749c1b6f4ca18ea1500632021-12-02T15:34:05ZHoxC5 and miR-615-3p target newly evolved genomic regions to repress hTERT and inhibit tumorigenesis10.1038/s41467-017-02601-12041-1723https://doaj.org/article/277e679dd3d749c1b6f4ca18ea1500632018-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-017-02601-1https://doaj.org/toc/2041-1723The expression of telomerase catalytic subunit hTERT is frequently upregulated in many cancers. Here, the authors show HoxC5 and miR-615-3p can negatively regulate hTERT to impede tumorigenesis by targeting the newly evolved cis-regulatory genomic elements of hTERT.TingDong YanWen Fong OoiAditi QamraAlice CheungDongLiang MaGopinath Meenakshi SundaramChang XuManjie XingLaiFong PoonJing WangYan Ping LohJess Hui Jie HoJoscelyn Jun Quan NgMuhammad Khairul RamleeLuay AswadSteve G. RozenSujoy GhoshFrederic A. BardPrabha SampathVinay TergaonkarJames O. J. DaviesJim R. HughesEyleen GohXuezhi BiMelissa Jane FullwoodPatrick TanShang LiNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-15 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
TingDong Yan
Wen Fong Ooi
Aditi Qamra
Alice Cheung
DongLiang Ma
Gopinath Meenakshi Sundaram
Chang Xu
Manjie Xing
LaiFong Poon
Jing Wang
Yan Ping Loh
Jess Hui Jie Ho
Joscelyn Jun Quan Ng
Muhammad Khairul Ramlee
Luay Aswad
Steve G. Rozen
Sujoy Ghosh
Frederic A. Bard
Prabha Sampath
Vinay Tergaonkar
James O. J. Davies
Jim R. Hughes
Eyleen Goh
Xuezhi Bi
Melissa Jane Fullwood
Patrick Tan
Shang Li
HoxC5 and miR-615-3p target newly evolved genomic regions to repress hTERT and inhibit tumorigenesis
description The expression of telomerase catalytic subunit hTERT is frequently upregulated in many cancers. Here, the authors show HoxC5 and miR-615-3p can negatively regulate hTERT to impede tumorigenesis by targeting the newly evolved cis-regulatory genomic elements of hTERT.
format article
author TingDong Yan
Wen Fong Ooi
Aditi Qamra
Alice Cheung
DongLiang Ma
Gopinath Meenakshi Sundaram
Chang Xu
Manjie Xing
LaiFong Poon
Jing Wang
Yan Ping Loh
Jess Hui Jie Ho
Joscelyn Jun Quan Ng
Muhammad Khairul Ramlee
Luay Aswad
Steve G. Rozen
Sujoy Ghosh
Frederic A. Bard
Prabha Sampath
Vinay Tergaonkar
James O. J. Davies
Jim R. Hughes
Eyleen Goh
Xuezhi Bi
Melissa Jane Fullwood
Patrick Tan
Shang Li
author_facet TingDong Yan
Wen Fong Ooi
Aditi Qamra
Alice Cheung
DongLiang Ma
Gopinath Meenakshi Sundaram
Chang Xu
Manjie Xing
LaiFong Poon
Jing Wang
Yan Ping Loh
Jess Hui Jie Ho
Joscelyn Jun Quan Ng
Muhammad Khairul Ramlee
Luay Aswad
Steve G. Rozen
Sujoy Ghosh
Frederic A. Bard
Prabha Sampath
Vinay Tergaonkar
James O. J. Davies
Jim R. Hughes
Eyleen Goh
Xuezhi Bi
Melissa Jane Fullwood
Patrick Tan
Shang Li
author_sort TingDong Yan
title HoxC5 and miR-615-3p target newly evolved genomic regions to repress hTERT and inhibit tumorigenesis
title_short HoxC5 and miR-615-3p target newly evolved genomic regions to repress hTERT and inhibit tumorigenesis
title_full HoxC5 and miR-615-3p target newly evolved genomic regions to repress hTERT and inhibit tumorigenesis
title_fullStr HoxC5 and miR-615-3p target newly evolved genomic regions to repress hTERT and inhibit tumorigenesis
title_full_unstemmed HoxC5 and miR-615-3p target newly evolved genomic regions to repress hTERT and inhibit tumorigenesis
title_sort hoxc5 and mir-615-3p target newly evolved genomic regions to repress htert and inhibit tumorigenesis
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/277e679dd3d749c1b6f4ca18ea150063
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