A signature motif in LIM proteins mediates binding to checkpoint proteins and increases tumour radiosensitivity

CDC25 phosphatases are important cell cycle regulators. Here, the authors show that the LIM domain-containing proteins (for example, FHL1) induce inhibitory CDC25 phosphorylation resulting in radioresistance and that a specific peptide can increase tumour radiosensitivity by increasing CDC25 activit...

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Autores principales: Xiaojie Xu, Zhongyi Fan, Chaoyang Liang, Ling Li, Lili Wang, Yingchun Liang, Jun Wu, Shaohong Chang, Zhifeng Yan, Zhaohui Lv, Jing Fu, Yang Liu, Shuai Jin, Tao Wang, Tian Hong, Yishan Dong, Lihua Ding, Long Cheng, Rui Liu, Shenbo Fu, Shunchang Jiao, Qinong Ye
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/60f058f0e1434c64bd9c0e75019f2b90
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spelling oai:doaj.org-article:60f058f0e1434c64bd9c0e75019f2b902021-12-02T14:40:35ZA signature motif in LIM proteins mediates binding to checkpoint proteins and increases tumour radiosensitivity10.1038/ncomms140592041-1723https://doaj.org/article/60f058f0e1434c64bd9c0e75019f2b902017-01-01T00:00:00Zhttps://doi.org/10.1038/ncomms14059https://doaj.org/toc/2041-1723CDC25 phosphatases are important cell cycle regulators. Here, the authors show that the LIM domain-containing proteins (for example, FHL1) induce inhibitory CDC25 phosphorylation resulting in radioresistance and that a specific peptide can increase tumour radiosensitivity by increasing CDC25 activity.Xiaojie XuZhongyi FanChaoyang LiangLing LiLili WangYingchun LiangJun WuShaohong ChangZhifeng YanZhaohui LvJing FuYang LiuShuai JinTao WangTian HongYishan DongLihua DingLong ChengRui LiuShenbo FuShunchang JiaoQinong YeNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-14 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Xiaojie Xu
Zhongyi Fan
Chaoyang Liang
Ling Li
Lili Wang
Yingchun Liang
Jun Wu
Shaohong Chang
Zhifeng Yan
Zhaohui Lv
Jing Fu
Yang Liu
Shuai Jin
Tao Wang
Tian Hong
Yishan Dong
Lihua Ding
Long Cheng
Rui Liu
Shenbo Fu
Shunchang Jiao
Qinong Ye
A signature motif in LIM proteins mediates binding to checkpoint proteins and increases tumour radiosensitivity
description CDC25 phosphatases are important cell cycle regulators. Here, the authors show that the LIM domain-containing proteins (for example, FHL1) induce inhibitory CDC25 phosphorylation resulting in radioresistance and that a specific peptide can increase tumour radiosensitivity by increasing CDC25 activity.
format article
author Xiaojie Xu
Zhongyi Fan
Chaoyang Liang
Ling Li
Lili Wang
Yingchun Liang
Jun Wu
Shaohong Chang
Zhifeng Yan
Zhaohui Lv
Jing Fu
Yang Liu
Shuai Jin
Tao Wang
Tian Hong
Yishan Dong
Lihua Ding
Long Cheng
Rui Liu
Shenbo Fu
Shunchang Jiao
Qinong Ye
author_facet Xiaojie Xu
Zhongyi Fan
Chaoyang Liang
Ling Li
Lili Wang
Yingchun Liang
Jun Wu
Shaohong Chang
Zhifeng Yan
Zhaohui Lv
Jing Fu
Yang Liu
Shuai Jin
Tao Wang
Tian Hong
Yishan Dong
Lihua Ding
Long Cheng
Rui Liu
Shenbo Fu
Shunchang Jiao
Qinong Ye
author_sort Xiaojie Xu
title A signature motif in LIM proteins mediates binding to checkpoint proteins and increases tumour radiosensitivity
title_short A signature motif in LIM proteins mediates binding to checkpoint proteins and increases tumour radiosensitivity
title_full A signature motif in LIM proteins mediates binding to checkpoint proteins and increases tumour radiosensitivity
title_fullStr A signature motif in LIM proteins mediates binding to checkpoint proteins and increases tumour radiosensitivity
title_full_unstemmed A signature motif in LIM proteins mediates binding to checkpoint proteins and increases tumour radiosensitivity
title_sort signature motif in lim proteins mediates binding to checkpoint proteins and increases tumour radiosensitivity
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/60f058f0e1434c64bd9c0e75019f2b90
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