Synthetic lethality of RB1 and aurora A is driven by stathmin-mediated disruption of microtubule dynamics

Retinoblastoma susceptibility gene (RB1) is frequently mutated in lung cancers. Here the authors perform chemical and genetic vulnerability screens and identify aurora A kinase (AURKA) as a synthetic lethal candidate for RB1-deficient lung cancer cells and that AURKA inhibition sensitizes these cell...

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Autores principales: Junfang Lyu, Eun Ju Yang, Baoyuan Zhang, Changjie Wu, Lakhansing Pardeshi, Changxiang Shi, Pui Kei Mou, Yifan Liu, Kaeling Tan, Joong Sup Shim
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/c27f425a63c3424e81e7e45850e9e42c
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spelling oai:doaj.org-article:c27f425a63c3424e81e7e45850e9e42c2021-12-02T18:09:04ZSynthetic lethality of RB1 and aurora A is driven by stathmin-mediated disruption of microtubule dynamics10.1038/s41467-020-18872-02041-1723https://doaj.org/article/c27f425a63c3424e81e7e45850e9e42c2020-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-18872-0https://doaj.org/toc/2041-1723Retinoblastoma susceptibility gene (RB1) is frequently mutated in lung cancers. Here the authors perform chemical and genetic vulnerability screens and identify aurora A kinase (AURKA) as a synthetic lethal candidate for RB1-deficient lung cancer cells and that AURKA inhibition sensitizes these cells to mitotic cell death.Junfang LyuEun Ju YangBaoyuan ZhangChangjie WuLakhansing PardeshiChangxiang ShiPui Kei MouYifan LiuKaeling TanJoong Sup ShimNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-16 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Junfang Lyu
Eun Ju Yang
Baoyuan Zhang
Changjie Wu
Lakhansing Pardeshi
Changxiang Shi
Pui Kei Mou
Yifan Liu
Kaeling Tan
Joong Sup Shim
Synthetic lethality of RB1 and aurora A is driven by stathmin-mediated disruption of microtubule dynamics
description Retinoblastoma susceptibility gene (RB1) is frequently mutated in lung cancers. Here the authors perform chemical and genetic vulnerability screens and identify aurora A kinase (AURKA) as a synthetic lethal candidate for RB1-deficient lung cancer cells and that AURKA inhibition sensitizes these cells to mitotic cell death.
format article
author Junfang Lyu
Eun Ju Yang
Baoyuan Zhang
Changjie Wu
Lakhansing Pardeshi
Changxiang Shi
Pui Kei Mou
Yifan Liu
Kaeling Tan
Joong Sup Shim
author_facet Junfang Lyu
Eun Ju Yang
Baoyuan Zhang
Changjie Wu
Lakhansing Pardeshi
Changxiang Shi
Pui Kei Mou
Yifan Liu
Kaeling Tan
Joong Sup Shim
author_sort Junfang Lyu
title Synthetic lethality of RB1 and aurora A is driven by stathmin-mediated disruption of microtubule dynamics
title_short Synthetic lethality of RB1 and aurora A is driven by stathmin-mediated disruption of microtubule dynamics
title_full Synthetic lethality of RB1 and aurora A is driven by stathmin-mediated disruption of microtubule dynamics
title_fullStr Synthetic lethality of RB1 and aurora A is driven by stathmin-mediated disruption of microtubule dynamics
title_full_unstemmed Synthetic lethality of RB1 and aurora A is driven by stathmin-mediated disruption of microtubule dynamics
title_sort synthetic lethality of rb1 and aurora a is driven by stathmin-mediated disruption of microtubule dynamics
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/c27f425a63c3424e81e7e45850e9e42c
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