生物
IκB激酶
癌症研究
DNA损伤
斯达
效应器
激酶
信号转导
染色质
JAK-STAT信号通路
转录因子
车站3
NF-κB
细胞生物学
基因
DNA
遗传学
酪氨酸激酶
作者
Irene Pecharromán,Laura Solé,Daniel Álvarez-Villanueva,Teresa Lobo-Jarne,Josune Alonso-Marañón,Joan Bertran,Yolanda Guillén,Ángela Montoto,Maria Martínez-Iniesta,Violeta García-Hernández,Gemma Cordero Giménez,Ramón Salazar,Cristina Santos,Marta Garrido,Eva Borràs,Eduard Sabidó,Ester Bonfill-Teixidor,Raffaella Iurlaro,Joan Seoane,Alberto Villanueva,Mar Iglesias,Anna Bigas,Lluís Espinosa
标识
DOI:10.15252/embj.2023114719
摘要
Activation of the IκB kinase (IKK) complex has recurrently been linked to colorectal cancer (CRC) initiation and progression. However, identification of downstream effectors other than NF-κB has remained elusive. Here, analysis of IKK-dependent substrates in CRC cells after UV treatment revealed that phosphorylation of BRD4 by IKK-α is required for its chromatin-binding at target genes upon DNA damage. Moreover, IKK-α induces the NF-κB-dependent transcription of the cytokine LIF, leading to STAT3 activation, association with BRD4 and recruitment to specific target genes. IKK-α abrogation results in defective BRD4 and STAT3 functions and consequently irreparable DNA damage and apoptotic cell death upon different stimuli. Simultaneous inhibition of BRAF-dependent IKK-α activity, BRD4, and the JAK/STAT pathway enhanced the therapeutic potential of 5-fluorouracil combined with irinotecan in CRC cells and is curative in a chemotherapy-resistant xenograft model. Finally, coordinated expression of LIF and IKK-α is a poor prognosis marker for CRC patients. Our data uncover a functional link between IKK-α, BRD4, and JAK/STAT signaling with clinical relevance.
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