Autophagic feedback-mediated degradation of IKKα requires CHK1- and p300/CBP-dependent acetylation of p53. 2020

Xiuduan Xu, and Chongchong Zhang, and Huan Xu, and Lin Wu, and Meiru Hu, and Lun Song
Institute of Military Cognitive and Brain Sciences, 27 Taiping Road, Beijing 100850, P. R. China.

In our previous report, we demonstrated that one of the catalytic subunits of the IκB kinase (IKK) complex, IKKα (encoded by CHUK), performs an NF-κB-independent cytoprotective role in human hepatoma cells under the treatment of the anti-tumor therapeutic reagent arsenite. IKKα triggers its own degradation, as a feedback loop, by activating p53-dependent autophagy, and therefore contributes substantially to hepatoma cell apoptosis induced by arsenite. Interestingly, IKKα is unable to interact with p53 directly but plays a critical role in mediating p53 phosphorylation (at Ser15) by promoting CHK1 activation and CHK1-p53 complex formation. In the current study, we found that p53 acetylation (at Lys373 and/or Lys382) was also critical for the induction of autophagy and the autophagic degradation of IKKα during the arsenite response. Furthermore, IKKα was involved in p53 acetylation through interaction with the acetyltransferases for p53, p300 (also known as EP300) and CBP (also known as CREBBP) (collectively p300/CBP), inducing CHK1-dependent p300/CBP activation and promoting p300-p53 or CBP-p53 complex formation. Therefore, taken together with the previous report, we conclude that both IKKα- and CHK1-dependent p53 phosphorylation and acetylation contribute to mediating selective autophagy feedback degradation of IKKα during the arsenite-induced proapoptotic responses.

UI MeSH Term Description Entries
D005246 Feedback A mechanism of communication within a system in that the input signal generates an output response which returns to influence the continued activity or productivity of that system. Feedbacks
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000107 Acetylation Formation of an acetyl derivative. (Stedman, 25th ed) Acetylations
D001343 Autophagy The segregation and degradation of various cytoplasmic constituents via engulfment by MULTIVESICULAR BODIES; VACUOLES; or AUTOPHAGOSOMES and their digestion by LYSOSOMES. It plays an important role in BIOLOGICAL METAMORPHOSIS and in the removal of bone by OSTEOCLASTS. Defective autophagy is associated with various diseases, including NEURODEGENERATIVE DISEASES and cancer. Autophagocytosis,ER-Phagy,Lipophagy,Nucleophagy,Reticulophagy,Ribophagy,Autophagy, Cellular,Cellular Autophagy,ER Phagy
D016159 Tumor Suppressor Protein p53 Nuclear phosphoprotein encoded by the p53 gene (GENES, P53) whose normal function is to control CELL PROLIFERATION and APOPTOSIS. A mutant or absent p53 protein has been found in LEUKEMIA; OSTEOSARCOMA; LUNG CANCER; and COLORECTAL CANCER. p53 Tumor Suppressor Protein,Cellular Tumor Antigen p53,Oncoprotein p53,TP53 Protein,TRP53 Protein,p53 Antigen,pp53 Phosphoprotein,Phosphoprotein, pp53
D050880 p300-CBP Transcription Factors A family of histone acetyltransferases that is structurally-related to CREB-BINDING PROTEIN and to E1A-ASSOCIATED P300 PROTEIN. They function as transcriptional coactivators by bridging between DNA-binding TRANSCRIPTION FACTORS and the basal transcription machinery. They also modify transcription factors and CHROMATIN through ACETYLATION. p300-CBP Coactivator,p300-CBP Protein,Coactivator, p300-CBP,Transcription Factors, p300-CBP,p300 CBP Coactivator,p300 CBP Protein,p300 CBP Transcription Factors
D051550 I-kappa B Kinase A protein serine-threonine kinase that catalyzes the PHOSPHORYLATION of I KAPPA B PROTEINS. This enzyme also activates the transcription factor NF-KAPPA B and is composed of alpha and beta catalytic subunits, which are protein kinases and gamma, a regulatory subunit. CHUK Kinase,Conserved Helix-Loop-Helix Ubiquitous Kinase,I Kappa B alpha-Associated Protein Kinase,I kappa B Kinase,IKBKB,IKK 1 Kinase,IKK 2 Kinase,IKK alpha,IKK beta,IKK epsilon,IKK gamma,IKKepsilon,IkappaB Kinase,IkappaB Kinase alpha,IkappaB Kinase beta,IkappaB Kinase epsilon,IkappaB Kinase gamma,IkappaBalpha Kinase,NF-kappaB Essential Modifier,NK-kappa B-Activating Kinase NAK,B Kinase, I-kappa,Conserved Helix Loop Helix Ubiquitous Kinase,Essential Modifier, NF-kappaB,I Kappa B alpha Associated Protein Kinase,Kinase alpha, IkappaB,Kinase beta, IkappaB,Kinase epsilon, IkappaB,Kinase, I-kappa B,Kinase, IkappaB,NF kappaB Essential Modifier,NK kappa B Activating Kinase NAK

Related Publications

Xiuduan Xu, and Chongchong Zhang, and Huan Xu, and Lin Wu, and Meiru Hu, and Lun Song
July 2002, DNA and cell biology,
Xiuduan Xu, and Chongchong Zhang, and Huan Xu, and Lin Wu, and Meiru Hu, and Lun Song
January 2019, Theranostics,
Xiuduan Xu, and Chongchong Zhang, and Huan Xu, and Lin Wu, and Meiru Hu, and Lun Song
August 2018, Cell reports,
Xiuduan Xu, and Chongchong Zhang, and Huan Xu, and Lin Wu, and Meiru Hu, and Lun Song
March 2001, The EMBO journal,
Xiuduan Xu, and Chongchong Zhang, and Huan Xu, and Lin Wu, and Meiru Hu, and Lun Song
March 2019, Scientific reports,
Xiuduan Xu, and Chongchong Zhang, and Huan Xu, and Lin Wu, and Meiru Hu, and Lun Song
March 2012, Molecular cell,
Xiuduan Xu, and Chongchong Zhang, and Huan Xu, and Lin Wu, and Meiru Hu, and Lun Song
February 2005, Trends in biochemical sciences,
Xiuduan Xu, and Chongchong Zhang, and Huan Xu, and Lin Wu, and Meiru Hu, and Lun Song
September 2016, Molecular cell,
Xiuduan Xu, and Chongchong Zhang, and Huan Xu, and Lin Wu, and Meiru Hu, and Lun Song
November 2017, Neuroscience,
Xiuduan Xu, and Chongchong Zhang, and Huan Xu, and Lin Wu, and Meiru Hu, and Lun Song
May 2009, Nature,
Copied contents to your clipboard!