Literature DB >> 30963560

MKK7 transcription positively or negatively regulated by SP1 and KLF5 depends on HDAC4 activity in glioma.

Yezhong Wang1,2, Yong Xia1,2, Kunhua Hu3,4, Minling Zeng1,2, Cheng Zhi5, Miaoling Lai5, Liqiang Wu1,2, Sisi Liu1,2, Shulian Zeng1,2, Ziyan Huang1,2, Shanshan Ma3,4, Zhongmin Yuan1,2,4.   

Abstract

JNK activity has been implicated in the malignant proliferation, invasion and drug-resistance of glioma cells (GCs), but the molecular mechanisms underlying JNK activation are currently unknown. Here, we reported that MKK7, not MKK4, directly activates JNK in GCs and exerts oncogenic effects on tumor formation. Notably, MKK7 expression in glioma tissues was closely correlated with the grade of the glioma and JNK/c-Jun activation. Mechanistically, MKK7 transcription critically depends on the complexes formed by HDAC4 and the transcriptional factors SP1 and Krüppel-like factor-5 (KLF5), wherein HDAC4 directly deacetylates both SP1 and KLF5 and synergistically upregulates MKK7 transcription through two SP1 sites located on its promoter. In contrast, the increases in acetylated-SP1 and acetylated-KLF5 after HDAC4 inhibition switched to transcriptionally suppress MKK7. Selective inhibition of HDAC4 by LMK235, siRNAs or blockage of SP1 and KLF5 by the ectopic dominant-negative SP1 greatly reduced the malignant capacity of GCs. Furthermore, suppression of both MKK7 expression and JNK/c-Jun activities was involved in the tumor-growth inhibitory effects induced by LMK235 in U87-xenograft mice. Interestingly, HDAC4 is highly expressed in glioma tissues, and the rate of HDAC4 nuclear import is closely correlated with glioma grade, as well as with MKK7 expression. Collectively, these findings demonstrated that highly expressed MKK7 contributes to JNK/c-Jun signaling-mediated glioma formation. MKK7 transcription, regulated by SP1 and KLF5, critically depends on HDAC4 activity, and inhibition of HDAC4 presents a potential strategy for suppressing the oncogenic roles of MKK7/JNK/c-Jun signaling in GCs.
© 2019 UICC.

Entities:  

Keywords:  HDAC4; JNK; KLF5; MKK7; SP1; glioma

Year:  2019        PMID: 30963560     DOI: 10.1002/ijc.32321

Source DB:  PubMed          Journal:  Int J Cancer        ISSN: 0020-7136            Impact factor:   7.396


  5 in total

1.  MiR-4310 induced by SP1 targets PTEN to promote glioma progression.

Authors:  Zhiyong Wu; Jie Luo; Tengyue Huang; Renhui Yi; Shengfeng Ding; Cheng Xie; An'qi Xu; Yu Zeng; Xizhao Wang; Ye Song; Xiaofeng Shi; Hao Long
Journal:  Cancer Cell Int       Date:  2020-12-17       Impact factor: 5.722

2.  microRNA-124-3p attenuates myocardial injury in sepsis via modulating SP1/HDAC4/HIF-1α axis.

Authors:  Mei Wu; Zehong Huang; Wenfang Huang; Mengyu Lin; Weifeng Liu; Kexuan Liu; Cai Li
Journal:  Cell Death Discov       Date:  2022-01-28

3.  Comprehensive analysis of histone deacetylases genes in the prognosis and immune infiltration of glioma patients.

Authors:  Lin Shen; Yanyan Li; Na Li; Liangfang Shen; Zhanzhan Li
Journal:  Aging (Albany NY)       Date:  2022-05-11       Impact factor: 5.955

4.  Comprehensive analyses reveal the role of histone deacetylase genes in prognosis and immune response in low-grade glioma.

Authors:  Lin Shen; Yanyan Li; Na Li; Liangfang Shen; Zhanzhan Li
Journal:  PLoS One       Date:  2022-10-13       Impact factor: 3.752

5.  Inhibition of HDAC4 by GSK3β leads to downregulation of KLF5 and ASK1 and prevents the progression of intravertebral disc degeneration.

Authors:  Lin Xiao; Dongping Gong; Loufeng Liang; Anwei Liang; Huaxin Liang; Xiayi Xu; Hongli Teng
Journal:  Clin Epigenetics       Date:  2021-03-10       Impact factor: 6.551

  5 in total

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